TY - JOUR A1 - Balakrishnan, Ashwin A1 - Hemmen, Katherina A1 - Choudhury, Susobhan A1 - Krohn, Jan-Hagen A1 - Jansen, Kerstin A1 - Friedrich, Mike A1 - Beliu, Gerti A1 - Sauer, Markus A1 - Lohse, Martin J. A1 - Heinze, Katrin G. T1 - Unraveling the hidden temporal range of fast β2-adrenergic receptor mobility by time-resolved fluorescence JF - Communications Biology N2 - G-protein-coupled receptors (GPCRs) are hypothesized to possess molecular mobility over a wide temporal range. Until now the temporal range has not been fully accessible due to the crucially limited temporal range of available methods. This in turn, may lead relevant dynamic constants to remain masked. Here, we expand this dynamic range by combining fluorescent techniques using a spot confocal setup. We decipher mobility constants of β\(_{2}\)-adrenergic receptor over a wide time range (nanosecond to second). Particularly, a translational mobility (10 µm\(^{2}\)/s), one order of magnitude faster than membrane associated lateral mobility that explains membrane protein turnover and suggests a wider picture of the GPCR availability on the plasma membrane. And a so far elusive rotational mobility (1-200 µs) which depicts a previously overlooked dynamic component that, despite all complexity, behaves largely as predicted by the Saffman-Delbrück model. KW - G-protein-coupled receptors KW - molecular mobility KW - temporal range Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-301140 VL - 5 IS - 1 ER - TY - JOUR A1 - Aydinli, Muharrem A1 - Liang, Chunguang A1 - Dandekar, Thomas T1 - Motif and conserved module analysis in DNA (promoters, enhancers) and RNA (lncRNA, mRNA) using AlModules JF - Scientific Reports N2 - Nucleic acid motifs consist of conserved and variable nucleotide regions. For functional action, several motifs are combined to modules. The tool AIModules allows identification of such motifs including combinations of them and conservation in several nucleic acid stretches. AIModules recognizes conserved motifs and combinations of motifs (modules) allowing a number of interesting biological applications such as analysis of promoter and transcription factor binding sites (TFBS), identification of conserved modules shared between several gene families, e.g. promoter regions, but also analysis of shared and conserved other DNA motifs such as enhancers and silencers, in mRNA (motifs or regulatory elements e.g. for polyadenylation) and lncRNAs. The tool AIModules presented here is an integrated solution for motif analysis, offered as a Web service as well as downloadable software. Several nucleotide sequences are queried for TFBSs using predefined matrices from the JASPAR DB or by using one’s own matrices for diverse types of DNA or RNA motif discovery. Furthermore, AIModules can find TFBSs common to two or more sequences. Demanding high or low conservation, AIModules outperforms other solutions in speed and finds more modules (specific combinations of TFBS) than alternative available software. The application also searches RNA motifs such as polyadenylation site or RNA–protein binding motifs as well as DNA motifs such as enhancers as well as user-specified motif combinations (https://bioinfo-wuerz.de/aimodules/; alternative entry pages: https://aimodules.heinzelab.de or https://www.biozentrum.uni-wuerzburg.de/bioinfo/computing/aimodules). The application is free and open source whether used online, on-site, or locally. KW - AIModules KW - nucleic acid motifs KW - DNA Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-301268 VL - 12 IS - 1 ER - TY - JOUR A1 - Ziegler, Alice A1 - Meyer, Hanna A1 - Otte, Insa A1 - Peters, Marcell K. A1 - Appelhans, Tim A1 - Behler, Christina A1 - Böhning-Gaese, Katrin A1 - Classen, Alice A1 - Detsch, Florian A1 - Deckert, Jürgen A1 - Eardley, Connal D. A1 - Ferger, Stefan W. A1 - Fischer, Markus A1 - Gebert, Friederike A1 - Haas, Michael A1 - Helbig-Bonitz, Maria A1 - Hemp, Andreas A1 - Hemp, Claudia A1 - Kakengi, Victor A1 - Mayr, Antonia V. A1 - Ngereza, Christine A1 - Reudenbach, Christoph A1 - Röder, Juliane A1 - Rutten, Gemma A1 - Schellenberger Costa, David A1 - Schleuning, Matthias A1 - Ssymank, Axel A1 - Steffan-Dewenter, Ingolf A1 - Tardanico, Joseph A1 - Tschapka, Marco A1 - Vollstädt, Maximilian G. R. A1 - Wöllauer, Stephan A1 - Zhang, Jie A1 - Brandl, Roland A1 - Nauss, Thomas T1 - Potential of airborne LiDAR derived vegetation structure for the prediction of animal species richness at Mount Kilimanjaro JF - Remote Sensing N2 - The monitoring of species and functional diversity is of increasing relevance for the development of strategies for the conservation and management of biodiversity. Therefore, reliable estimates of the performance of monitoring techniques across taxa become important. Using a unique dataset, this study investigates the potential of airborne LiDAR-derived variables characterizing vegetation structure as predictors for animal species richness at the southern slopes of Mount Kilimanjaro. To disentangle the structural LiDAR information from co-factors related to elevational vegetation zones, LiDAR-based models were compared to the predictive power of elevation models. 17 taxa and 4 feeding guilds were modeled and the standardized study design allowed for a comparison across the assemblages. Results show that most taxa (14) and feeding guilds (3) can be predicted best by elevation with normalized RMSE values but only for three of those taxa and two of those feeding guilds the difference to other models is significant. Generally, modeling performances between different models vary only slightly for each assemblage. For the remaining, structural information at most showed little additional contribution to the performance. In summary, LiDAR observations can be used for animal species prediction. However, the effort and cost of aerial surveys are not always in proportion with the prediction quality, especially when the species distribution follows zonal patterns, and elevation information yields similar results. KW - biodiversity KW - species richness KW - LiDAR KW - elevation KW - partial least square regression KW - arthropods KW - birds KW - bats KW - predictive modeling Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262251 SN - 2072-4292 VL - 14 IS - 3 ER - TY - JOUR A1 - Reis, Helena A1 - Schwebs, Marie A1 - Dietz, Sabrina A1 - Janzen, Christian J. A1 - Butter, Falk T1 - TelAP1 links telomere complexes with developmental expression site silencing in African trypanosomes JF - Nucleic Acids Research N2 - During its life cycle, Trypanosoma brucei shuttles between a mammalian host and the tsetse fly vector. In the mammalian host, immune evasion of T. brucei bloodstream form (BSF) cells relies on antigenic variation, which includes monoallelic expression and periodic switching of variant surface glycoprotein (VSG) genes. The active VSG is transcribed from only 1 of the 15 subtelomeric expression sites (ESs). During differentiation from BSF to the insect-resident procyclic form (PCF), the active ES is transcriptionally silenced. We used mass spectrometry-based interactomics to determine the composition of telomere protein complexes in T. brucei BSF and PCF stages to learn more about the structure and functions of telomeres in trypanosomes. Our data suggest a different telomere complex composition in the two forms of the parasite. One of the novel telomere-associated proteins, TelAP1, forms a complex with telomeric proteins TbTRF, TbRAP1 and TbTIF2 and influences ES silencing kinetics during developmental differentiation. KW - Gene Regulation KW - Chromatin and Epigenetics Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-225180 VL - 46 IS - 6 ER - TY - JOUR A1 - Ribitsch, Iris A1 - Peham, Christian A1 - Ade, Nicole A1 - Duerr, Julia A1 - Handschuh, Stephan A1 - Schramel, Johannes Peter A1 - Vogl, Claus A1 - Walles, Heike A1 - Egerbacher, Monika A1 - Jenner, Florian T1 - Structure-Function relationships of equine menisci JF - PLoS ONE N2 - Meniscal pathologies are among the most common injuries of the femorotibial joint in both human and equine patients. Pathological forces and ensuing injuries of the cranial horn of the equine medial meniscus are considered analogous to those observed in the human posterior medial horn. Biomechanical properties of human menisci are site-and depth-specific. However, the influence of equine meniscus topography and composition on its biomechanical properties is yet unknown. A better understanding of equine meniscus composition and biomechanics could advance not only veterinary therapies for meniscus degeneration or injuries, but also further substantiate the horse as suitable translational animal model for (human) meniscus tissue engineering. Therefore, the aim of this study was to investigate the composition and structure of the equine knee meniscus in a site-and age-specific manner and their relationship with potential site-specific biomechanical properties. The meniscus architecture was investigated histologically. Biomechanical testing included evaluation of the shore hardness (SH), stiffness and energy loss of the menisci. The SH was found to be subjected to both age and site-specific changes, with an overall higher SH of the tibial meniscus surface and increase in SH with age. Stiffness and energy loss showed neither site nor age related significant differences. The macroscopic and histologic similarities between equine and human menisci described in this study, support continued research in this field. KW - Human Medial Meniscus KW - Articular-Cartilage KW - Biomechanical Properties KW - Compressive Properties KW - Human Knee KW - Collagen KW - Injuries KW - Models KW - Repair KW - Osteoarthritis Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-225214 VL - 13 IS - 3 ER - TY - JOUR A1 - Thölken, Clemens A1 - Thamm, Markus A1 - Erbacher, Christoph A1 - Lechner, Marcus T1 - Sequence and structural properties of circular RNAs in the brain of nurse and forager honeybees (Apis mellifera) JF - BMC Genomics N2 - Background The honeybee (Apis mellifera) represents a model organism for social insects displaying behavioral plasticity. This is reflected by an age-dependent task allocation. The most protruding tasks are performed by young nurse bees and older forager bees that take care of the brood inside the hive and collect food from outside the hive, respectively. The molecular mechanism leading to the transition from nurse bees to foragers is currently under intense research. Circular RNAs, however, were not considered in this context so far. As of today, this group of non-coding RNAs was only known to exist in two other insects, Drosophila melanogaster and Bombyx mori. Here we complement the state of circular RNA research with the first characterization in a social insect. Results We identified numerous circular RNAs in the brain of A. mellifera nurse bees and forager bees using RNA-Seq with exonuclease enrichment. Presence and circularity were verified for the most abundant representatives. Back-splicing in honeybee occurs further towards the end of transcripts and in transcripts with a high number of exons. The occurrence of circularized exons is correlated with length and CpG-content of their flanking introns. The latter coincides with increased DNA-methylation in the respective loci. For two prominent circular RNAs the abundance in worker bee brains was quantified in TaqMan assays. In line with previous findings of circular RNAs in Drosophila, circAmrsmep2 accumulates with increasing age of the insect. In contrast, the levels of circAmrad appear age-independent and correlate with the bee's task. Its parental gene is related to amnesia-resistant memory. Conclusions We provide the first characterization of circRNAs in a social insect. Many of the RNAs identified here show homologies to circular RNAs found in Drosophila and Bombyx, indicating that circular RNAs are a common feature among insects. We find that exon circularization is correlated to DNA-methylation at the flanking introns. The levels of circAmrad suggest a task-dependent abundance that is decoupled from age. Moreover, a GO term analysis shows an enrichment of task-related functions. We conclude that circular RNAs could be relevant for task allocation in honeybee and should be investigated further in this context. KW - circRNA KW - circular transcriptome sequencing KW - honeybee KW - brain KW - neuronal KW - Methylation KW - CpG KW - alternative splicing KW - behavioral plasticity Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241302 VL - 20 ER - TY - JOUR A1 - Peindl, Matthias A1 - Göttlich, Claudia A1 - Crouch, Samantha A1 - Hoff, Niklas A1 - Lüttgens, Tamara A1 - Schmitt, Franziska A1 - Pereira, Jesús Guillermo Nieves A1 - May, Celina A1 - Schliermann, Anna A1 - Kronenthaler, Corinna A1 - Cheufou, Danjouma A1 - Reu-Hofer, Simone A1 - Rosenwald, Andreas A1 - Weigl, Elena A1 - Walles, Thorsten A1 - Schüler, Julia A1 - Dandekar, Thomas A1 - Nietzer, Sarah A1 - Dandekar, Gudrun T1 - EMT, stemness, and drug resistance in biological context: a 3D tumor tissue/in silico platform for analysis of combinatorial treatment in NSCLC with aggressive KRAS-biomarker signatures JF - Cancers N2 - Epithelial-to-mesenchymal transition (EMT) is discussed to be centrally involved in invasion, stemness, and drug resistance. Experimental models to evaluate this process in its biological complexity are limited. To shed light on EMT impact and test drug response more reliably, we use a lung tumor test system based on a decellularized intestinal matrix showing more in vivo-like proliferation levels and enhanced expression of clinical markers and carcinogenesis-related genes. In our models, we found evidence for a correlation of EMT with drug resistance in primary and secondary resistant cells harboring KRAS\(^{G12C}\) or EGFR mutations, which was simulated in silico based on an optimized signaling network topology. Notably, drug resistance did not correlate with EMT status in KRAS-mutated patient-derived xenograft (PDX) cell lines, and drug efficacy was not affected by EMT induction via TGF-β. To investigate further determinants of drug response, we tested several drugs in combination with a KRAS\(^{G12C}\) inhibitor in KRAS\(^{G12C}\) mutant HCC44 models, which, besides EMT, display mutations in P53, LKB1, KEAP1, and high c-MYC expression. We identified an aurora-kinase A (AURKA) inhibitor as the most promising candidate. In our network, AURKA is a centrally linked hub to EMT, proliferation, apoptosis, LKB1, and c-MYC. This exemplifies our systemic analysis approach for clinical translation of biomarker signatures. KW - EMT KW - drug resistance KW - invasion KW - stemness KW - 3D lung tumor tissue models KW - KRAS biomarker signatures KW - boolean in silico models KW - targeted combination therapy Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-270744 SN - 2072-6694 VL - 14 IS - 9 ER - TY - THES A1 - Schardt, Simon T1 - Agent-based modeling of cell differentiation in mouse ICM organoids T1 - Agentenbasierte Modellierung von Maus ICM Organoiden N2 - Mammalian embryonic development is subject to complex biological relationships that need to be understood. However, before the whole structure of development can be put together, the individual building blocks must first be understood in more detail. One of these building blocks is the second cell fate decision and describes the differentiation of cells of the inner cell mass of the embryo into epiblast and primitive endoderm cells. These cells then spatially segregate and form the subsequent bases for the embryo and yolk sac, respectively. In organoids of the inner cell mass, these two types of progenitor cells are also observed to form, and to some extent to spatially separate. This work has been devoted to these phenomena over the past three years. Plenty of studies already provide some insights into the basic mechanics of this cell differentiation, such that the first signs of epiblast and primitive endoderm differentiation, are the expression levels of transcription factors NANOG and GATA6. Here, cells with low expression of GATA6 and high expression of NANOG adopt the epiblast fate. If the expressions are reversed, a primitive endoderm cell is formed. Regarding the spatial segregation of the two cell types, it is not yet clear what mechanism leads to this. A common hypothesis suggests the differential adhesion of cell as the cause for the spatial rearrangement of cells. In this thesis however, the possibility of a global cell-cell communication is investigated. The approach chosen to study these phenomena follows the motto "mathematics is biology's next microscope". Mathematical modeling is used to transform the central gene regulatory network at the heart of this work into a system of equations that allows us to describe the temporal evolution of NANOG and GATA6 under the influence of an external signal. Special attention is paid to the derivation of new models using methods of statistical mechanics, as well as the comparison with existing models. After a detailed stability analysis the advantages of the derived model become clear by the fact that an exact relationship of the model parameters and the formation of heterogeneous mixtures of two cell types was found. Thus, the model can be easily controlled and the proportions of the resulting cell types can be estimated in advance. This mathematical model is also combined with a mechanism for global cell-cell communication, as well as a model for the growth of an organoid. It is shown that the global cell-cell communication is able to unify the formation of checkerboard patterns as well as engulfing patterns based on differently propagating signals. In addition, the influence of cell division and thus organoid growth on pattern formation is studied in detail. It is shown that this is able to contribute to the formation of clusters and, as a consequence, to breathe some randomness into otherwise perfectly sorted patterns. N2 - Die embryonale Entwicklung von Säugetieren unterliegt komplexen biologischen Zusammenhängen, die es zu verstehen gilt. Bevor jedoch das gesamte Gebilde der Entwicklung zusammengesetzt werden kann, müssen zunächst die einzelnen Bausteine genauer verstanden werden. Einer dieser Bausteine ist die zweite Zellschicksalsentscheidung und beschreibt die Differenzierung von Zellen der inneren Zellmasse des Embryos hin zu Epiblast- und primitiven Endodermzellen. Diese Zellen teilen sich daraufhin räumlich auf und bilden die anschließend die Grundlagen für den Embryo und den Dottersack. In Organoiden der inneren Zellmasse wird ebenfalls beobachtet, wie sich diese zwei Typen von Vorläuferzellen bilden, und sich in gewissem Maße räumlich voneinander trennen. Diesem Phänomenen widmete sich diese Arbeit im Verlaufe der letzten drei Jahre. Über diese Zelldifferenzierung ist bereits bekannt, dass die ersten Anzeichen für Epiblast- und primitive Endodermdifferenzierung jeweils die Expressionslevel der Transkriptionsfaktoren NANOG und GATA6 sind. Dabei nehmen Zellen mit niedriger Expression an GATA6 und hoher Expression an NANOG das Epiblastschicksal an. Sind die Expressionen umgekehrt, so entsteht eine primitive Endodermzelle. Bei der räumlichen Aufteilung der beiden Zelltypen ist noch nicht eindeutig geklärt, welcher Mechanismus dazu führt. Eine gängige Hypothese besagt, dass die Ursache für die räumliche Umlagerung der Zellen in der unterschiedlichen Adhäsion der Zellen liegt. In dieser Arbeit wird jedoch die Möglichkeit einer globalen Zell-Zell-Kommunikation untersucht. Die gewählte Vorgehensweise bei der Untersuchung dieser Phänomene folgt dem Motto "Die Mathematik ist das nächste Mikroskop der Biologie". Mit Hilfe mathematischer Modellierung wird das zentrale genregulierende Netzwerk im Mittelpunkt dieser Arbeit in ein Gleichungssystem umgewandelt, welches es ermöglicht, die zeitliche Entwicklung von NANOG und GATA6 unter Einfluss eines externen Signals zu beschreiben. Ein besonderes Augenmerk liegt dabei auf der Herleitung neuer Modelle mit Hilfe von Methoden der statistischen Mechanik, sowie dem Vergleich mit bestehenden Modellen. Nach einer ausführlichen Stabilitätsanalyse werden die Vorteile des hergeleiteten Modells dadurch deutlich, dass ein exakter Zusammenhang der Modellparameter und der Formierung von heterogenen Mischungen zweier Zelltypen gefunden wurde. Dadurch lässt sich das Modell einfach kontrollieren und die Proportionen der resultierenden Zelltypen bereits im Voraus abschätzen. Dieses mathematische Modell wird außerdem kombiniert mit einem Mechanismus zur globalen Zell-Zell Kommunikation, sowie einem Modell zum Wachstum eines Organoiden. Dabei wird gezeigt dass die globale Zell-Zell Kommunikation dazu in der Lage ist die Bildung von Schachbrettmustern, sowie auch umrandenden Muster anhand unterschiedlich ausbreitender Signale zu vereinen. Zusätzlich wird der Einfluss der Zellteilung und somit des Organoidwachstums auf die Musterbildung genauestens untersucht. Es wird gezeigt, dass dies zur Bildung von Clustern beiträgt und infolgedessen eine gewisse Zufälligkeit in ansonsten perfekt sortierte Muster einbringt. KW - Mathematische Modellierung KW - Embryonalentwicklung KW - Organoid KW - Differentialgleichung KW - Agentenbasierte Modellierung KW - Transkriptionelle Regulierung Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-301940 ER - TY - JOUR A1 - Koderer, Corinna A1 - Schmitz, Werner A1 - Wünsch, Anna Chiara A1 - Balint, Julia A1 - El-Mesery, Mohamed A1 - Volland, Julian Manuel A1 - Hartmann, Stefan A1 - Linz, Christian A1 - Kübler, Alexander Christian A1 - Seher, Axel T1 - Low energy status under methionine restriction is essentially independent of proliferation or cell contact inhibition JF - Cells N2 - Nonlimited proliferation is one of the most striking features of neoplastic cells. The basis of cell division is the sufficient presence of mass (amino acids) and energy (ATP and NADH). A sophisticated intracellular network permanently measures the mass and energy levels. Thus, in vivo restrictions in the form of amino acid, protein, or caloric restrictions strongly affect absolute lifespan and age-associated diseases such as cancer. The induction of permanent low energy metabolism (LEM) is essential in this process. The murine cell line L929 responds to methionine restriction (MetR) for a short time period with LEM at the metabolic level defined by a characteristic fingerprint consisting of the molecules acetoacetate, creatine, spermidine, GSSG, UDP-glucose, pantothenate, and ATP. Here, we used mass spectrometry (LC/MS) to investigate the influence of proliferation and contact inhibition on the energy status of cells. Interestingly, the energy status was essentially independent of proliferation or contact inhibition. LC/MS analyses showed that in full medium, the cells maintain active and energetic metabolism for optional proliferation. In contrast, MetR induced LEM independently of proliferation or contact inhibition. These results are important for cell behaviour under MetR and for the optional application of restrictions in cancer therapy. KW - methionine restriction KW - caloric restriction KW - mass spectrometry KW - LC/MS KW - liquid chromatography/mass spectrometry KW - metabolomics KW - L929 KW - amino acid KW - proliferation KW - contact inhibition Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262329 SN - 2073-4409 VL - 11 IS - 3 ER - TY - JOUR A1 - Scheib, Ulrike A1 - Broser, Matthias A1 - Constantin, Oana M. A1 - Yang, Shang A1 - Gao, Shiqiang A1 - Mukherjee, Shatanik A1 - Stehfest, Katja A1 - Nagel, Georg A1 - Gee, Christine E. A1 - Hegemann, Peter T1 - Rhodopsin-cyclases for photocontrol of cGMP/cAMP and 2.3 Å structure of the adenylyl cyclase domain JF - Nature Communications N2 - The cyclic nucleotides cAMP and cGMP are important second messengers that orchestrate fundamental cellular responses. Here, we present the characterization of the rhodopsinguanylyl cyclase from Catenaria anguillulae (CaRhGC), which produces cGMP in response to green light with a light to dark activity ratio > 1000. After light excitation the putative signaling state forms with tau = 31 ms and decays with tau = 570 ms. Mutations (up to 6) within the nucleotide binding site generate rhodopsin-adenylyl cyclases (CaRhACs) of which the double mutated YFP-CaRhAC (E497K/C566D) is the most suitable for rapid cAMP production in neurons. Furthermore, the crystal structure of the ligand-bound AC domain (2.25 angstrom) reveals detailed information about the nucleotide binding mode within this recently discovered class of enzyme rhodopsin. Both YFP-CaRhGC and YFP-CaRhAC are favorable optogenetic tools for non-invasive, cell-selective, and spatio-temporally precise modulation of cAMP/cGMP with light. KW - Enzymes KW - Molecular biophysics KW - Molecular neuroscience KW - X-ray crystallography Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228517 VL - 9 ER - TY - JOUR A1 - Dhillon, Maninder Singh A1 - Dahms, Thorsten A1 - Kuebert-Flock, Carina A1 - Rummler, Thomas A1 - Arnault, Joel A1 - Steffan-Dewenter, Ingolf A1 - Ullmann, Tobias T1 - Integrating random forest and crop modeling improves the crop yield prediction of winter wheat and oil seed rape JF - Frontiers in Remote Sensing N2 - The fast and accurate yield estimates with the increasing availability and variety of global satellite products and the rapid development of new algorithms remain a goal for precision agriculture and food security. However, the consistency and reliability of suitable methodologies that provide accurate crop yield outcomes still need to be explored. The study investigates the coupling of crop modeling and machine learning (ML) to improve the yield prediction of winter wheat (WW) and oil seed rape (OSR) and provides examples for the Free State of Bavaria (70,550 km2), Germany, in 2019. The main objectives are to find whether a coupling approach [Light Use Efficiency (LUE) + Random Forest (RF)] would result in better and more accurate yield predictions compared to results provided with other models not using the LUE. Four different RF models [RF1 (input: Normalized Difference Vegetation Index (NDVI)), RF2 (input: climate variables), RF3 (input: NDVI + climate variables), RF4 (input: LUE generated biomass + climate variables)], and one semi-empiric LUE model were designed with different input requirements to find the best predictors of crop monitoring. The results indicate that the individual use of the NDVI (in RF1) and the climate variables (in RF2) could not be the most accurate, reliable, and precise solution for crop monitoring; however, their combined use (in RF3) resulted in higher accuracies. Notably, the study suggested the coupling of the LUE model variables to the RF4 model can reduce the relative root mean square error (RRMSE) from −8% (WW) and −1.6% (OSR) and increase the R 2 by 14.3% (for both WW and OSR), compared to results just relying on LUE. Moreover, the research compares models yield outputs by inputting three different spatial inputs: Sentinel-2(S)-MOD13Q1 (10 m), Landsat (L)-MOD13Q1 (30 m), and MOD13Q1 (MODIS) (250 m). The S-MOD13Q1 data has relatively improved the performance of models with higher mean R 2 [0.80 (WW), 0.69 (OSR)], and lower RRMSE (%) (9.18, 10.21) compared to L-MOD13Q1 (30 m) and MOD13Q1 (250 m). Satellite-based crop biomass, solar radiation, and temperature are found to be the most influential variables in the yield prediction of both crops. KW - crop modeling KW - random forest KW - machine learning KW - NDVI KW - satellite KW - landsat KW - sentinel-2 KW - winter wheat Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-301462 SN - 2673-6187 VL - 3 ER - TY - JOUR A1 - Heydarian, Motaharehsadat A1 - Rühl, Eva A1 - Rawal, Ravisha A1 - Kozjak-Pavlovic, Vera T1 - Tissue models for Neisseria gonorrhoeae research — from 2D to 3D JF - Frontiers in Cellular and Infection Microbiology N2 - Neisseria gonorrhoeae is a human-specific pathogen that causes gonorrhea, the second most common sexually transmitted infection worldwide. Disease progression, drug discovery, and basic host-pathogen interactions are studied using different approaches, which rely on models ranging from 2D cell culture to complex 3D tissues and animals. In this review, we discuss the models used in N. gonorrhoeae research. We address both in vivo (animal) and in vitro cell culture models, discussing the pros and cons of each and outlining the recent advancements in the field of three-dimensional tissue models. From simple 2D monoculture to complex advanced 3D tissue models, we provide an overview of the relevant methodology and its application. Finally, we discuss future directions in the exciting field of 3D tissue models and how they can be applied for studying the interaction of N. gonorrhoeae with host cells under conditions closely resembling those found at the native sites of infection. KW - ex vivo KW - biomimetic tissue models KW - Neisseria gonorrhoeae KW - in vivo KW - in vitro Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-263046 SN - 2235-2988 VL - 12 ER - TY - THES A1 - Helmerich, Dominic Andreas T1 - Einflüsse der Photophysik und Photochemie von Cyaninfarbstoffen auf die Lokalisationsmikroskopie T1 - Impact of photophysics and photochemistry of cyanine dyes on localization microscopy N2 - In den letzten Jahren haben sich hochauflösende Fluoreszenzmikroskopiemethoden, basierend auf der Lokalisation einzelner Fluorophore, zu einem leistungsstarken Werkzeug etabliert, um Fluoreszenzbilder weit unterhalb der Auflösungsgrenze zu generieren. Hiermit können räumliche Auflösungen von ~ 20 nm erzielt werden, was weit unterhalb der Beugungsgrenze liegt. Dabei haben zahlreiche Optimierungen und Entwicklungen neuer Methoden in der Einzelmolekül-Lokalisationsmikroskopie die Genauigkeit der orstspezifischen Bestimmung einzelner Fluorophore auf bis zu ~ 1 – 3 nm erhöht. Eine Auflösung im molekularen Bereich, weit unterhalb von ~ 10 nm bleibt allerdings herausfordernd, da die Lokalisationsgenauigkeit nur ein Kriterium hierfür ist. Allerdings wurde sich in den letzten Jahren überwiegend auf die Verbesserung dieses Parameters konzentriert. Weitere Kriterien für die fluoreszenzmikroskopische Auflösung sind dabei unter anderem die Markierungsdichte und die Kopplungseffizienz der Zielstruktur, sowie der Kopplungsfehler (Abstand zur Zielstruktur nach Farbstoffkopplung), die sich herausfordernd für eine molekulare Auflösung darstellen. Auch wenn die Kopplungseffizienz und -dichte hoch und der Kopplungsfehler gering ist, steigt bei Interfluorophordistanzen < 5nm, abhängig von den Farbstoffen, die Wahrscheinlichkeit von starken und schwachen Farbstoffwechselwirkungen und damit von Energieübertragungsprozessen zwischen den Farbstoffen, stark an. Daneben sollten Farbstoffe, abhänging von der Lokalisationsmikroskopiemethode, spezifische Kriterien, wie beispielsweise die Photoschaltbarkeit bei dSTORM, erfüllen, was dazu führt, dass diese Methoden häufig nur auf einzelne Farbstoffe beschränkt sind. In dieser Arbeit konnte mithilfe von definierten DNA-Origami Konstrukten gezeigt werden, dass das Blinkverhalten von Cyaninfarbstoffen unter dSTORM-Bedingungen einer Abstandsabhängigkeit aufgrund von spezifischen Energieübertragungsprozessen folgt, womit Farbstoffabstände im sub-10 nm Bereich charakterisiert werden konnten. Darüber hinaus konnte diese Abstandsabhängigkeit an biologischen Proben gezeigt werden. Hierbei konnten verschiedene zelluläre Rezeptoren effizient und mit geringem Abstandsfehler zur Zielstruktur mit Cyaninfarbstoffen gekoppelt werden. Diese abstandsabhänigen Prozesse und damit Charakterisierungen könnten dabei nicht nur spezifisch für die häufig unter dSTORM-Bedingungen verwendeten Cyaninfarbstoffen gültig sein, sondern auch auf andere Farbstoffklassen, die einen Auszustand zeigen, übertragbar sein. Darüber hinaus konnte gezeigt werden, dass hochauflösende dSTORM Aufnahmen unabhängig vom Farbstoffkopplungsgrad der Antikörpern sind, welche häufig für Standardfärbungen von zellulären Strukturen verwendet werden. Dabei konnte durch Photonenkoinzidenzmessungen dargelegt werden, dass aufgrund komplexer Farbstoffwechselwirkungen im Mittel nur ein Farbstoff aktiv ist, wobei höhere Kopplungsgrade ein komplexes Blinkverhalten zu Beginn der Messung zeigen. Durch die undefinierten Farbstoffabstände an Antikörpern konnte hier kein eindeutiger Energieübertragungsmechanismus entschlüsselt werden. Dennoch konnte gezeigt werden, dass Farbstoffaggregate bzw. H-Dimere unter dSTORM-Bedingungen destabilisiert werden. Durch die zuvor erwähnten DNA-Origami Konstrukte definierter Interfluorophordistanzen konnten Energieübertragungsmechanismen entschlüsselt werden, die auch für die Antikörper diverser Kopplungsgrade gültig sind. Des Weiteren konnten, ausgelöst durch komplexe Energieübertragungsprozesse höherer Kopplungsgrade am Antikörper, Mehrfarbenaufnahmen zellulärer Strukturen generiert werden, die über die spezifische Fluoreszenzlebenszeit separiert werden konnten. Dies stellt hier eine weitere Möglichkeit dar, unter einfachen Bedingungen, schnelle Mehrfarbenaufnahmen zellulärer Strukturen zu generieren. Durch die Verwendung des selben Farbstoffes unterschiedlicher Kopplungsgrade kann hier nur mit einer Anregungswellenlänge und frei von chromatischer Aberration gearbeitet werden. Neben den photophysikalischen Untersuchungen der Cyaninfarbstoffe Cy5 und Alexa Fluor 647 wurden diese ebenso photochemisch näher betrachtet. Dabei konnte ein neuartiger chemischer Mechanismus entschlüsselt werden. Dieser Mechanismus führt, ausgelöst durch Singulett-Sauerstoff (1O2), zu einer Photozerschneidung des konjugierten Doppelbindungssystems um zwei Kohlenstoffatome, was zu strukturellen und spektroskopischen Veränderungen dieser Farbstoffe führt. Auf Grundlage dieses Mechanismus konnte eine neue DNA-PAINT Methode entwickelt werden, die zu einer Beschleunigung der Aufnahmezeit führt. N2 - In recent years, high-resolution fluorescence microscopy methods based on the localization of individual fluorophores have become a powerful tool for generating fluorescence images below the diffraction limit. This means that spatial resolutions of ~ 20 nm can now be achieved, which are far below the diffraction limit. Numerous optimizations and developments of new methods in single molecule localization microscopy have increased the localization precision up to ~ 1 - 3 nm. However, a spatial resolution in the molecular range, far below ~ 10 nm, remains challenging, because the localization precision is only one criterion for achieving molecular resolution. However, in recent years the main focus has been on improving this parameter. Additional challenging criteria for achieving molecular resolution include the coupling density and the coupling efficiency of the target structure, as well as the linkage error (distance to the target structure after dye coupling). Even if a high coupling density and coupling efficiency, as well as a low linkage error can be achieved, interfluorophore distances < 5 nm increase the probability of strong and weak dye interactions and thus energy transfer processes between the dyes strongly increase. In addition, depending on the localization microscopy method, dyes should fulfill specific criteria, such as photoswitchability for dSTORM, which means that these methods are often limited to a few dyes. In this work it could be shown with the help of defined DNA origami constructs that the blinking behavior of cyanine dyes follows a distance dependence under dSTORM conditions due to specific energy transfer processes. With this, dye distances in the sub-10 nm range could be characterized. In addition, this distance dependency could be shown on biological samples. Here, different cellular receptors could be efficiently labeled with Cy5 dyes at a low linkage error. These distance dependent processes and thus characterizations could not only be specifically valid for cyanine dyes that are frequently used under dSTORM conditions, but also be transferable to other classes of dyes that show a fluorescence off states. In addition, it could be shown that high resolution dSTORM images are independent of the degree of labeling of antibodies, which are often used for standard staining of cellular structures. It could be shown by photon antibunching measurements that, due to complex strong and weak dye interactions, only one dye is emitting on average, showing a complex blinking behavior at the beginning of the measurement with higher degrees of labeling. Due to the undefined distance between the dyes on antibodies, no clear energy transfer mechanism could be deciphered. Nevertheless, it could be shown that dye aggregates or H-dimers are destabilized under dSTORM conditions. The mentioned DNA origami constructs of defined interfluorophore distances made it possible to decipher energy transfer mechanisms that are also valid for antibodies of various degrees of labeling. Furthermore, triggered by complex energy transfer processes at higher degree of labeling on the antibody, multicolor images of cellular structures could be generated, which could be separated over the specific fluorescence lifetime. This represents a further possibility to generate fast multicolor images of cellular structures at simple buffer conditions. Here, by using the same dyes at different degrees of labeling, it is possible to work with only one excitation wavelength and free of chromatic aberration. In addition to the photophysical investigations of the cyanine dyes Cy5 and Alexa Fluor 647, the photochemical behaviour of these dyes was also examined more closely. Here, a novel chemical mechanism could be deciphered. This mechanism, triggered by singlet oxygen (1O2), leads to a phototruncation of the conjugated double bond system by two carbon atoms resulting in structural and spectroscopic changes of this dye. On the basis of this mechanism, a new DNA-PAINT method could be developed, leading to faster recording times. KW - Einzelmolekülmikroskopie KW - Cyaninfarbstoff KW - hochauflösende Fluoreszenzmikroskopie KW - Photophysik KW - Photochemie Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-247161 ER - TY - JOUR A1 - Grebinyk, Anna A1 - Prylutska, Svitlana A1 - Grebinyk, Sergii A1 - Prylutskyy, Yuriy A1 - Ritter, Uwe A1 - Matyshevska, Olga A1 - Dandekar, Thomas A1 - Frohme, Marcus T1 - Complexation with C\(_{60}\) fullerene increases doxorubicin efficiency against leukemic cells in vitro JF - Nanoscale Research Letters N2 - Conventional anticancer chemotherapy is limited because of severe side effects as well as a quickly evolving multidrug resistance of the tumor cells. To address this problem, we have explored a C\(_{60}\) fullerene-based nanosized system as a carrier for anticancer drugs for an optimized drug delivery to leukemic cells.Here, we studied the physicochemical properties and anticancer activity of C\(_{60}\) fullerene noncovalent complexes with the commonly used anticancer drug doxorubicin. C\(_{60}\)-Doxorubicin complexes in a ratio 1:1 and 2:1 were characterized with UV/Vis spectrometry, dynamic light scattering, and high-performance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS). The obtained analytical data indicated that the 140-nm complexes were stable and could be used for biological applications. In leukemic cell lines (CCRF-CEM, Jurkat, THP1 and Molt-16), the nanocomplexes revealed 3.5 higher cytotoxic potential in comparison with the free drug in a range of nanomolar concentrations. Also, the intracellular drug's level evidenced C\(_{60}\) fullerene considerable nanocarrier function.The results of this study indicated that C\(_{60}\) fullerene-based delivery nanocomplexes had a potential value for optimization of doxorubicin efficiency against leukemic cells. KW - C-60 fullerene KW - doxorubicin KW - noncovalent complex KW - leukemic cells KW - cytotoxicity KW - accumulation Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228257 VL - 14 IS - 61 ER - TY - JOUR A1 - Viljur, Mari‐Liis A1 - Abella, Scott R. A1 - Adámek, Martin A1 - Alencar, Janderson Batista Rodrigues A1 - Barber, Nicholas A. A1 - Beudert, Burkhard A1 - Burkle, Laura A. A1 - Cagnolo, Luciano A1 - Campos, Brent R. A1 - Chao, Anne A1 - Chergui, Brahim A1 - Choi, Chang‐Yong A1 - Cleary, Daniel F. R. A1 - Davis, Thomas Seth A1 - Dechnik‐Vázquez, Yanus A. A1 - Downing, William M. A1 - Fuentes‐Ramirez, Andrés A1 - Gandhi, Kamal J. K. A1 - Gehring, Catherine A1 - Georgiev, Kostadin B. A1 - Gimbutas, Mark A1 - Gongalsky, Konstantin B. A1 - Gorbunova, Anastasiya Y. A1 - Greenberg, Cathryn H. A1 - Hylander, Kristoffer A1 - Jules, Erik S. A1 - Korobushkin, Daniil I. A1 - Köster, Kajar A1 - Kurth, Valerie A1 - Lanham, Joseph Drew A1 - Lazarina, Maria A1 - Leverkus, Alexandro B. A1 - Lindenmayer, David A1 - Marra, Daniel Magnabosco A1 - Martín‐Pinto, Pablo A1 - Meave, Jorge A. A1 - Moretti, Marco A1 - Nam, Hyun‐Young A1 - Obrist, Martin K. A1 - Petanidou, Theodora A1 - Pons, Pere A1 - Potts, Simon G. A1 - Rapoport, Irina B. A1 - Rhoades, Paul R. A1 - Richter, Clark A1 - Saifutdinov, Ruslan A. A1 - Sanders, Nathan J. A1 - Santos, Xavier A1 - Steel, Zachary A1 - Tavella, Julia A1 - Wendenburg, Clara A1 - Wermelinger, Beat A1 - Zaitsev, Andrey S. A1 - Thorn, Simon T1 - The effect of natural disturbances on forest biodiversity: an ecological synthesis JF - Biological Reviews N2 - Disturbances alter biodiversity via their specific characteristics, including severity and extent in the landscape, which act at different temporal and spatial scales. Biodiversity response to disturbance also depends on the community characteristics and habitat requirements of species. Untangling the mechanistic interplay of these factors has guided disturbance ecology for decades, generating mixed scientific evidence of biodiversity responses to disturbance. Understanding the impact of natural disturbances on biodiversity is increasingly important due to human‐induced changes in natural disturbance regimes. In many areas, major natural forest disturbances, such as wildfires, windstorms, and insect outbreaks, are becoming more frequent, intense, severe, and widespread due to climate change and land‐use change. Conversely, the suppression of natural disturbances threatens disturbance‐dependent biota. Using a meta‐analytic approach, we analysed a global data set (with most sampling concentrated in temperate and boreal secondary forests) of species assemblages of 26 taxonomic groups, including plants, animals, and fungi collected from forests affected by wildfires, windstorms, and insect outbreaks. The overall effect of natural disturbances on α‐diversity did not differ significantly from zero, but some taxonomic groups responded positively to disturbance, while others tended to respond negatively. Disturbance was beneficial for taxonomic groups preferring conditions associated with open canopies (e.g. hymenopterans and hoverflies), whereas ground‐dwelling groups and/or groups typically associated with shady conditions (e.g. epigeic lichens and mycorrhizal fungi) were more likely to be negatively impacted by disturbance. Across all taxonomic groups, the highest α‐diversity in disturbed forest patches occurred under moderate disturbance severity, i.e. with approximately 55% of trees killed by disturbance. We further extended our meta‐analysis by applying a unified diversity concept based on Hill numbers to estimate α‐diversity changes in different taxonomic groups across a gradient of disturbance severity measured at the stand scale and incorporating other disturbance features. We found that disturbance severity negatively affected diversity for Hill number q = 0 but not for q = 1 and q = 2, indicating that diversity–disturbance relationships are shaped by species relative abundances. Our synthesis of α‐diversity was extended by a synthesis of disturbance‐induced change in species assemblages, and revealed that disturbance changes the β‐diversity of multiple taxonomic groups, including some groups that were not affected at the α‐diversity level (birds and woody plants). Finally, we used mixed rarefaction/extrapolation to estimate biodiversity change as a function of the proportion of forests that were disturbed, i.e. the disturbance extent measured at the landscape scale. The comparison of intact and naturally disturbed forests revealed that both types of forests provide habitat for unique species assemblages, whereas species diversity in the mixture of disturbed and undisturbed forests peaked at intermediate values of disturbance extent in the simulated landscape. Hence, the relationship between α‐diversity and disturbance severity in disturbed forest stands was strikingly similar to the relationship between species richness and disturbance extent in a landscape consisting of both disturbed and undisturbed forest habitats. This result suggests that both moderate disturbance severity and moderate disturbance extent support the highest levels of biodiversity in contemporary forest landscapes. KW - natural disturbance KW - diversity–disturbance relationship KW - disturbance severity KW - disturbance extent KW - intermediate disturbance hypothesis KW - forest communities KW - α‐diversity KW - β‐diversity Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-287168 VL - 97 IS - 5 SP - 1930 EP - 1947 ER - TY - JOUR A1 - Schenk, Mariela A1 - Mitesser, Oliver A1 - Hovestadt, Thomas A1 - Holzschuh, Andrea T1 - Overwintering temperature and body condition shift emergence dates of spring-emerging solitary bees JF - PeerJ N2 - Solitary bees in seasonal environments must align their life-cycles with favorable environmental conditions and resources; the timing of their emergence is highly fitness relevant. In several bee species, overwintering temperature influences both emergence date and body weight at emergence. High variability in emergence dates among specimens overwintering at the same temperatures suggests that the timing of emergence also depends on individual body conditions. However, possible causes for this variability, such as individual differences in body size or weight, have been rarely studied. In a climate chamber experiment using two spring-emerging mason bees (Osmia cornuta and O. bicornis), we investigated the relationship between temperature, emergence date, body weight, and body size, the last of which is not affected by overwintering temperature. Our study showed that body weight declined during hibernation more strongly in warm than in cold overwintering temperatures. Although bees emerged earlier in warm than in cold overwintering temperatures, at the time of emergence, bees in warm overwintering temperatures had lower body weights than bees in cold overwintering temperatures (exception of male O. cornuta). Among specimens that experienced the same overwintering temperatures, small and light bees emerged later than their larger and heavier conspecifics. Using a simple mechanistic model we demonstrated that spring-emerging solitary bees use a strategic approach and emerge at a date that is most promising for their individual fitness expectations. Our results suggest that warmer overwintering temperatures reduce bee fitness by causing a decrease in body weight at emergence. We showed furthermore that in order to adjust their emergence dates, bees use not only temperature but also their individual body condition as triggers. This may explain differing responses to climate warming within and among bee populations and may have consequences for bee-plant interactions as well as for the persistence of bee populations under climate change. KW - Wild bees KW - Timing KW - Fitness KW - Hibernation KW - Climate change KW - Mechanistic model KW - Osmia KW - Body weight KW - Body size KW - Pollinators Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228544 VL - 6 ER - TY - JOUR A1 - König, Sebastian A1 - Krauss, Jochen A1 - Keller, Alexander A1 - Bofinger, Lukas A1 - Steffan‐Dewenter, Ingolf T1 - Phylogenetic relatedness of food plants reveals highest insect herbivore specialization at intermediate temperatures along a broad climatic gradient JF - Global Change Biology N2 - The composition and richness of herbivore and plant assemblages change along climatic gradients, but knowledge about associated shifts in specialization is scarce and lacks controlling for the abundance and phylogeny of interaction partners. Thus, we aimed to test whether the specialization of phytophagous insects in insect‐plant interaction networks decreases toward cold habitats as predicted by the ‘altitude niche‐breadth hypothesis’ to forecast possible consequences of interaction rewiring under climate change. We used a non‐invasive, standardized metabarcoding approach to reconstruct dietary relationships of Orthoptera species as a major insect herbivore taxon along a broad temperature gradient (~12°C) in Southern Germany. Based on Orthoptera surveys, feeding observations, collection of fecal pellets from >3,000 individuals of 54 species, and parallel vegetation surveys on 41 grassland sites, we quantified plant resource availability and its use by herbivores. Herbivore assemblages were richer in species and individuals at sites with high summer temperatures, while plant richness peaked at intermediate temperatures. Corresponding interaction networks were most specialized in warm habitats. Considering phylogenetic relationships of plant resources, however, the specialization pattern was not linear but peaked at intermediate temperatures, mediated by herbivores feeding on a narrow range of phylogenetically related resources. Our study provides empirical evidence of resource specialization of insect herbivores along a climatic gradient, demonstrating that resource phylogeny, availability, and temperature interactively shape the specialization of herbivore assemblages. Instead of low specialization levels only in cold, harsh habitats, our results suggest increased generalist feeding due to intraspecific changes and compositional differences at both ends of the microclimatic gradient. We conclude that this nonlinear change of phylogeny‐based resource specialization questions predictions derived from the ‘altitude‐niche breadth hypothesis’ and highlights the currently limited understanding of how plant‐herbivore interactions will change under future climatic conditions. KW - Alps KW - diet breadth KW - distance‐based specialization index KW - herbivores KW - interaction networks KW - metabarcoding KW - microclimate KW - Orthoptera KW - plant richness KW - temperature gradient Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-276441 VL - 28 IS - 13 SP - 4027 EP - 4040 ER - TY - JOUR A1 - Reinhard, Nils A1 - Bertolini, Enrico A1 - Saito, Aika A1 - Sekiguchi, Manabu A1 - Yoshii, Taishi A1 - Rieger, Dirk A1 - Helfrich‐Förster, Charlotte T1 - The lateral posterior clock neurons of Drosophila melanogaster express three neuropeptides and have multiple connections within the circadian clock network and beyond JF - Journal of Comparative Neurology N2 - Drosophila’s lateral posterior neurons (LPNs) belong to a small group of circadian clock neurons that is so far not characterized in detail. Thanks to a new highly specific split‐Gal4 line, here we describe LPNs’ morphology in fine detail, their synaptic connections, daily bimodal expression of neuropeptides, and propose a putative role of this cluster in controlling daily activity and sleep patterns. We found that the three LPNs are heterogeneous. Two of the neurons with similar morphology arborize in the superior medial and lateral protocerebrum and most likely promote sleep. One unique, possibly wakefulness‐promoting, neuron with wider arborizations extends from the superior lateral protocerebrum toward the anterior optic tubercle. Both LPN types exhibit manifold connections with the other circadian clock neurons, especially with those that control the flies’ morning and evening activity (M‐ and E‐neurons, respectively). In addition, they form synaptic connections with neurons of the mushroom bodies, the fan‐shaped body, and with many additional still unidentified neurons. We found that both LPN types rhythmically express three neuropeptides, Allostatin A, Allostatin C, and Diuretic Hormone 31 with maxima in the morning and the evening. The three LPN neuropeptides may, furthermore, signal to the insect hormonal center in the pars intercerebralis and contribute to rhythmic modulation of metabolism, feeding, and reproduction. We discuss our findings in the light of anatomical details gained by the recently published hemibrain of a single female fly on the electron microscopic level and of previous functional studies concerning the LPN. KW - activity KW - circadian clock neurons KW - insect brain KW - neuropeptides KW - sleep KW - trans‐Tango Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-276456 VL - 530 IS - 9 SP - 1507 EP - 1529 ER - TY - INPR A1 - Dandekar, Thomas T1 - Analysing the phase space of the standard model and its basic four forces from a qubit phase transition perspective: implications for large-scale structure generation and early cosmological events N2 - The phase space for the standard model of the basic four forces for n quanta includes all possible ensemble combinations of their quantum states m, a total of n**m states. Neighbor states reach according to transition possibilities (S-matrix) with emergent time from entropic ensemble gradients. We replace the “big bang” by a condensation event (interacting qubits become decoherent) and inflation by a crystallization event – the crystal unit cell guarantees same symmetries everywhere. Interacting qubits solidify and form a rapidly growing domain where the n**m states become separated ensemble states, rising long-range forces stop ultimately further growth. After that very early events, standard cosmology with the hot fireball model takes over. Our theory agrees well with lack of inflation traces in cosmic background measurements, large-scale structure of voids and filaments, supercluster formation, galaxy formation, dominance of matter and life-friendliness. We prove qubit interactions to be 1,2,4 or 8 dimensional (agrees with E8 symmetry of our universe). Repulsive forces at ultrashort distances result from quantization, long-range forces limit crystal growth. Crystals come and go in the qubit ocean. This selects for the ability to lay seeds for new crystals, for self-organization and life-friendliness. We give energy estimates for free qubits vs bound qubits, misplacements in the qubit crystal and entropy increase during qubit decoherence / crystal formation. Scalar fields for color interaction and gravity derive from the permeating qubit-interaction field. Hence, vacuum energy gets low only inside the qubit crystal. Condensed mathematics may advantageously model free / bound qubits in phase space. KW - phase space KW - cosmology KW - emergent time KW - qubit KW - phase transition KW - bit Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-298580 ER - TY - JOUR A1 - Mainz, Laura A1 - Sarhan, Mohamed A. F. E. A1 - Roth, Sabine A1 - Sauer, Ursula A1 - Maurus, Katja A1 - Hartmann, Elena M. A1 - Seibert, Helen-Desiree A1 - Rosenwald, Andreas A1 - Diefenbacher, Markus E. A1 - Rosenfeldt, Mathias T. T1 - Autophagy blockage reduces the incidence of pancreatic ductal adenocarcinoma in the context of mutant Trp53 JF - Frontiers in Cell and Developmental Biology N2 - Macroautophagy (hereafter referred to as autophagy) is a homeostatic process that preserves cellular integrity. In mice, autophagy regulates pancreatic ductal adenocarcinoma (PDAC) development in a manner dependent on the status of the tumor suppressor gene Trp53. Studies published so far have investigated the impact of autophagy blockage in tumors arising from Trp53-hemizygous or -homozygous tissue. In contrast, in human PDACs the tumor suppressor gene TP53 is mutated rather than allelically lost, and TP53 mutants retain pathobiological functions that differ from complete allelic loss. In order to better represent the patient situation, we have investigated PDAC development in a well-characterized genetically engineered mouse model (GEMM) of PDAC with mutant Trp53 (Trp53\(^{R172H}\)) and deletion of the essential autophagy gene Atg7. Autophagy blockage reduced PDAC incidence but had no impact on survival time in the subset of animals that formed a tumor. In the absence of Atg7, non-tumor-bearing mice reached a similar age as animals with malignant disease. However, the architecture of autophagy-deficient, tumor-free pancreata was effaced, normal acinar tissue was largely replaced with low-grade pancreatic intraepithelial neoplasias (PanINs) and insulin expressing islet β-cells were reduced. Our data add further complexity to the interplay between Atg7 inhibition and Trp53 status in tumorigenesis. KW - pancreatic cancer KW - autophagy KW - p53 KW - metastasis KW - ATG7 Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-266005 SN - 2296-634X VL - 10 ER - TY - THES A1 - Kuhlemann, Alexander T1 - Bioorthogonal labeling of neuronal proteins using super-resolution fluorescence microscopy T1 - Bioorthogonale Markierung von neuronalen Proteinen mittels hochauflösender Fluoreszenzmikroskopie N2 - The synaptic cleft is of central importance for synaptic transmission, neuronal plasticity and memory and thus well studied in neurobiology. To target proteins of interest with high specificity and strong signal to noise conventional immunohistochemistry relies on the use of fluorescently labeled antibodies. However, investigations on synaptic receptors remain challenging due to the defined size of the synaptic cleft of ~20 nm between opposing pre- and postsynaptic membranes. At this limited space, antibodies bear unwanted side effects such as crosslinking, accessibility issues and a considerable linkage error between fluorophore and target of ~10 nm. With recent single molecule localization microscopy (SMLM) methods enabling localization precisions of a few nanometers, the demand for labeling approaches with minimal linkage error and reliable recognition of the target molecules rises. Within the scope of this work, different labeling techniques for super-resolution fluorescence microscopy were utilized allowing site-specific labeling of a single amino acid in synaptic proteins like kainate receptors (KARs), transmembrane α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor regulatory proteins (TARPs), γ-aminobutyric acid type A receptors (GABA-ARs) and neuroligin 2 (NL2). The method exploits the incorporation of unnatural amino acids (uAAs) in the protein of interest using genetic code expansion (GCE) via amber suppression technology and subsequent labeling with tetrazine functionalized fluorophores. Implementing this technique, hard-to-target proteins such as KARs, TARPs and GABA-ARs could be labeled successfully, which could only be imaged insufficiently with conventional labeling approaches. Furthermore, functional studies involving electrophysiological characterization, as well as FRAP and FRET experiments validated that incorporation of uAAs maintains the native character of the targeted proteins. Next, the method was transferred into primary hippocampal neurons and in combination with super-resolution microscopy it was possible to resolve the nanoscale organization of γ2 and γ8 TARPs. Cluster analysis of dSTORM localization data verified synaptic accumulation of γ2, while γ8 was homogenously distributed along the neuron. Additionally, GCE and bioorthogonal labeling allowed visualization of clickable GABA-A receptors located at postsynaptic compartments in dissociated hippocampal neurons. Moreover, saturation experiments and FRET imaging of clickable multimeric receptors revealed successful binding of multiple tetrazine functionalized fluorophores to uAA-modified dimeric GABA-AR α2 subunits in close proximity (~5 nm). Further utilization of tetrazine-dyes via super-resolution microscopy methods such as dSTORM and click-ExM will provide insights to subunit arrangement in receptors in the future. This work investigated the nanoscale organization of synaptic proteins with minimal linkage error enabling new insights into receptor assembly, trafficking and recycling, as well as protein-protein interactions at synapses. Ultimately, bioorthogonal labeling can help to understand pathologies such as the limbic encephalitis associated with GABA-AR autoantibodies and is already in application for cancer therapies. N2 - Der synaptische Spalt ist von zentraler Bedeutung für die synaptische Reizweiterleitung, neuronale Plastizität und Gedächtnis und dadurch neurobiologisch sehr gut charakterisiert. Um Zielproteine mit hoher Spezifität und einem guten Signal-zu-Rauschen Verhältnis zu adressieren, wird konventionell auf Immunhistochemie mittels Fluoreszenzfarbstoff-markierter Antikörper zurückgegriffen. Untersuchungen synaptischer Rezeptoren bleiben dabei jedoch aufgrund der limitierten Zugänglichkeit des synaptischen Spalts mit einem Abstand von ~20 nm zwischen gegenüberliegenden pre- und postsynaptischen Membranen herausfordernd. Speziell in einem räumlich begrenzten Umfeld können bei der Verwendung von Antikörpern unerwünschte Artefakte auftreten, die durch Kreuzverlinkung, eine verminderte Zugänglichkeit und einen erheblichen Markierungsabstand zwischen Fluorophor und Probe von ~10 nm entstehen. Aktuelle Verfahren der Einzelmolekül-Lokalisations-Mikroskopie (SMLM), die eine Lokalisationsgenauigkeit von wenigen Nanometern ermöglichen, erhöhen die Nachfrage an Markierungsstrategien mit minimalem Markierungsabstand und zuverlässiger Erkennung der Zielstruktur. Im Rahmen dieser Arbeit wurden daher verschiedene Markierungsmethoden für die hochauflösende Fluoreszenz-Mikroskopie erprobt. Dies ermöglichte die ortsspezifische Markierung einer einzigen Aminosäure in synaptischen Proteinen wie Kainat-Rezeptoren (KARs), Transmembran-α-Amino-3-hydroxy-5-methyl-4-isoxazol-Propionsäure-Rezeptor regulierenden Proteinen (TARPs), γ-Aminobuttersäure-Typ-A-Rezeptoren (GABA-ARs) oder Neuroligin 2 (NL2). Die angewandte Methodik nutzt den Einbau von unnatürlichen Aminosäuren (uAAs) in das Zielprotein mittels Erweiterung des genetischen Codes (GCE) durch Unterdrückung des Amber-Stop-Codons. Durch Anwendung dieser Strategie gelang es, schwer adressierbare Proteine wie KARs, TARPs und GABA-ARs, welche zuvor mittels konventioneller Markierungsversuche nur unzureichend abgebildet werden konnten, erfolgreich zu markieren. Funktionelle Studien wie elektrophysiologische Charakterisierungen, aber auch FRAP und FRET Experimente zeigten, dass dabei der native Zustand der Zielproteine auch nach dem Einbau von uAAs erhalten bleibt. Schließlich wurde die Methode in primäre hippocampale Neuronen überführt und in Kombination mit hochauflösender Mikroskopie konnte die Organisation von γ2 und γ8 TARPs im Nanobereich aufgelöst werden. Eine Cluster-Analyse von dSTORM Lokalisationsdaten bestätigte die Anreicherung von γ2 in Synapsen, während γ8 homogen entlang des Neurons verteilt vorliegt. Die Erweiterung des genetischen Codes in Kombination mit bioorthogonaler Markierung erlaubte zusätzlich die Visualisierung von clickbaren GABA-A Rezeptoren in Postsynapsen von dissoziierten hippocampalen Neuronen. Außerdem zeigten Saturierungs-Experimente und FRET-Bildgebung die erfolgreiche Bindung von mehreren Tetrazin-gekoppelten Fluorophoren an uAA-modifizierten, dimerischen GABA-AR α2-Untereinheiten in geringem Abstand (~5 nm). Auf der Basis dieser Resultate werden zukünftig hochauflösende mikroskopische Verfahren, wie dSTORM und click-ExM, in Kombination mit Tetrazin-Farbstoffen die Visualisierung von multimerischen Rezeptoren ermöglichen. Im Rahmen dieser Arbeit konnte die Organisation von synaptischen Proteinen mit minimalem Markierungsabstand im Nanobereich untersucht werden und dadurch neue Einsichten in Rezeptor-Zusammenbau, -Bewegungen und -Wiederverwertung, aber auch Protein-Protein Interaktionen in Synapsen gewonnen werden. Die Weiterentwicklung bioorthogonaler Markierungsstrategien kann in Zukunft dazu beitragen Krankheiten, wie die Limbische Enzephalitis, welche mit GABA-AR Autoantikörpern in Verbindung steht, besser zu verstehen und findet zudem bereits heute Anwendung in Krebstherapien. KW - microscopy KW - bioorthogonal labeling KW - super-resolution fluorescence microscopy Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-243731 ER - TY - THES A1 - Niehörster, Thomas T1 - Spektral aufgelöste Fluoreszenzlebensdauer-Mikroskopie mit vielen Farben T1 - Spectrally resolved fluorescence lifetime imaging microscopy with many colours N2 - Die Fluoreszenzmikroskopie ist eine vielseitig einsetzbare Untersuchungsmethode für biologische Proben, bei der Biomoleküle selektiv mit Fluoreszenzfarbstoffen markiert werden, um sie dann mit sehr gutem Kontrast abzubilden. Dies ist auch mit mehreren verschiedenartigen Zielmolekülen gleichzeitig möglich, wobei üblicherweise verschiedene Farbstoffe eingesetzt werden, die über ihre Spektren unterschieden werden können. Um die Anzahl gleichzeitig verwendbarer Färbungen zu maximieren, wird in dieser Arbeit zusätzlich zur spektralen Information auch das zeitliche Abklingverhalten der Fluoreszenzfarbstoffe mittels spektral aufgelöster Fluoreszenzlebensdauer-Mikroskopie (spectrally resolved fluorescence lifetime imaging microscopy, sFLIM) vermessen. Dazu wird die Probe in einem Konfokalmikroskop von drei abwechselnd gepulsten Lasern mit Wellenlängen von 485 nm, 532nm und 640nm angeregt. Die Detektion des Fluoreszenzlichtes erfolgt mit einer hohen spektralen Auflösung von 32 Kanälen und gleichzeitig mit sehr hoher zeitlicher Auflösung von einigen Picosekunden. Damit wird zu jedem detektierten Fluoreszenzphoton der Anregungslaser, der spektrale Kanal und die Ankunftszeit registriert. Diese detaillierte multidimensionale Information wird von einem Pattern-Matching-Algorithmus ausgewertet, der das Fluoreszenzsignal mit zuvor erstellten Referenzpattern der einzelnen Farbstoffe vergleicht. Der Algorithmus bestimmt so für jedes Pixel die Beiträge der einzelnen Farbstoffe. Mit dieser Technik konnten pro Anregungslaser fünf verschiedene Färbungen gleichzeitig dargestellt werden, also theoretisch insgesamt 15 Färbungen. In der Praxis konnten mit allen drei Lasern zusammen insgesamt neun Färbungen abgebildet werden, wobei die Anzahl der Farben vor allem durch die anspruchsvolle Probenvorbereitung limitiert war. In anderen Versuchen konnte die sehr hohe Sensitivität des sFLIM-Systems genutzt werden, um verschiedene Zielmoleküle voneinander zu unterscheiden, obwohl sie alle mit demselben Farbstoff markiert waren. Dies war möglich, weil sich die Fluoreszenzeigenschaften eines Farbstoffmoleküls geringfügig in Abhängigkeit von seiner Umgebung ändern. Weiterhin konnte die sFLIM-Technik mit der hochauflösenden STED-Mikroskopie (STED: stimulated emission depletion) kombiniert werden, um so hochaufgelöste zweifarbige Bilder zu erzeugen, wobei nur ein einziger gemeinsamer STED-Laser benötigt wurde. Die gleichzeitige Erfassung von mehreren photophysikalischen Messgrößen sowie deren Auswertung durch den Pattern-Matching-Algorithmus ermöglichten somit die Entwicklung von neuen Methoden der Fluoreszenzmikroskopie für Mehrfachfärbungen. N2 - Fluorescence microscopy is an important and near-universal technique to examine biological samples. Typically, biomolecules are selectively labelled with fluorophores and then imaged with high contrast. This can be done for several target molecules simultaneously, using different fluorophores that are usually distinguished by their spectra. This thesis describes a method to maximize the number of simultaneous stainings. Not only the spectral information but also the temporal information of the fluorescence decay is exploited by means of spectrally resolved fluorescence lifetime imaging microscopy (sFLIM). Using a confocal laser scanning microscope, the sample is excited by three alternatingly pulsed lasers at 485 nm, 532 nm, and 640 nm. Fluorescence light is detected on 32 spectrally separated detection channels with high time resolution of a few picoseconds. Thus, in this setup, we record the excitation laser, the spectral channel, and the time of arrival for each fluorescence photon. This detailed multi-dimensional information is then processed by a pattern-matching algorithm that compares the fluorescence signal with reference patterns of the used fluorophores to determine the contribution of each fluorophore in each pixel. Using this technique we imaged five different stainings per excitation laser, implying that 15 simultaneous stainings should theoretically be achievable. Current constraints in the sample preparation procedure limited the number of simultaneous stainings to nine. In additional experiments, we exploited the sensitivity of the sFLIM system to image several different target molecules simultaneously with the same fluorophore, taking advantage of slight changes in the fluorescence behaviour of the fluorophore due to environmental changes. We also combined sFLIM with stimulated emission depletion (STED) to perform super-resolution multi-target imaging with two stainings that operated with one common STED laser. Thus, the simultaneous exploitation of several photophysical parameters, in combination with algorythmic evaluation, allowed us to devise novel modes of multi-target imaging in fluorescence microscopy. KW - Fluoreszenzmikroskopie KW - Fluoreszenzlebensdauer-Mikroskopie KW - Konfokale Mikroskopie KW - STED-Mikroskopie KW - Fluoreszenz KW - Mustervergleich KW - Pattern Matching KW - sFLIM KW - TCSPC KW - Mikroskopie KW - Microscopy Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-296573 ER - TY - JOUR A1 - Hornick, Thomas A1 - Richter, Anett A1 - Harpole, William Stanley A1 - Bastl, Maximilian A1 - Bohlmann, Stephanie A1 - Bonn, Aletta A1 - Bumberger, Jan A1 - Dietrich, Peter A1 - Gemeinholzer, Birgit A1 - Grote, Rüdiger A1 - Heinold, Bernd A1 - Keller, Alexander A1 - Luttkus, Marie L. A1 - Mäder, Patrick A1 - Motivans Švara, Elena A1 - Passonneau, Sarah A1 - Punyasena, Surangi W. A1 - Rakosy, Demetra A1 - Richter, Ronny A1 - Sickel, Wiebke A1 - Steffan‐Dewenter, Ingolf A1 - Theodorou, Panagiotis A1 - Treudler, Regina A1 - Werchan, Barbora A1 - Werchan, Matthias A1 - Wolke, Ralf A1 - Dunker, Susanne T1 - An integrative environmental pollen diversity assessment and its importance for the Sustainable Development Goals JF - Plants, People, Planet N2 - Societal Impact Statement Pollen relates to many aspects of human and environmental health, which protection and improvement are endorsed by the United Nations Sustainable Development Goals. By highlighting these connections in the frame of current challenges in monitoring and research, we discuss the need of more integrative and multidisciplinary pollen research related to societal needs, improving health of humans and our ecosystems for a sustainable future. Summary Pollen is at once intimately part of the reproductive cycle of seed plants and simultaneously highly relevant for the environment (pollinators, vector for nutrients, or organisms), people (food safety and health), and climate (cloud condensation nuclei and climate reconstruction). We provide an interdisciplinary perspective on the many and connected roles of pollen to foster a better integration of the currently disparate fields of pollen research, which would benefit from the sharing of general knowledge, technical advancements, or data processing solutions. We propose a more interdisciplinary and holistic research approach that encompasses total environmental pollen diversity (ePD) (wind and animal and occasionally water distributed pollen) at multiple levels of diversity (genotypic, phenotypic, physiological, chemical, and functional) across space and time. This interdisciplinary approach holds the potential to contribute to pressing human issues, including addressing United Nations Sustainable Development Goals, fostering social and political awareness of these tiny yet important and fascinating particles. KW - aerobiology KW - allergy KW - diversity KW - environmental monitoring KW - food safety KW - paleoecology KW - palynology KW - pollination Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-276487 VL - 4 IS - 2 SP - 110 EP - 121 ER - TY - JOUR A1 - Buellesbach, Jan A1 - Diao, Wenwen A1 - Schmitt, Thomas A1 - Beukeboom, Leo W. T1 - Micro‐climate correlations and conserved sexual dimorphism of cuticular hydrocarbons in European populations of the jewel wasp Nasonia vitripennis JF - Ecological Entomology N2 - 1. Protection against desiccation and chemical communication are two fundamental functions of cuticular hydrocarbons (CHCs) in insects. In the parasitoid jewel wasp Nasonia vitripennis (Walker), characterised by a cosmopolitan distribution through largely different environments, CHCs function as universally recognised female sex pheromones. However, CHC uniformity as basis for sexual recognition may conflict with the desiccation protection function, expected to display considerable flexibility through adaptation to different environmental conditions. 2. We compared male and female CHC profiles of N. vitripennis across a wide latitudinal gradient in Europe and correlated their CHC variation with climatic factors associated with desiccation. Additionally, we tested male mate discrimination behaviour between populations to detect potential variations in female sexual attractiveness. 3. Results did not conform to the general expectation that longer, straight‐chain CHCs occur in higher proportions in warmer and drier climates. Instead, unexpected environmental correlations of intermediate chain‐length CHCs (C31) were found exclusively in females, potentially reflecting the different life histories of the sexes in N. vitripennis. 4. Furthermore, we found no indication of population‐specific male mate preference, confirming the stability of female sexual attractiveness, likely conveyed through their CHC profiles. C31 mono‐ and C33 di‐methyl‐branched alkanes were consistently and most strongly associated with sexual dimorphism, suggesting their potential role in encoding the female‐specific sexual signalling function. 5. Our study sheds light on how both adaptive flexibility and conserved sexual attractiveness can potentially be integrated and encoded in CHC profiles of N. vitripennis females across a wide distribution range in Europe. KW - chemical communication KW - climatic factors KW - desiccation resistance KW - sex pheromones KW - sexual dimorphism Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262770 VL - 47 IS - 1 SP - 38 EP - 51 ER - TY - JOUR A1 - Venjakob, C. A1 - Ruedenauer, F. A. A1 - Klein, A.‐M. A1 - Leonhardt, S. D. T1 - Variation in nectar quality across 34 grassland plant species JF - Plant Biology N2 - Floral nectar is considered the most important floral reward for attracting pollinators. It contains large amounts of carbohydrates besides variable concentrations of amino acids and thus represents an important food source for many pollinators. Its nutrient content and composition can, however, strongly vary within and between plant species. The factors driving this variation in nectar quality are still largely unclear. We investigated factors underlying interspecific variation in macronutrient composition of floral nectar in 34 different grassland plant species. Specifically, we tested for correlations between the phylogenetic relatedness and morphology of plants and the carbohydrate (C) and total amino acid (AA) composition and C:AA ratios of nectar. We found that compositions of carbohydrates and (essential) amino acids as well as C:AA ratios in nectar varied significantly within and between plant species. They showed no clear phylogenetic signal. Moreover, variation in carbohydrate composition was related to family‐specific structural characteristics and combinations of morphological traits. Plants with nectar‐exposing flowers, bowl‐ or parabolic‐shaped flowers, as often found in the Apiaceae and Asteraceae, had nectar with higher proportions of hexoses, indicating a selective pressure to decelerate evaporation by increasing nectar osmolality. Our study suggests that variation in nectar nutrient composition is, among others, affected by family‐specific combinations of morphological traits. However, even within species, variation in nectar quality is high. As nectar quality can strongly affect visitation patterns of pollinators and thus pollination success, this intra‐ and interspecific variation requires more studies to fully elucidate the underlying causes and the consequences for pollinator behaviour. KW - flower morphology KW - flowering grassland plants KW - Jena Experiment KW - nectar macronutrients KW - phylogeny Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262612 VL - 24 IS - 1 SP - 134 EP - 144 ER - TY - JOUR A1 - Alnusaire, Taghreed S. A1 - Sayed, Ahmed M. A1 - Elmaidomy, Abeer H. A1 - Al-Sanea, Mohammad M. A1 - Albogami, Sarah A1 - Albqmi, Mha A1 - Alowaiesh, Bassam F. A1 - Mostafa, Ehab M. A1 - Musa, Arafa A1 - Youssif, Khayrya A. A1 - Refaat, Hesham A1 - Othman, Eman M. A1 - Dandekar, Thomas A1 - Alaaeldin, Eman A1 - Ghoneim, Mohammed M. A1 - Abdelmohsen, Usama Ramadan T1 - An in vitro and in silico study of the enhanced antiproliferative and pro-oxidant potential of Olea europaea L. cv. Arbosana leaf extract via elastic nanovesicles (spanlastics) JF - Antioxidants N2 - The olive tree is a venerable Mediterranean plant and often used in traditional medicine. The main aim of the present study was to evaluate the effect of Olea europaea L. cv. Arbosana leaf extract (OLE) and its encapsulation within a spanlastic dosage form on the improvement of its pro-oxidant and antiproliferative activity against HepG-2, MCF-7, and Caco-2 human cancer cell lines. The LC-HRESIMS-assisted metabolomic profile of OLE putatively annotated 20 major metabolites and showed considerable in vitro antiproliferative activity against HepG-2, MCF-7, and Caco-2 cell lines with IC\(_{50}\) values of 9.2 ± 0.8, 7.1 ± 0.9, and 6.5 ± 0.7 µg/mL, respectively. The encapsulation of OLE within a (spanlastic) nanocarrier system, using a spraying method and Span 40 and Tween 80 (4:1 molar ratio), was successfully carried out (size 41 ± 2.4 nm, zeta potential 13.6 ± 2.5, and EE 61.43 ± 2.03%). OLE showed enhanced thermal stability, and an improved in vitro antiproliferative effect against HepG-2, MCF-7, and Caco-2 (IC\(_{50}\) 3.6 ± 0.2, 2.3 ± 0.1, and 1.8 ± 0.1 µg/mL, respectively) in comparison to the unprocessed extract. Both preparations were found to exhibit pro-oxidant potential inside the cancer cells, through the potential inhibitory activity of OLE against glutathione reductase and superoxide dismutase (IC\(_{50}\) 1.18 ± 0.12 and 2.33 ± 0.19 µg/mL, respectively). These inhibitory activities were proposed via a comprehensive in silico study to be linked to the presence of certain compounds in OLE. Consequently, we assume that formulating such a herbal extract within a suitable nanocarrier would be a promising improvement of its therapeutic potential. KW - olive KW - metabolomic profiling KW - antiproliferative KW - pro-oxidant KW - encapsulation KW - spanlastic KW - nanocarrier KW - docking KW - molecular dynamics simulation KW - Olea Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-250064 SN - 2076-3921 VL - 10 IS - 12 ER - TY - JOUR A1 - Graf, Marlene A1 - Lettenmaier, Ludwig A1 - Müller, Jörg A1 - Hagge, Jonas T1 - Saproxylic beetles trace deadwood and differentiate between deadwood niches before their arrival on potential hosts JF - Insect Conservation and Diversity N2 - Deadwood provides a variety of habitats for saproxylic beetles. Whereas the understanding of the drivers promoting saproxylic beetle diversity has improved, the process of deadwood colonisation and beetle's potential to trace resources is poorly understood. However, the mechanisms facilitating deadwood detection by saproxylic beetles appears to be essential for survival, as deadwood is usually scattered in time and space. To investigate whether saproxylic beetles distinguish before their arrival on potential hosts between alive trees and deadwood (lying, stumps, standing), deadwood arrangement (aggregated, distributed) and different heights on standing resources (bottom = 0.5 m, middle = 4–5 m, top = 7.30–11.60 m), we sampled saproxylic beetles with sticky traps in a deadwood experiment. We found on average 67% higher abundance, 100% higher species numbers and 50–130% higher species diversity of colonising saproxylic beetles consistently for all deadwood types compared to alive trees with a distinct community composition on lying deadwood compared to the other resource types. Aggregated deadwood arrangement, which is associated with higher sun‐exposure, had a positive effect on species richness. The abundance, species number and diversity, was significantly higher for standing deadwood and alive trees at the bottom section of tree trunks. In contrast to living trees, however, the vertical position had an additional effect on the community composition on standing deadwood. Our results indicate that saproxylic beetles are attracted to potential deadwood habitats and actively select specific trunk sections before arriving on potential hosts. Furthermore, this study highlights the importance of sun‐exposed resources for species richness in saproxylic beetles. KW - deadwood KW - experiment KW - host discrimination KW - host selection KW - microclimate KW - saproxylic beetles KW - vertical stratification Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262507 VL - 15 IS - 1 SP - 48 EP - 60 ER - TY - JOUR A1 - Ruiz, E. Josue A1 - Diefenbacher, Markus E. A1 - Nelson, Jessica K. A1 - Sancho, Rocio A1 - Pucci, Fabio A1 - Chakraborty, Atanu A1 - Moreno, Paula A1 - Annibaldi, Alessandro A1 - Liccardi, Gianmaria A1 - Encheva, Vesela A1 - Mitter, Richard A1 - Rosenfeldt, Mathias A1 - Snijders, Ambrosius P. A1 - Meier, Pascal A1 - Calzado, Marco A. A1 - Behrens, Axel T1 - LUBAC determines chemotherapy resistance in squamous cell lung cancer JF - Journal of Experimental Medicine N2 - Lung squamous cell carcinoma (LSCC) and adenocarcinoma (LADC) are the most common lung cancer subtypes. Molecular targeted treatments have improved LADC patient survival but are largely ineffective in LSCC. The tumor suppressor FBW7 is commonly mutated or down-regulated in human LSCC, and oncogenic KRasG12D activation combined with Fbxw7 inactivation in mice (KF model) caused both LSCC and LADC. Lineage-tracing experiments showed that CC10(+), but not basal, cells are the cells of origin of LSCC in KF mice. KF LSCC tumors recapitulated human LSCC resistance to cisplatin-based chemotherapy, and we identified LUBAC-mediated NF-kappa B signaling as a determinant of chemotherapy resistance in human and mouse. Inhibition of NF-kappa B activation using TAK1 or LUBAC inhibitors resensitized LSCC tumors to cisplatin, suggesting a future avenue for LSCC patient treatment. KW - Solid tumors Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-227146 VL - 216 IS - 2 ER - TY - RPRT A1 - Müller, Jörg A1 - Scherer-Lorenzen, Michael A1 - Ammer, Christian A1 - Eisenhauer, Nico A1 - Seidel, Dominik A1 - Schuldt, Bernhard A1 - Biedermann, Peter A1 - Schmitt, Thomas A1 - Künzer, Claudia A1 - Wegmann, Martin A1 - Cesarz, Simone A1 - Peters, Marcell A1 - Feldhaar, Heike A1 - Steffan-Dewenter, Ingolf A1 - Claßen, Alice A1 - Bässler, Claus A1 - von Oheimb, Goddert A1 - Fichtner, Andreas A1 - Thorn, Simon A1 - Weisser, Wolfgang T1 - BETA-FOR: Erhöhung der strukturellen Diversität zwischen Waldbeständen zur Erhöhung der Multidiversität und Multifunktionalität in Produktionswäldern. Antragstext für die DFG Forschungsgruppe FOR 5375 T1 - BETA-FOR: Enhancing the structural diversity between patches for improving multidiversity and multifunctionality in production forests. Proposal for DFG Research Unit FOR 5375 BT - β\(_4\) : Proposal for the 1st phase (2022-2026) of the DFG Research Unit FOR 5375/1 (DFG Forschergruppe FOR 5375/1 – BETA-FOR), Fabrikschleichach, October 2021 N2 - Der in jüngster Zeit beobachtete kontinuierliche Verlust der β-Diversität in Ökosystemen deutet auf homogene Gemeinschaften auf Landschaftsebene hin, was hauptsächlich auf die steigende Landnutzungsintensität zurückgeführt wird. Biologische Vielfalt ist mit zahlreichen Funktionen und der Stabilität von Ökosystemen verknüpft. Es ist daher zu erwarten, dass eine abnehmende β-Diversität auch die Multifunktionalität verringert. Wir kombinieren hier Fachwissen aus der Forstwissenschaft, der Ökologie, der Fernerkundung, der chemischen Ökologie und der Statistik in einem gemeinschaftlichen und experimentellen β-Diversitätsdesign, um einerseits die Auswirkungen der Homogenisierung zu bewerten und andererseits Konzepte zu entwickeln, um negative Auswirkungen durch Homogenisierung in Wäldern rückgängig zu machen. Konkret werden wir uns mit der Frage beschäftigen, ob die Verbesserung der strukturellen β-Komplexität (ESBC) in Wäldern durch Waldbau oder natürliche Störungen die Biodiversität und Multifunktionalität in ehemals homogenen Produktionswäldern erhöhen kann. Unser Ansatz wird mögliche Mechanismen hinter den beobachteten Homogenisierungs-Diversitäts-Beziehungen identifizieren und zeigen, wie sich diese auf die Multifunktionalität auswirken. An elf Standorten in ganz Deutschland haben wir dazu zwei Waldbestände als zwei kleine "Waldlandschaften" ausgewählt. In einem dieser beiden Bestände haben wir ESBC (Enhancement of Structural Beta Complexity)-Behandlungen durchgeführt. Im zweiten, dem Kontrollbestand, werden wir die gleich Anzahl 50x50m Parzellen ohne ESBC einrichten. Auf allen Parzellen werden wir 18 taxonomische Artengruppen aller trophischer Ebenen und 21 Ökosystemfunktionen, einschließlich der wichtigsten Funktionen in Wäldern der gemäßigten Zonen, messen. Der statistische Rahmen wird eine umfassende Analyse der Biodiversität ermöglichen, indem verschiedenen Aspekte (taxonomische, funktionelle und phylogenetische Vielfalt) auf verschiedenen Skalenebenen (α-, β-, γ-Diversität) quantifiziert werden. Um die Gesamtdiversität zu kombinieren, werden wir das Konzept der Multidiversität auf die 18 Taxa anwenden. Wir werden neue Ansätze zur Quantifizierung und Aufteilung der Multifunktionalität auf α- und β-Skalen verwenden und entwickeln. Durch die experimentelle Beschreibung des Zusammenhangs zwischen β-Diversität und Multifunktionalität in einer Reallandschaft wird unsere Forschung einen neuen Weg einschlagen. Darüber hinaus werden wir dazu beitragen, verbesserte Leitlinien für waldbauliche Konzepte und für das Management natürlicher Störungen zu entwickeln, um Homogenisierungseffekte der Vergangenheit umzukehren. N2 - The recently observed consistent loss of β-diversity across ecosystems indicates increasingly homogeneous communities in patches of landscapes, mainly caused by increasing land-use intensity. Biodiversity is related to numerous ecosystem functions and stability. Therefore, decreasing β-diversity is also expected to reduce multifunctionality. To assess the impact of homogenization and to develop guidelines to reverse its potentially negative effects, we combine expertise from forest science, ecology, remote sensing, chemical ecology and statistics in a collaborative and experimental β-diversity approach. Specifically, we will address the question whether the Enhancement of Structural Beta Complexity (ESBC) in forests by silviculture or natural disturbances will increase biodiversity and multifunctionality in formerly homogeneously structured production forests. Our approach will identify potential mechanisms behind observed homogenization-diversity-relationships and show how these translate into effects on multifunctionality. At eleven forest sites throughout Germany, we selected two districts as two types of small ‘forest landscapes’. In one of these two districts, we established ESBC treatments (nine differently treated 50x50 m patches with a focus on canopy cover and deadwood features). In the second, the control district, we will establish nine patches without ESBC. By a comprehensive sampling, we will monitor 18 taxonomic groups and measure 21 ecosystem functions, including key functions in temperate forests, on all patches. The statistical framework will allow a comprehensive biodiversity assessment by quantifying the different aspects of multitrophic biodiversity (taxonomical, functional and phylogenetic diversity) on different levels of biodiversity (α-, β-, γ-diversity). To combine overall diversity, we will apply the concept of multidiversity across the 18 taxa. We will use and develop new approaches for quantification and partitioning of multifunctionality at α- and β- scales. Overall, our study will herald a new research avenue, namely by experimentally describing the link between β-diversity and multifunctionality. Furthermore, we will help to develop guidelines for improved silvicultural concepts and concepts for management of natural disturbances in temperate forests reversing past homogenization effects. KW - Waldökosystem KW - Biodiversität KW - BETA-Multifunktionalität KW - beta-multifunctionality KW - BETA-Diversität KW - beta diversity KW - Forschungsstation Fabrikschleichach Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290849 ER - TY - THES A1 - Krones, David T1 - The Role of Acid Sphingomyelinase in \(Staphylococcus\) \(aureus\) Infection of Endothelial Cells T1 - Die Rolle der sauren Sphingomyelinase bei \(Staphylococcus\) \(aureus\) Infektionen von Endothelzellen N2 - Staphylococcus aureus is a human bacterial pathogen responsible for a variety of diseases including bacterial pneumonia and sepsis. Recent studies provided an explanation, how S. aureus and its exotoxins contribute to the degradation of endothelial junction proteins and damage lung tissue [4]. Previous findings were indicating an involvement of acid sphingomyelinase (ASM) activity in cell barrier degradation [5]. In the presented study the impact of singular virulence factors, such as staphylococcal α-toxin, on in vitro cell barrier integrity as well as their ability to elicit an activation of ASM were investigated. Experiments with bacterial supernatants performed on human endothelial cells demonstrated a rapid dissociation after treatment, whereas murine endothelial cells were rather resistant against cell barrier degradation. Furthermore, amongst all tested staphylococcal toxins it was found that only α-toxin had a significant impact on endothelial junction proteins and ASM activity. Ablation of this single toxin was sufficient to protect endothelial cells from cell barrier degradation and activation of ASM was absent. In this process it was verified, that α-toxin induces a recruitment of intracellular ASM, which is accompanied by rapid and oscillating changes in cytoplasmic Ca2+ concentration and an increased exposure of Lysosomal associated membrane protein 1 (LAMP1) on the cell surface. Recruitment of lysosomal ASM is associated, among other aspects, to plasma membrane repair and was previously described to be involved with distinct pathogens as well as other pore forming toxins (PFT). However, with these findings a novel feature for α-toxin has been revealed, indicating that the staphylococcal PFT is able to elicit a similar process to previously described plasma membrane repair mechanisms. Increased exposure and intake of surface membrane markers questioned the involvement of ASM activity in S. aureus internalization by non-professional phagocytes such as endothelial cells. By modifying ASM expression pattern as well as application of inhibitors it was possible to reduce the intracellular bacterial count. Thus, a direct connection between ASM activity and S. aureus infection mechanisms was observed, therefore this study exemplifies how S. aureus is able to exploit the host cell sphingolipid metabolism as well as benefit of it for invasion into non-professional phagocytic cells N2 - Staphylococcus aureus ist ein bakterieller Erreger, der für eine Vielzahl von Erkrankungen des Menschen verantwortlich ist, darunter bakterielle Lungenentzündung und Sepsis. Neuere Studien konnten einen Ansatz dafür liefern, wie S. aureus und seine Exotoxine zur Degradation von endothelialen Verbindungsproteinen beitragen und das Lungengewebe schädigen. Weitere Befunde weisen auf eine Beteiligung der sauren Sphingomyelinase (ASM) bei der Degradation der Zellbarriere hin. In der vorliegenden Studie soll der Einfluss einzelner Virulenzfaktoren, wie z. B. Staphylokokkus α-Toxin, auf die Integrität der Zellbarriere in vitro sowie deren Fähigkeit, eine Aktivierung der ASM hervorzurufen, untersucht werden.Experimente mit bakteriellen Überständen die an humanen Endothelzellen durchgeführt wurden, zeigten eine rasche Dissoziation nach Behandlung, während murine Endothelzellen vorwiegend resistent gegen eine Degradation der Zellbarriere waren. Darüber hinaus wurde unter allen getesteten Staphylokokken-Toxinen festgestellt, dass nur α-Toxin einen signifikanten Einfluss auf endotheliale Verbindungssproteine und ASM-Aktivität hat. Die genetische Ablation des Toxins alleine reichte aus, um Endothelzellen vor einer Degradation der Zellbarriere zu schützen, und die Aktivierung von ASM blieb aus. Dabei konnte nachgewiesen werden, dass α-Toxin eine Rekrutierung von intrazellulärem ASM induziert, die mit schnellen oszillierenden Veränderungen der zytoplasmatischen Ca2+-Konzentration und einer erhöhten Exposition von Lysosome associated membrane protein 1 (LAMP1) an der Zelloberfläche einhergeht. Die Rekrutierung lysosomaler ASM ist u.a. mit der Reparatur von Plasmamembran assoziiert und wurde bereits im Zusammenhang mit verschiedenen Pathogenen sowie anderer porenbildende Toxine (PFT) beschrieben. Mit diesen Befunden konnte jedoch eine neue Eigenschaft für α-Toxin beschrieben werden, die darauf hindeutet, dass das Staphylokokken-PFT einen ähnlichen Prozess auslösen kann wie zuvor beschriebene Plasmamembran-Reparaturmechanismen. Die vermehrte Exposition und Aufnahme von Oberflächenmembranmerkmalen stellte die Beteiligung der ASM-Aktivität an der Internalisierung von S. aureus durch nicht-professionelle Phagozyten wie Endothelzellen in Frage. Durch Modifikation des ASM-Expressionsmusters sowie Applikation von Inhibitoren war es möglich, die intrazelluläre Keimzahl zu reduzieren. Somit konnte ein direkter Zusammenhang zwischen ASM-Aktivität und den Infektionsmechanismen von S. aureus beobachtet werden. Diese Studie verdeutlicht somit, wie S. aureus den Sphingolipid-Stoffwechsel der Wirtszelle ausnutzen und für die Invasion in nicht-professionelle phagozytische Zellen nutzen kann KW - Staphylococcus aureus KW - Endothelzelle KW - Endothelial cells KW - Acid Sphingomyelinase KW - Plasma membrane repair Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290492 ER - TY - THES A1 - Grob, Robin T1 - The Function of Learning Walks of \({Cataglyphis Ants}\): Behavioral and Neuronal Analyses T1 - Die Funktion der Lernläufe in \(Cataglyphis\) Ameisen: eine Studie des Verhaltens und der neuronalen Auswirkungen N2 - Humans and animals alike use the sun, the moon, and the stars to guide their ways. However, the position of celestial cues changes depending on daytime, season, and place on earth. To use these celestial cues for reliable navigation, the rotation of the sky has to be compensated. While humans invented complicated mechanisms like the Antikythera mechanism to keep track of celestial movements, animals can only rely on their brains. The desert ant Cataglyphis is a prime example of an animal using celestial cues for navigation. Using the sun and the related skylight polarization pattern as a compass, and a step integrator for distance measurements, it can determine a vector always pointing homewards. This mechanism is called path integration. Since the sun’s position and, therefore, also the polarization pattern changes throughout the day, Cataglyphis have to correct this movement. If they did not compensate for time, the ants’ compass would direct them in different directions in the morning and the evening. Thus, the ants have to learn the solar ephemeris before their far-reaching foraging trips. To do so, Cataglyphis ants perform a well-structured learning-walk behavior during the transition phase from indoor worker to outdoor forager. While walking in small loops around the nest entrance, the ants repeatedly stop their forward movements to perform turns. These can be small walked circles (voltes) or tight turns about the ants’ body axes (pirouettes). During pirouettes, the ants gaze back to their nest entrance during stopping phases. These look backs provide a behavioral read-out for the state of the path integrator. The ants “tell” the observer where they think their nest is, by looking back to it. Pirouettes are only performed by Cataglyphis ants inhabiting an environment with a prominent visual panorama. This indicates, that pirouettes are performed to learn the visual panorama. Voltes, on the other hand, might be used for calibrating the celestial compass of the ants. In my doctoral thesis, I employed a wide range of state-of-the-art techniques from different disciplines in biology to gain a deeper understanding of how navigational information is acquired, memorized, used, and calibrated during the transition phase from interior worker to outdoor forager. I could show, that celestial orientation cues that provide the main compass during foraging, do not guide the ants during the look-backbehavior of initial learning walks. Instead Cataglyphis nodus relies on the earth’s magnetic field as a compass during this early learning phase. While not guiding the ants during their first walks outside of the nest, excluding the ants from perceiving the natural polarization pattern of the skylight has significant consequences on learning-related plasticity in the ants’ brain. Only if the ants are able to perform their learning-walk behavior under a skylight polarization pattern that changes throughout the day, plastic neuronal changes in high-order integration centers are induced. Especially the mushroom bogy collar, a center for learning and memory, and the central complex, a center for orientation and motor control, showed an increase in volume after learning walks. This underlines the importance of learning walks for calibrating the celestial compass. The magnetic compass might provide the necessary stable reference system for the ants to calibrate their celestial compass and learn the position of landmark information. In the ant brain, visual information from the polarization-sensitive ocelli converge in tight apposition with neuronal afferents of the mechanosensitive Johnston’s organ in the ant’s antennae. This makes the ants’ antennae an interesting candidate for studying the sensory bases of compass calibration in Cataglyphis ants. The brain of the desert navigators is well adapted to successfully accomplish their navigational needs. Females (gynes and workers) have voluminous mushroom bodies, and the synaptic complexity to store large amount of view-based navigational information, which they acquire during initial learning walks. The male Cataglyphis brain is better suited for innate behaviors that support finding a mate. The results of my thesis show that the well adapted brain of C. nodus ants undergoes massive structural changes during leaning walks, dependent on a changing celestial polarization pattern. This underlies the essential role of learning walks in the calibration of orientation systems in desert ants. N2 - Die Gestirne helfen nicht nur Menschen uns zurecht zu finden, sondern auch Tiere können Sonne, Mond und Sterne für Navigation nutzen. Dabei gilt es aber zu beachten, dass die Himmelskörper ihre Position abhängig von der Tageszeit, den Jahreszeiten und dem Standort auf der Erde verändern. Um anhand von Himmelseigenschaften erfolgreich navigieren zu können, ist es deshalb unerlässlich diese Himmelsrotation zu kennen und für sie zu kompensieren. Menschen haben dafür bereits in der Antike komplizierte Maschinen wie den Antikythera Mechanismus entwickelt, Tiere dagegen brauchen nur ihr Gehirn. Wüstenameisen der Galtung Cataglyphis sind kleine Meisternavigatoren. Sie benutzen einen Himmelskompass, basierend auf der Sonne und dem mit ihr assoziierten Polarisationsmuster des Himmels, und einen Schrittintegrator, um einen Vektor zu bestimmen, der immer genau zu ihrem Ausgangspunkt zurück zeigt. Dieser Orientierungsmechanismus heißt Wegintegration. Da sich allerdings die Position der Sonne am Himmel und damit auch das Polarisationsmuster des Himmels über den Tag verändern, muss Cataglyphis für diese Veränderung kompensieren. Würde sie das nicht tun, würde ihr Kompass morgens in eine ganz andere Richtung als abends zeigen. Deshalb müssen Ameisen den Sonnenverlauf erlernen bevor sie zu ihren weitläufigen Futtersuchläufen aufbrechen. Cataglyphis führt dazu ein strukturiertes Lernlaufverhalten durch während des Übergangs von Innendiensttier zu Sammlerinnen. Dabei laufen die Ameisen in kleinen Schlaufen um ihren Nesteingang und stoppen ihre Vorwärtsbewegung mehrmalig, um Drehungen durchzuführen. Diese Drehungen sind entweder kleine gelaufene Kreise (Volten) oder Drehungen um die eigene Achse (Pirouetten). Nur Cataglyphis, die Gegenden mit einem reichhaltigen visuellen Panorama bewohnen, führen Pirouetten aus bei denen sie zurück zu ihrem Nesteingang schauen. Dies legt nahe, dass während Pirouetten das Panorama gelernt wird. Während Volten wird wohl der Himmelskompass kalibriert. Die Rückdrehungen während ihrer Lernläufe geben die einmalige Möglichkeit, die Ameise zu „fragen“ wo sie denkt, dass ihr Nest sei und damit ihren Wegintegrator auszulesen. In meiner Doktorarbeit kombinierte ich viele biologischen Methoden unterschiedlicher Disziplinen um zu untersuchen wie die Ameisen ihre Navigationssysteme während der ersten Läufe außerhalb des Nestes erlernen, speichern, kalibrieren und später nutzen. Ich konnte zeigen, dass Himmelsinformationen, die bei Sammlerinnen als wichtigster 4 Kompass dienen, nicht für die Orientierung der Rückblicke während Lernläufen dienen. Stattdessen nutzten naive Cataglyphis nodus das Erdmagnetfeld als Kompass. Obwohl Himmelsinformationen nicht als Kompass während der Lernläufe genutzt werden, spielen sie eine essentielle Rolle für neuroplastische Veränderungen im Gehirn der Ameisen. Nur wenn Ameisen ihre Lernläufe unter einem Polaristaionsmuster, das sich über den Tag hinweg verändert, ausführen, kommt es zu plastischen Veränderungen in neuronalen Integrationszentren. Besonders die Pilzkörper, Zentren für Lernen und Gedächtnis, und der Zentralkomplex, Zentrum für Orientierung und Bewegungssteuerung, nehmen im Volumen nach Lernläufen zu. Lernläufe spielen also eine wichtige Rolle für die Kalibrierung der Navigationsinformationen. Das Erdmagnetfeld könnte das für die Kalibierung notwendige erdgebundene, stabile Referenzsystem bieten, an dem die Himmelsbewegung gelernt wird. Im Ameisengehirn laufen visuelle Informationen von den polarisatiossensitiven Ocelli mit Afferenzen des mechanosensitiven Johnstonschen Organ aus der Antenne zusammen. Die Antenne könnte daher eine wichtiges Organ für die Kalibrierung der Orientierungssysteme sein. Das kleine Gehirn der Ameisen ist bestens an ihre Anforderungen als große Navigatoren angepasst. Weibliche C. nodus (Arbeiterinnen und Königinnen) besitzen große Pilzkörper mit einer Anzahl an Synapsen, die es ihnen erlaubt eine Vielzahl von Umgebungsbildern zu speichern, die sie während ihrer initialen Lernläufe lernen müssen. Das männliche Cataglyphis-Gehirn ist besser auf angeborene Orientierungsstrategien angepasst, die ihm helfen einen Geschlechtspartner zu finden. Die Ergebnisse meiner Doktorarbeit zeigen, dass das an die navigatorischen Herausforderungen angepasste Gehirn von C. nodus signifikante neuronale Veränderungen in Abhängigkeit eines sich veränderten Polaristaionsmusters während der Lernläufe erfährt. Dies zeigt die essentielle Rolle der Lernläufe in der Kalibrierung der Navigationssysteme von Wüstenameisen. KW - Cataglyphis KW - Kompass KW - Navigation KW - Nahrungserwerb KW - Neuroethologie KW - Neuroethology KW - Polyethism KW - Learning Walk KW - Geomagnetic Field KW - Learning & Memory Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290173 ER - TY - THES A1 - Vogel, Cassandra Ezra T1 - The effects of land-use and agroecological practices on biodiversity and ecosystem services in tropical smallholder farms T1 - Die Effekte von Landnutzung und Agroökologie auf Biodiversität und Ökosystemdienstleistungen in der tropischen Subsistenzlandwirtschaft N2 - Biodiversity is in rapid decline worldwide. These declines are more pronounced in areas that are currently biodiversity rich, but economically poor – essentially describing many tropical regions in the Global South where landscapes are dominated by smallholder agriculture. Agriculture is an important driver of biodiversity decline, through habitat destruction and unsustainable practices. Ironically, agriculture itself is dependent on a range of ecosystem services, such as pollination and pest control, provided by biodiversity. Biodiversity on fields and the delivery of ecosystem services to crops is often closely tied to the composition of the surrounding landscape – complex landscapes with a higher proportion of (semi-)natural habitats tend to support a high abundances and biodiversity of pollinators and natural enemies that are beneficial to crop production. However, past landscape scale studies have focused primarily on industrialized agricultural landscapes in the Global North, and context dependent differences between regions and agricultural systems are understudied. Smallholder agriculture supports 2 billion people worldwide and contributes to over half the world’s food supply. Yet smallholders, particularly in sub-Saharan Africa, are underrepresented in research investigating the consequences of landscape change and agricultural practices. Where research in smallholder agriculture is conducted, the focus is often on commodity crops, such as cacao, and less on crops that are directly consumed by smallholder households, though the loss of services to these crops could potentially impact the most vulnerable farmers the hardest. Agroecology – a holistic and nature-based approach to agriculture, provides an alternative to unsustainable input-intensive agriculture. Agroecology has been found to benefit smallholders through improved agronomical and food-security outcomes. Co-benefits of agroecological practices with biodiversity and ecosystem services are assumed, but not often empirically tested. In addition, the local and landscape effects on biodiversity and ecosystem services are more commonly studied in isolation, but their potentially interactive effects are so far little explored. Our study region in northern Malawi exemplifies many challenges experienced by smallholder farmers throughout sub-Saharan Africa and more generally in the Global South. Malawi is located in a global biodiversity hotspot, but biodiversity is threatened by rapid habitat loss and a push for input-intensive agriculture by government and other stakeholders. In contrast, agroecology has been effectively promoted and implemented in the study region. We investigated how land-use differences and the agroecological practices affects biodiversity and ecosystem services of multiple taxa in a maize-bean intercropping system (Chapter 2), and pollination of pumpkin (Chapter 3) and pigeon pea (Chapter 4). Additionally, the effects of local and landscape scale shrub- to farmland habitat conversion was investigated on butterfly communities, as well as the potential for agroecology to mitigate these effects (Chapter 5). N2 - Die globale Biodiversität nimmt rapide ab. Dieser Biodiversitätsverlust ist in Regionen die reich an Biodiversität aber wirtschaftlich arm sind besonders stark ausgeprägt, insbesondere in vielen tropischen Regionen, die durch Subsistenzlandwirtschaft geprägt sind. Durch die Zerstörung natürlicher Lebensräume und nicht nachhaltige Land Nutzung ist Landwirtschaft eine der Hauptursachen dieses Biodiversitätsrückgangs. Dabei ist gerade landwirtschaftliche Produktion abhängig von Biodiversität, da Biodiversität Ökosystemdienstleistungen wie Bestäubung und natürliche Schädlingskontrolle bereitstellt. Biodiversität und Ökosystemdienstleistungen auf Feldern werden stark durch die umliegende Landschaft beeinflusst - komplexe Landschaften mit einen großen Anteil (halb-)natürlicher haben in der Regel höhere Abudanzen und eine größere Biodiversität von Bestäubern und natürlichen Feinden die vorteilhaft für die landwirtschaftliche Produktion sind. Forschung auf Landschaftebene hat bisher jedoch vorrangig auf die industrialisierte Landwirtschaft in z.B. Europa oder die USA fokussiert und kontextabhängige Unterschiede zwischen Regionen und landwirtschaftlichen Systemen sind nicht ausreichend studiert..Weltweit sind etwa 2 Milliarden Menschen von Subsistenzlandwirtschaft abhängig. Jedoch sind diese Kleinbauern, in der Forschung über die Konsequenzen von Landnutzung und landwirtschaftlichen Managements auf Biodiversität und Ökosystemdienstleistungen unterrepräsentiert, insbesondere Kleinbauern aus Subsahara-Afrika. Die wenigen verfügbaren Studien legend den Fokus oft auf wirtschaftlich wichtige Kulturpflanzen, wie etwa Kakao, und selten auf Kulturpflanzen, die für Ernährungssicherheit der Kleinbauern wichtig sind, obwohl der Verlust der Ökosystemdienstleistungen diese möglicherweise am härtesten trifft. Agroökologie ist eine nachhaltigere Form des landwirtschaftlichen Managements als die konventionelle Landwirtschaft, und will den Einsatz von Agrochemie zu reduzieren und eine holistische Landwirtschaft fördern. Agroökologie steigert die Ernährungssicherheit von Kleinbauern, insbesondere wenn die Bauern viele verschiedene agroökologische Verfahren nutzen. Vorteile der Agroökologie für Biodiversität und Ökosystemdienstleistungen werden oft vermutet, wurden bislang jedoch selten empirisch getestet. Zusätzlich wurden Effekte auf Biodiversität und Ökosystemdienstleistungen vorrangig getrennt zwischen der lokalen und der Landschaftsebene betrachtet, was das Erkennen potentieller Interaktionen erschwert. Unsere Studienregion in Nord Malawi spiegelt die viele Herausforderungen der afrikanischen Zusammenfassung Subsistenzlandwirtschaft wider. Malawi liegt in einem Biodiversitäts-Hotspot, jedoch ist diese Biodiversität durch einen schnellen Rückgang natürlicher Lebensräume und durch die Intensivierung der Landwirtschaft stark gefährdet. Dem gegenüber stehen erfolgreicher Ausbau und Umsetzung von Agroökologie in der Region. Das gab mir die Möglichkeit, die Effekte von Landnutzung und Agroökologie auf Biodiversität und Ökosystemdienstleistungen in Malawi zu untersuchen. Dafür habe ich in Mais und Bohnen in Einzel- und Mischkultur 7 taxonomische Gruppen die verschiedene Ökosystemdienstleistungen erbringen erfasst (Kapitel 2) sowie Bestäuber und Bestäubung auf Kürbis (Kapitel 3) und Straucherbsen studiert (Kapitel 4). Zusätzlich habe ich an Schmetterlingen die Effekte von Lebensraumverlust auf der lokalen und auf Landschaftsebene studiert, und untersucht, ob Agroökologie potenziell negative Effekte mindern kann (Kapitel 5). KW - biodiversity KW - ecosystem services KW - landscape ecology KW - smallholder agriculture KW - pollination KW - pest control KW - agroecology KW - tropical ecology Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290661 ER - TY - THES A1 - Anwar, Ammarah T1 - Natural variation of gene regulatory networks in \(Arabidopsis\) \(thaliana\) T1 - Natürliche Variation genregulatorischer Netzwerke in \(Arabidopsis\) \(thaliana\) N2 - Understanding the causal relationship between genotype and phenotype is a major objective in biology. The main interest is in understanding trait architecture and identifying loci contributing to the respective traits. Genome-wide association mapping (GWAS) is one tool to elucidate these relationships and has been successfully used in many different species. However, most studies concentrate on marginal marker effects and ignore epistatic and gene-environment interactions. These interactions are problematic to account for, but are likely to make major contributions to many phenotypes that are not regulated by independent genetic effects, but by more sophisticated gene-regulatory networks. Further complication arises from the fact that these networks vary in different natural accessions. However, understanding the differences of gene regulatory networks and gene-gene interactions is crucial to conceive trait architecture and predict phenotypes. The basic subject of this study – using data from the Arabidopsis 1001 Genomes Project – is the analysis of pre-mature stop codons. These have been incurred in nearly one-third of the ~ 30k genes. A gene-gene interaction network of the co-occurrence of stop codons has been built and the over and under representation of different pairs has been statistically analyzed. To further classify the significant over and under- represented gene-gene interactions in terms of molecular function of the encoded proteins, gene ontology terms (GO-SLIM) have been applied. Furthermore, co- expression analysis specifies gene clusters that co-occur over different genetic and phenotypic backgrounds. To link these patterns to evolutionary constrains, spatial location of the respective alleles have been analyzed as well. The latter shows clear patterns for certain gene pairs that indicate differential selection. N2 - Das Verständnis des kausalen Zusammenhangs zwischen Genotyp und Phänotyp ist ein wichtiges Ziel in der Biologie. Das Hauptinteresse liegt darin, die Merkmalsarchitektur zu verstehen und Loci zu identifizieren, die zu den jeweiligen Merkmalen beitragen. Genome-wide association mapping (GWAS) ist ein Werkzeug, um diese Zusammenhänge aufzuklären und wurde erfolgreich in vielen verschiedenen Arten eingesetzt. Die meisten Studien konzentrieren sich jedoch auf marginale Markereffekte und ignorieren epistatische und Gen-Umwelt-Interaktionen. Diese Wechselwirkungen sind problematisch zu erklären, werden aber wahrscheinlich einen wichtigen Beitrag zu vielen Phänotypen leisten, die nicht durch unabhängige genetische Effekte, sondern durch ausgefeiltere genregulatorische Netzwerke reguliert werden. Eine weitere Komplikation ergibt sich aus der Tatsache, dass sich diese Netzwerke in verschiedenen natürlichen Akzessionen unterscheiden. Das Verständnis der Unterschiede zwischen genregulatorischen Netzwerken und Gen-Gen- Interaktionen ist jedoch entscheidend, um die Merkmalsarchitektur zu konzipieren und Phänotypen vorherzusagen. Das grundlegende Thema dieser Studie – unter Verwendung von Daten aus dem Arabidopsis 1001 Genomes Project – ist die Analyse von vorzeitigen Stop-Codons. Diese sind in fast einem Drittel der ~ 30k-Gene aufgetreten. Ein Gen-Gen- Interaktionsnetzwerk des gleichzeitigen Auftretens von Stop-Codons wurde aufgebaut und die Über- und Unterrepräsentation verschiedener Paare wurde statistisch analysiert. Um die signifikante über- und unterrepräsentierte Gen-Gen-Interaktion in Bezug auf den biologischen Prozess der kodierten Proteine weiter zu klassifizieren, wurden genonkologische Begriffe (GO-SLIM) verwendet. Darüber hinaus spezifiziert die Koexpressionsanalyse Gencluster, die über verschiedene genetische und phänotypische Hintergründe hinweg gleichzeitig auftreten. Um diese Muster mit evolutionären Einschränkungen in Verbindung zu bringen, wurde auch die räumliche Lage der jeweiligen Allele analysiert. Letzteres zeigt klare Muster für bestimmte Genepaare, die auf eine differentielle Selektion hinweisen. KW - Arabidopsis thaliana KW - Co-occurrence matrix KW - co-expression coefficient KW - gene expression networks KW - non-sense mutations KW - phenotype KW - local adaptation KW - variations in genome KW - Ackerschmalwand Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-291549 ER - TY - JOUR A1 - Makbul, Cihan A1 - Kraft, Christian A1 - Grießmann, Matthias A1 - Rasmussen, Tim A1 - Katzenberger, Kilian A1 - Lappe, Melina A1 - Pfarr, Paul A1 - Stoffer, Cato A1 - Stöhr, Mara A1 - Wandinger, Anna-Maria A1 - Böttcher, Bettina T1 - Binding of a pocket factor to Hepatitis B virus capsids changes the rotamer conformation of Phenylalanine 97 JF - Viruses N2 - (1) Background: During maturation of the Hepatitis B virus, a viral polymerase inside the capsid transcribes a pre-genomic RNA into a partly double stranded DNA-genome. This is followed by envelopment with surface proteins inserted into a membrane. Envelopment is hypothetically regulated by a structural signal that reports the maturation state of the genome. NMR data suggest that such a signal can be mimicked by the binding of the detergent Triton X 100 to hydrophobic pockets in the capsid spikes. (2) Methods: We have used electron cryo-microscopy and image processing to elucidate the structural changes that are concomitant with the binding of Triton X 100. (3) Results: Our maps show that Triton X 100 binds with its hydrophobic head group inside the pocket. The hydrophilic tail delineates the outside of the spike and is coordinated via Lys-96. The binding of Triton X 100 changes the rotamer conformation of Phe-97 in helix 4, which enables a π-stacking interaction with Trp-62 in helix 3. Similar changes occur in mutants with low secretion phenotypes (P5T and L60V) and in a mutant with a pre-mature secretion phenotype (F97L). (4) Conclusion: Binding of Triton X 100 is unlikely to mimic structural maturation because mutants with different secretion phenotypes show similar structural responses. KW - Hepatitis B Virus KW - pocket factor KW - Triton X 100 KW - envelopment KW - maturation signal KW - single strand blocking KW - electron cryo-microscopy KW - isothermal titration calorimetry Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-248565 SN - 1999-4915 VL - 13 IS - 11 ER - TY - JOUR A1 - Schneider-Schaulies, Sibylle A1 - Schumacher, Fabian A1 - Wigger, Dominik A1 - Schöl, Marie A1 - Waghmare, Trushnal A1 - Schlegel, Jan A1 - Seibel, Jürgen A1 - Kleuser, Burkhard T1 - Sphingolipids: effectors and Achilles heals in viral infections? JF - Cells N2 - As viruses are obligatory intracellular parasites, any step during their life cycle strictly depends on successful interaction with their particular host cells. In particular, their interaction with cellular membranes is of crucial importance for most steps in the viral replication cycle. Such interactions are initiated by uptake of viral particles and subsequent trafficking to intracellular compartments to access their replication compartments which provide a spatially confined environment concentrating viral and cellular components, and subsequently, employ cellular membranes for assembly and exit of viral progeny. The ability of viruses to actively modulate lipid composition such as sphingolipids (SLs) is essential for successful completion of the viral life cycle. In addition to their structural and biophysical properties of cellular membranes, some sphingolipid (SL) species are bioactive and as such, take part in cellular signaling processes involved in regulating viral replication. It is especially due to the progress made in tools to study accumulation and dynamics of SLs, which visualize their compartmentalization and identify interaction partners at a cellular level, as well as the availability of genetic knockout systems, that the role of particular SL species in the viral replication process can be analyzed and, most importantly, be explored as targets for therapeutic intervention. KW - glycosphingolipids KW - ceramides KW - sphingosine 1-phosphate KW - sphingomyelinase KW - HIV KW - SARS-CoV-2 KW - measles Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-245151 SN - 2073-4409 VL - 10 IS - 9 ER - TY - JOUR A1 - Prieto-Garcia, Cristian A1 - Tomašković, Ines A1 - Shah, Varun Jayeshkumar A1 - Dikic, Ivan A1 - Diefenbacher, Markus T1 - USP28: oncogene or tumor suppressor? a unifying paradigm for squamous cell carcinoma JF - Cells N2 - Squamous cell carcinomas are therapeutically challenging tumor entities. Low response rates to radiotherapy and chemotherapy are commonly observed in squamous patients and, accordingly, the mortality rate is relatively high compared to other tumor entities. Recently, targeting USP28 has been emerged as a potential alternative to improve the therapeutic response and clinical outcomes of squamous patients. USP28 is a catalytically active deubiquitinase that governs a plethora of biological processes, including cellular proliferation, DNA damage repair, apoptosis and oncogenesis. In squamous cell carcinoma, USP28 is strongly expressed and stabilizes the essential squamous transcription factor ΔNp63, together with important oncogenic factors, such as NOTCH1, c-MYC and c-JUN. It is presumed that USP28 is an oncoprotein; however, recent data suggest that the deubiquitinase also has an antineoplastic effect regulating important tumor suppressor proteins, such as p53 and CHK2. In this review, we discuss: (1) The emerging role of USP28 in cancer. (2) The complexity and mutational landscape of squamous tumors. (3) The genetic alterations and cellular pathways that determine the function of USP28 in squamous cancer. (4) The development and current state of novel USP28 inhibitors. KW - USP28 KW - SCC KW - USP25 KW - FBXW7 KW - Tp63 KW - c-MYC KW - ΔNp63 KW - p53 KW - cancer KW - DUB inhibitor KW - squamous Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-248409 SN - 2073-4409 VL - 10 IS - 10 ER - TY - JOUR A1 - Schilcher, Felix A1 - Hilsmann, Lioba A1 - Rauscher, Lisa A1 - Değirmenci, Laura A1 - Krischke, Markus A1 - Krischke, Beate A1 - Ankenbrand, Markus A1 - Rutschmann, Benjamin A1 - Mueller, Martin J. A1 - Steffan-Dewenter, Ingolf A1 - Scheiner, Ricarda T1 - In vitro rearing changes social task performance and physiology in honeybees JF - Insects N2 - In vitro rearing of honeybee larvae is an established method that enables exact control and monitoring of developmental factors and allows controlled application of pesticides or pathogens. However, only a few studies have investigated how the rearing method itself affects the behavior of the resulting adult honeybees. We raised honeybees in vitro according to a standardized protocol: marking the emerging honeybees individually and inserting them into established colonies. Subsequently, we investigated the behavioral performance of nurse bees and foragers and quantified the physiological factors underlying the social organization. Adult honeybees raised in vitro differed from naturally reared honeybees in their probability of performing social tasks. Further, in vitro-reared bees foraged for a shorter duration in their life and performed fewer foraging trips. Nursing behavior appeared to be unaffected by rearing condition. Weight was also unaffected by rearing condition. Interestingly, juvenile hormone titers, which normally increase strongly around the time when a honeybee becomes a forager, were significantly lower in three- and four-week-old in vitro bees. The effects of the rearing environment on individual sucrose responsiveness and lipid levels were rather minor. These data suggest that larval rearing conditions can affect the task performance and physiology of adult bees despite equal weight, pointing to an important role of the colony environment for these factors. Our observations of behavior and metabolic pathways offer important novel insight into how the rearing environment affects adult honeybees. KW - honeybee KW - artificial rearing KW - behavior KW - in vitro KW - juvenile hormone KW - triglycerides KW - PER KW - foraging KW - nursing Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-252305 SN - 2075-4450 VL - 13 IS - 1 ER - TY - JOUR A1 - Leonhardt, Sara D. A1 - Lihoreau, Mathieu A1 - Spaethe, Johannes T1 - Mechanisms of nutritional resource exploitation by insects JF - Insects N2 - Insects have evolved an extraordinary range of nutritional adaptations to exploit other animals, plants, bacteria, fungi and soils as resources in terrestrial and aquatic environments. This special issue provides some new insights into the mechanisms underlying these adaptations. Contributions comprise lab and field studies investigating the chemical, physiological, cognitive and behavioral mechanisms that enable resource exploitation and nutrient intake regulation in insects. The collection of papers highlights the need for more studies on the comparative sensory ecology, underlying nutritional quality assessment, cue perception and decision making to fully understand how insects adjust resource selection and exploitation in response to environmental heterogeneity and variability. KW - nutritional adaptations Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-211161 SN - 2075-4450 VL - 11 IS - 9 ER - TY - JOUR A1 - Fuss, Carmina Teresa A1 - Other, Katharina A1 - Heinze, Britta A1 - Landwehr, Laura-Sophie A1 - Wiegering, Armin A1 - Kalogirou, Charis A1 - Hahner, Stefanie A1 - Fassnacht, Martin T1 - Expression of the chemokine receptor CCR7 in the normal adrenal gland and adrenal tumors and its correlation with clinical outcome in adrenocortical carcinoma JF - Cancers N2 - Background: The chemokine receptor CCR7 is crucial for an intact immune function, but its expression is also associated with clinical outcome in several malignancies. No data exist on the expression of CCR7 in adrenocortical tumors. Methods: CCR7 expression was investigated by qRT-PCR and immunohistochemistry in 4 normal adrenal glands, 59 adrenocortical adenomas, and 181 adrenocortical carcinoma (ACC) samples. Results: CCR7 is highly expressed in the outer adrenocortical zones and medulla. Aldosterone-producing adenomas showed lower CCR7 protein levels (H-score 1.3 ± 1.0) compared to non-functioning (2.4 ± 0.5) and cortisol-producing adenomas (2.3 ± 0.6), whereas protein expression was variable in ACC (1.8 ± 0.8). In ACC, CCR7 protein expression was significantly higher in lymph node metastases (2.5 ± 0.5) compared to primary tumors (1.8±0.8) or distant metastases (2.0 ± 0.4; p < 0.01). mRNA levels of CCR7 were not significantly different between ACCs, normal adrenals, and adrenocortical adenomas. In contrast to other tumor entities, neither CCR7 protein nor mRNA expression significantly impacted patients' survival. Conclusion: We show that CCR7 is expressed on mRNA and protein level across normal adrenals, benign adrenocortical tumors, as well as ACCs. Given that CCR7 did not influence survival in ACC, it is probably not involved in tumor progression, but it could play a role in adrenocortical homeostasis. KW - CCR7 KW - chemokine receptor KW - adrenocortical carcinoma KW - adrenal tumors Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-250112 SN - 2072-6694 VL - 13 IS - 22 ER - TY - RPRT A1 - Groß, Lennart T1 - Advices derived from troubleshooting a sensor-based adaptive optics direct stochastic optical reconstruction microscope T1 - Hinweise aus der Fehleranalyse eines Mikroskops mit direkter stochastischer optischer Rekonstruktion und sensorgestützter adaptiver Optik N2 - One rarely finds practical guidelines for the implementation of complex optical setups. Here, we aim to provide technical details on the decision making of building and revising a custom sensor-based adaptive optics (AO) direct stochastic optical reconstruction microscope (dSTORM) to provide practical assistance in setting up or troubleshooting similar devices. The foundation of this report is an instrument constructed as part of a master's thesis in 2021, which was built for deep tissue imaging. The setup is presented in the following way: (1) An optical and mechanical overview of the system at the beginning of this internship is given. (2) The optical components are described in detail in the order at which the light passes through, highlighting their working principle and implementation in the system. The optical component include (2A) a focus on even sample illumination, (2B) restoring telecentricity when working with commercial microscope bodies, (2C) the AO elements, namely the deformable mirror (DM) and the wavefront sensor, and their integration, and (2D) the separation of wavefront and image capture using fluorescent beads and a dichroic mirror. After addressing the limitations of the existing setup, modification options are derived. The modifications include the implementation of adjustment only light paths to improve system stability and revise the degrees of freedom of the components and changes in lens choices to meet the specifications of the AO components. Last, the capabilities of the modified setup are presented and discussed: (1) First, we enable epifluorescence imaging of bead samples through 180 µm unstained murine hippocampal tissue with wavefront error correction of ~ 90 %. Point spread function, wavefront shape and Zernike decomposition of bead samples are presented. (2) Second, we move from epifluorescent to dSTORM imaging of tubulin stained primary mouse hippocampal cells, which are imaged through up to 180 µm of unstained murine hippocampal tissue. We show that full width at half maximum (FWHM) of prominent features can be reduced in size by nearly a magnitude from uncorrected epiflourescence images to dSTORM images corrected by the adaptive optics. We present dSTORM localization count and FWHM of prominent features as as a function of imaging depth. N2 - Praktische Leitlinien für die Implementierung komplexer optischer Systeme sind selten zu finden. Hier wollen wir technische Details zur Entscheidungsfindung beim Bau und der Überarbeitung eines maßgefertigten Mikroskops mit sensorgestützter adaptiver Optik (AO) und direkter stochastischer optischer Rekonstruktion (dSTORM) bereitstellen, um praktische Hilfestellung bei der Einrichtung oder Fehlerbehebung ähnlicher Geräte zu geben. Grundlage dieses Berichts ist ein Instrument, das im Rahmen einer Masterarbeit im Jahr 2021 für die Abbildung von tiefem Gewebe gebaut wurde. Der Aufbau wird wie folgt dargestellt: (1) Es wird ein optischer und mechanischer Überblick über das System zu Beginn dieses Praktikums gegeben. (2) Die optischen Komponenten werden in der Reihenfolge, in der das Licht sie durchläuft, detailliert beschrieben und ihre Funktionsweise und Umsetzung im System hervorgehoben. Zu den optischen Komponenten gehören (2A) ein Fokus auf gleichmäßige Probenausleuchtung, (2B) die Wiederherstellung der Telezentrizität bei der Arbeit mit handelsüblichen Mikroskopkörpern, (2C) die AO-Elemente, nämlich der deformierbare Spiegel (DM) und der Wellenfrontsensor, und deren Integration, sowie (2D) die Trennung von Wellenfront- und Bilderfassung mittels fluoreszierender Beads und einem dichroitischen Spiegel. Nachdem die Einschränkungen des bestehenden Aufbaus angesprochen wurden, werden Modifikationsmöglichkeiten abgeleitet. Die Modifikationen umfassen die Implementierung von Justage-Lichtpfaden, um die Systemstabilität zu verbessern und die Freiheitsgrade der Komponenten zu überarbeiten, sowie Änderungen bei der Auswahl der Linsen, um die Spezifikationen der AO-Komponenten zu erfüllen. Abschließend werden die Ergebnisse des modifizierten Aufbaus vorgestellt und diskutiert: (1) Zunächst ermöglichen wir die Epifluoreszenz-Abbildung von Bead-Proben durch 180 µm ungefärbtes Hippocampus-Gewebe der Maus mit einer Wellenfront-Fehlerkorrektur von ~ 90 %. Es werden Punktspreizungsfunktion, Wellenfrontform und Zernike-Zerlegung von Bead-Proben vorgestellt. (2) Zweitens gehen wir von der Epifluoreszenz zur dSTORM-Bildgebung von Tubulin-gefärbten primären Hippocampuszellen der Maus über, die durch bis zu 180 µm ungefärbtes Hippocampusgewebe der Maus abgebildet werden. Wir zeigen, dass die Halbwertsbreite (Full Width at Half Maximum, FWHM) auffälliger Merkmale von unkorrigierten Epifloureszenz-Bildern zu dSTORM-Bildern, die durch die adaptive Optik korrigiert wurden, um fast eine Größenordnung reduziert werden kann. Wir präsentieren die Anzahl der dSTORM-Lokalisierungen und die FWHM auffälliger Merkmale als Funktion der Abbildungstiefe. KW - Einzelmolekülmikroskopie KW - Adaptive Optik KW - Adaptive Optics KW - Single Molecule Localization Microscopy KW - dSTORM Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-289951 ER - TY - JOUR A1 - Uphus, Lars A1 - Lüpke, Marvin A1 - Yuan, Ye A1 - Benjamin, Caryl A1 - Englmeier, Jana A1 - Fricke, Ute A1 - Ganuza, Cristina A1 - Schwindl, Michael A1 - Uhler, Johannes A1 - Menzel, Annette T1 - Climate effects on vertical forest phenology of Fagus sylvatica L., sensed by Sentinel-2, time lapse camera, and visual ground observations JF - Remote Sensing N2 - Contemporary climate change leads to earlier spring phenological events in Europe. In forests, in which overstory strongly regulates the microclimate beneath, it is not clear if further change equally shifts the timing of leaf unfolding for the over- and understory of main deciduous forest species, such as Fagus sylvatica L. (European beech). Furthermore, it is not known yet how this vertical phenological (mis)match — the phenological difference between overstory and understory — affects the remotely sensed satellite signal. To investigate this, we disentangled the start of season (SOS) of overstory F.sylvatica foliage from understory F. sylvatica foliage in forests, within nine quadrants of 5.8 × 5.8 km, stratified over a temperature gradient of 2.5 °C in Bavaria, southeast Germany, in the spring seasons of 2019 and 2020 using time lapse cameras and visual ground observations. We explained SOS dates and vertical phenological (mis)match by canopy temperature and compared these to Sentinel-2 derived SOS in response to canopy temperature. We found that overstory SOS advanced with higher mean April canopy temperature (visual ground observations: −2.86 days per °C; cameras: −2.57 days per °C). However, understory SOS was not significantly affected by canopy temperature. This led to an increase of vertical phenological mismatch with increased canopy temperature (visual ground observations: +3.90 days per °C; cameras: +2.52 days per °C). These results matched Sentinel-2-derived SOS responses, as pixels of higher canopy height advanced more by increased canopy temperature than pixels of lower canopy height. The results may indicate that, with further climate change, spring phenology of F. sylvatica overstory will advance more than F. sylvatica understory, leading to increased vertical phenological mismatch in temperate deciduous forests. This may have major ecological effects, but also methodological consequences for the field of remote sensing, as what the signal senses highly depends on the pixel mean canopy height and the vertical (mis)match. KW - overstory KW - understory KW - Sentinel-2 KW - time lapse cameras KW - vertical mismatch KW - phenological escape KW - climate change KW - European beech Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-248419 SN - 2072-4292 VL - 13 IS - 19 ER - TY - THES A1 - Vogel, Sebastian T1 - Determinants of saproxylic biodiversity and conclusions for conservation T1 - Einflussfaktoren auf xylobionte Artenvielfalt und Rückschlüsse für den Naturschutz N2 - Over the past centuries, anthropogenic utilization has fundamentally changed the appearance of European forest ecosystems. Constantly growing and changing demands have led to an enormous decline in ecological key elements and a structural homogenization of most forests. These changes have been accompanied by widespread declines of many forest-dwelling and especially saproxylic, i.e. species depending on deadwood. In order to counteract this development, various conservation strategies have been developed, but they primarily focus on a quantitative deadwood enrichment. However, the diversity of saproxylic species is furthermore driven by a variety of abiotic and biotic determinants as well as interactions between organisms. A detailed understanding of these processes has so far been largely lacking. The aim of the present thesis was therefore to improve the existing ecological knowledge of determinants influencing saproxylic species and species communities in order to provide the basis for evidence-based and adapted conservation measures. In chapter II of this thesis, I first investigated the impact of sun exposure, tree species, and their combination on saproxylic beetles, wood-inhabiting fungi, and spiders. Therefore, logs and branches of six tree species were set up under different sun exposures in an experimental approach. The impact of sun exposure and tree species strongly differed among single saproxylic taxa as well as diameters of deadwood. All investigated taxa were affected by sun exposure, whereby sun exposure resulted in a higher alpha-diversity of taxa recorded in logs and a lower alpha-diversity of saproxylic beetles reared from branches compared to shading by canopy. Saproxylic beetles and wood-inhabiting fungi as obligate saproxylic species were additionally affected by tree species. In logs, the respective impact of both determinants also resulted in divergent community compositions. Finally, a rarefaction/extrapolation method was used to evaluate the effectiveness of different combinations of tree species and sun exposure for the conservation of saproxylic species diversity. Based on this procedure, a combination of broadleaved and coniferous as well as hard- and softwood tree species was identified to support preferably high levels of saproxylic species diversity. The aim of chapter III was to evaluate the individual conservational importance of tree species for the protection of saproxylic beetles. For this, the list of tree species sampled for saproxylic beetles was increased to 42 different tree species. The considered tree species represented large parts of taxonomic and phylogenetic diversity native to Central Europe as well as the most important non-native tree species of silvicultural interest. Freshly cut branches were set up for one year and saproxylic beetles were reared afterwards for two subsequent years. The study revealed that some tree species, in particular Quercus sp., host a particular high diversity of saproxylic beetles, but tree species with a comparatively medium or low overall diversity were likewise important for red-listed saproxylic beetle species. Compared to native tree species, non-native tree species hosted a similar overall species diversity of saproxylic beetles but differed in community composition. In chapter IV, I finally analysed the interactions of host beetle diversity and the diversity of associated parasitoids by using experimentally manipulated communities of saproxylic beetles and parasitoid Hymenoptera as a model system. Classical approaches of species identification for saproxylic beetles were combined with DNA-barcoding for parasitoid Hymenoptera. The diversity of the host communities was inferred from their phylogenetic composition as well as differences in seven functional traits. Abundance, species richness, and Shannon-diversity of parasitoid Hymenoptera increased with increasing host abundance. However, the phylogenetic and functional dissimilarity of host communities showed no influence on the species communities of parasitoid Hymenoptera. The results clearly indicate an abundance-driven system in which the general availability, not necessarily the diversity of potential hosts, is decisive. In summary, the present thesis corroborates the general importance of deadwood heterogeneity for the diversity of saproxylic species by combining different experimental approaches. In order to increase their efficiency, conservation strategies for saproxylic species should generally promote deadwood from different tree species under different conditions of sun exposure on landscape-level in addition to the present enrichment of a certain deadwood amount. The most effective combinations of tree species should consider broadleaved and coniferous as well as hard- and softwood tree species. Furthermore, in addition to dominant tree species, special attention should be given to native, subdominant, silviculturally unimportant, and rare tree species. N2 - Während der letzten Jahrhunderte hat die anthropogene Nutzung das Erscheinungsbild der Waldökosysteme in Europa grundlegend verändert. Stetig wachsende und wandelnde Ansprüche führten zu einem enormen Rückgang ökologischer Schlüsselelemente und einer strukturellen Homogenisierung der meisten Wälder. In der Folge kam es zu Rückgängen vieler waldbewohnender und insbesondere xylobionter, d.h. von Totholz abhängigen, Arten. Um dieser Entwicklung entgegenzuwirken, wurden verschiedene Schutzstrategien entwickelt, welche jedoch vor allem auf eine quantitative Totholzanreicherung abzielen. Die Vielfalt xylobionter Arten wird aber weiterhin durch unterschiedliche abiotische und biotische Einflussfaktoren sowie durch Wechselwirkungen zwischen den Arten beeinflusst. Ein detailliertes Verständnis der genauen Vorgänge fehlt jedoch bislang größtenteils. Ziel der vorliegenden Promotionsarbeit war es deshalb, das diesbezüglich bestehende Wissen zu verbessern, um die Basis für evidenzbasierte und angepasste Naturschutzmaßnahmen zu schaffen. In Kapitel II dieser Arbeit habe ich zunächst den Einfluss der Besonnung und Baumart sowie deren Kombination im Vergleich auf xylobionte Käfer, holzbesiedelnde Pilze und Spinnen untersucht. Für die zugehörige Studie wurden dabei Stämme und Äste von sechs Baumarten bei unterschiedlicher Besonnung in einem experimentellen Ansatz ausgebracht. Der Einfluss der Besonnung und Baumart unterschied sich deutlich zwischen den einzelnen Artengruppen und Totholzdurchmessern. Alle Artengruppen wurden durch die Besonnung beeinflusst, wobei Besonnung im Vergleich zur Beschattung durch Baumkronen bei allen Artengruppen an Stämmen zu einer höheren alpha-Diversität führte und zu einer niedrigeren alpha-Diversität von xylobionten Käfern in Ästen. Xylobionte Käfer und holzbesiedelnde Pilze als obligat xylobionte Arten wurden weiterhin von der Baumart beeinflusst. Für die Artengruppen an Stämmen führten die jeweiligen Auswirkungen von Besonnung und Baumarten ebenfalls zu Unterschieden in der Zusammensetzung der Artgemeinschaften. Abschließend wurden Art-Akkumulationskurven genutzt, um die Effektivität unterschiedlicher Kombinationen aus Baumart und Besonnung für den Erhalt der xylobionten Diversität zu evaluieren. Um eine möglichst hohe Artenvielfalt zu fördern, wurde darauf basierend eine Kombination aus Laub- und Nadelholz einschließlich Weich- und Hartholzarten identifiziert. Ziel meiner Studie in Kapitel III war es den individuellen Beitrag einzelner Baumarten zum Schutz xylobionter Käfer zu identifizieren. Dafür wurde die Zahl untersuchter Baumarten auf 42 erhöht. Die untersuchten Baumarten umfassten dabei große Teile der taxonomischen und phylogenetischen Diversität, die in Mitteleuropa heimisch ist, sowie die wichtigsten, nicht-heimischen Baumarten von waldbaulichem Interesse. Frisch geschnittene Äste wurden für ein Jahr ausgebracht und xylobionte Käfer im Anschluss für zwei aufeinanderfolgende Jahre ausgezüchtet. Im Rahmen der Studie konnte gezeigt werden, dass einige Baumarten, insbesondere Quercus sp., eine besonders hohe Artenvielfalt aufweisen, aber auch Arten mit einer vergleichsweise geringen Gesamtartenzahl für Arten der Roten Liste von Bedeutung sind. Nicht-heimische Baumarten beherbergten insgesamt keine geringere Artenvielfalt von xylobionten Käfern, unterschieden sich aber in der Zusammensetzung ihrer Artgemeinschaften. Die Studie in Kapitel IV analysiert schließlich die Wechselwirkungen zwischen Wirtsdiversität und der Diversität assoziierter Parasitoide unter Verwendung experimentell manipulierter Gemeinschaften von xylobionten Käfern und parasitoiden Hymenopteren als Modellsystem. Klassische Ansätze zur Artidentifizierung für xylobionte Käfer wurden dabei mit DNA-Barcoding für die parasitoiden Hymenopteren kombiniert. Die Vielfalt der Wirtsgemeinschaften wurde aus ihrer phylogenetischen Zusammensetzung sowie Unterschieden in sieben funktionellen Merkmalen abgeleitet. Abundanz, Artenvielfalt und Shannon-Diversität nahmen mit zunehmender Abundanz der Wirte zu. Hingegen zeigten die phylogenetische und funktionelle Ähnlichkeit der Wirtsgemeinschaften insgesamt keinen Einfluss auf die Artgemeinschaften der parasitoiden Hymenopteren. Die Ergebnisse weisen damit klar auf ein abundanz-getriebenes System hin, in dem die generelle Verfügbarkeit und nicht unbedingt die Diversität potentieller Wirte entscheidend ist. Zusammenfassend betont die vorliegende Promotionsarbeit durch die Kombination verschiedener experimenteller Ansätze die generelle Bedeutung der Totholzheterogenität für die Vielfalt xylobionter Arten. Um ihre Effizienz zu steigern, sollten Schutzstrategien für xylobionte Arten neben einer bestimmten Totholzmenge daher generell Totholz verschiedener Baumarten bei unterschiedlicher Besonnung auf Landschaftsebene anreichern. Die effektivsten Baumarten-Kombinationen sollten dabei Laub- und Nadelholz sowie Weich- und Hartholzarten berücksichtigen. Neben den dominierenden Baumarten sollte zudem ein besonderes Augenmerk auf heimischen, subdominanten, wirtschaftlich irrelevanten und seltenen Baumarten liegen. KW - deadwood enrichment KW - saproxylic KW - beetles KW - spiders KW - woodinhabiting-fungi KW - tree species KW - forest conservation Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-289266 ER - TY - THES A1 - Gebert, Friederike T1 - Mammals and dung beetles along elevational and land use gradients on Mount Kilimanjaro: diversity, traits and ecosystem services T1 - Säugetiere und Dungkäfer entlang von Höhen- und Landnutzungsgradienten am Kilimandscharo: Diversität, funktionelle Merkmale und Ökosystemdienstleistungen N2 - Despite belonging to the best described patterns in ecology, the mechanisms driving biodiversity along broad-scale climatic gradients, like the latitudinal gradient in diversity, remain poorly understood. Because of their high biodiversity, restricted spatial ranges, the continuous change in abiotic factors with altitude and their worldwide occurrence, mountains constitute ideal study systems to elucidate the predictors of global biodiversity patterns. However, mountain ecosystems are increasingly threatened by human land use and climate change. Since the consequences of such alterations on mountainous biodiversity and related ecosystem services are hardly known, research along elevational gradients is also of utmost importance from a conservation point of view. In addition to classical biodiversity research focusing on taxonomy, the significance of studying functional traits and their prominence in biodiversity ecosystem functioning (BEF) relationships is increasingly acknowledged. In this dissertation, I explore the patterns and drivers of mammal and dung beetle diversity along elevational and land use gradients on Mt. Kilimanjaro, Tanzania. Furthermore, I investigate the predictors of dung decomposition by dung beetles under different extinction scenarios. Mammals are not only charismatic, they also fulfil important roles in ecosystems. They provide important ecosystem services such as seed dispersal and nutrient cycling by turning over high amounts of biomass. In chapter II, I show that mammal diversity and community biomass both exhibited a unimodal distribution with elevation on Mt.Kilimanjaro and were mainly impacted by primary productivity, a measure of the total food abundance, and the protection status of study plots. Due to their large size and endothermy, mammals, in contrast to most arthopods, are theoretically predicted to be limited by food availability. My results are in concordance with this prediction. The significantly higher diversity and biomass in the Kilimanjaro National Park and in other conservation areas underscore the important role of habitat protection is vital for the conservation of large mammal biodiversity on tropical mountains. Dung beetles are dependent on mammals since they rely upon mammalian dung as a food and nesting resource. Dung beetles are also important ecosystem service providers: they play an important role in nutrient cycling, bioturbation, secondary seed dispersal and parasite suppression. In chapter III, I show that dung beetle diversity declined with elevation while dung beetle abundance followed a hump-shaped pattern along the elevational gradient. In contrast to mammals, dung beetle diversity was primarily predicted by temperature. Despite my attempt to accurately quantifiy mammalian dung resources by calculating mammalian defecation rates, I did not find an influence of dung resource availability on dung beetle richness. Instead, higher temperature translated into higher dung beetle diversity. Apart from being important ecosystem service providers, dung beetles are also model organisms for BEF studies since they rely on a resource which can be quantified easily. In chapter IV, I explore dung decomposition by dung beetles along the elevational gradient by means of an exclosure experiment in the presence of the whole dung beetle community, in the absence of large dung beetles and without any dung beetles. I show that dung decomposition was the highest when the dung could be decomposed by the whole dung beetle community, while dung decomposition was significantly reduced in the sole presence of small dung beetles and the lowest in the absence of dung beetles. Furthermore, I demonstrate that the drivers of dung decomposition were depend on the intactness of the dung beetle community. While body size was the most important driver in the presence of the whole dung beetle community, species richness gained in importance when large dung beetles were excluded. In the most perturbed state of the system with no dung beetles present, temperature was the sole driver of dung decomposition. In conclusion, abiotic drivers become more important predictors of ecosystem services the more the study system is disturbed. In this dissertation, I exemplify that the drivers of diversity along broad-scale climatic gradients on Mt. Kilimanjaro depend on the thermoregulatory strategy of organisms. While mammal diversity was mainly impacted by food/energy resources, dung beetle diversity was mainly limited by temperature. I also demonstrate the importance of protected areas for the preservation of large mammal biodiversity. Furthermore, I show that large dung beetles were disproportionately important for dung decomposition as dung decomposition significantly decreased when large dung beetles were excluded. As regards land use, I did not detect an overall effect on dung beetle and mammal diversity nor on dung beetle-mediated dung decomposition. However, for the most specialised mammal trophic guilds and dung beetle functional groups, negative land use effects were already visible. Even though the current moderate levels of land use on Mt. Kilimanjaro can sustain high levels of biodiversity, the pressure of the human population on Mt. Kilimanjaro is increasing and further land use intensification poses a great threat to biodiversity. In synergy wih land use, climate change is jeopardizing current patterns and levels of biodiversity with the potential to displace communities, which may have unpredictable consequences for ecosystem service provisioning in the future. N2 - Gradienten der Biodiversität, wie der Breitengradient der Artenvielfalt, gehören zu den bestbeschriebenen Mustern in der Ökologie. Dennoch bleiben die Mechanismen, die diese Gradienten steuern, unzureichend untersucht. Bergmassive eignen sich aufgrund ihrer hohen Artenvielfalt, ihrer räumlichen Begrenzung, der gleichmäßigen Veränderung abiotischer Faktoren mit der Höhe und ihres weltweiten Auftretens optimal zur Erforschung der Triebkräfte globaler Biodiversitätsmuster. Jedoch werden Gebirgs-Ökosysteme vermehrt durch menschliche Landnutzung und den Klimawandel bedroht. Da der Wissenstand über die Auswirkungen solcher Veränderungen auf die Biodiversität von Bergmassiven und zugehörigen Ökosystemdienstleistungen gering ist, nimmt die Erforschung von Höhengradienten auch aus der Perspektive des Artenschutzes eine besondere Bedeutung ein. In Ergänzung zur traditionellen, auf Taxonomie beruhenden Biodiversitätsforschung, wird die Wichtigkeit der Untersuchung funktioneller Merkmale und deren Bedeutung für Beziehungen zwischen Biodiversität und Ökosystemfunktionen (BEF) zunehmend anerkannt. In meiner Doktorarbeit untersuche ich entlang von Höhen- und Landnutzungsgradienten am Kilmandscharo (Tansania) die Muster und Triebkräfte der Artenvielfalt von Säugetieren und Dungkäfern als auch die Faktoren, die den Dungabbau durch Dungkäfer unter verschiedenen Aussterbe-Szenarien bestimmen. Säugetiere sind nicht nur charismatisch, sie nehmen auch wichtige Rollen in Ökosystemen ein. So erfüllen Säugetiere wichtige Ökosystemdienstleistungen wie die Verbreitung von Samen und sind maßgeblich am Nährstoffkreislauf durch den Umsatz großer Mengen von Biomasse beteiligt. Im zweiten Kapitel dieser Arbeit stelle ich dar, dass die Diversität und Biomasse der Säugetiergemeinschaft am Kilimandscharo eine unimodale Verteilung mit der Höhe aufweist. Dieses Muster wurde vor allem durch die Nettoprimärproduktion, ein Maß für die Nahrungsverfügbarkeit der Säugetiere, und den Schutzstatus der Untersuchungsgebiete bestimmt. Aufgrund ihrer Größe und Endothermie kann man schlussfolgern, dass für Säugetiere, im Unterschied zu den meisten Arthropoden, Nahrungsverfügbarkeit die Triebkraft der Diversität darstellt. Meine Resultate bestätigen diese Vorhersage. Die signifikant höhere Diversität und Biomasse der Säugetiere im Kilmandscharo Nationalpark und in anderen geschützten Gebieten unterstreicht die Wichtigkeit des Habitatschutzes für den Erhalt der Artenvielfalt großer Säugetiere in tropischen Bergmassiven. Dungkäfer stehen in enger Beziehung zu Säugetieren, da sie Säugetierdung als Nahrungs- und Nistmaterial benötigen. Dungkäfer übernehmen ebenfalls wichtige Ökosystemdienstleistungen: Sie spielen eine bedeutende Rolle im Nährstoffkreislauf und tragen entscheidend zur Bioturbation, der sekundären Verbreitung von Samen und der Unterdrückung von Schädlingen bei. Im dritten Kapitel weise ich nach, dass die Artenvielfalt der Dungkäfer mit der Höhe abnimmt, während die Abundanz der Käfer eine eingipfelige Verteilung zeigt. Im Unterschied zu den Säugetieren wurde die Diversität der Dungkäfer vor allem durch die Temperatur gesteuert. Obwohl ich versuchte, die vorhandenen Dungressourcen der Säugetiere möglichst genau durch die Berechung des Kotabsatzes zu quantifizieren, stellte ich keinen Einfluss von Ressourcenverfügbarkeit auf die Dungkäfer-Diversität fest. Stattdessen führte eine höhere Temperatur zu erhöhter Dungkäfer-Diversität. Abgesehen von ihrer Rolle als wichtige Ökosystemdienstleister stellen Dungkäfer auch Modellorganismen für BEF-Studien dar, da sie eine leicht zu quantifizierende Ressource benötigen. Im vierten Kapitel untersuche ich den Dungabbau von Dungkäfern entlang des Höhengradienten mithilfe eines Ausschlussexperiments: in der Gegenwart der gesamten Dungkäfergemeinschaft, unter dem Ausschluss großer Dungkäfer und in der Abwesenheit aller Dungkäfer. Der Dungabbau war am größten, wenn der Abbau durch die gesamte Dungkäfergemeinschaft erfolgen konnte. Waren nur kleine Dungkäfer anwesend, waren die Dungabbauraten deutlich geringer als in der Gegenwart großer Dungkäfer, während sie im Falle des Ausschlusses aller Dungkäfer minimal wurden. Außerdem konnte ich nachweisen, dass die Triebkräfte des Dungabbaus von dem Zustand der Dungkäfergemeinschaft abhingen. Während die mittlere Körpergröße von Dungkäfern der wichtigste Faktor darstellte, wenn die Lebensgemeinschaft vollständig war, erlangte die Artenvielfalt an Bedeutung, wenn große Dungkäfer abwesend waren. Im gestörtesten Zustand des Systems, wo der Dungabbau ohne Dungkäfer erfolgte, war Temperatur der einzige Faktor, der den Dungabbau bestimmte. Abiotische Faktoren nehmen an Wichtigkeit als Triebkräfte von Ökosystemdienstleistungen zu, je mehr das System gestört ist. Zusammenfassend wird in dieser Dissertation gezeigt, dass die Triebkräfte der Artenvielfalt entlang weitreichender klimatischer Gradienten am Kilimandscharo von der thermoregulatorischen Strategie der Organismen abhängen. Während die Diversität von Säugetieren vor allem durch die Nahrungsverfügbarkeit beeinflusst wurde, wurde die Dungkäfer-Diversität vor allem durch die Temperatur gesteuert. Außerdem sind geschützte Flächen für den Erhalt der Artenvielfalt großer Säugetiere unerlässlich. Weiterhin veranschauliche ich die herausragende Bedeutung großer Dungkäfer für den Dungabbau, da letzterer deutlich abnahm, wenn große Dungkäfer ausgeschlossen wurden. Betreffend der Landnutzung war insgesamt kein Einfluss auf die Dungkäfer- oder Säugetier-Diversität oder den Dungabbau durch Dungkäfer feststellbar. Anders sah es auf Ebene der am meisten spezialisierten trophischen Gilden der Säugetiere und funktionellen Gruppen der Dungkäfer aus: Hier waren bereits negative Auswirkungen sichtbar. Obwohl unter dem derzeitigen gemäßigten Ausmaß der Landnutzung am Kilimandscharo eine hohe Artenvielfalt aufrechterhalten werden kann, steigt der Druck durch das Bevölkerungswachstum, und eine zunehmende Intensivierung der Landwirtschaft stellt eine große Bedrohung für die Biodiversität dar. Im Zusammenspiel mit der Landnutzung gefährdet der Klimawandel das Niveau und die Verteilung der Biodiversität, mit dem Potential, Gemeinschaften von Organismen zu verdrängen, was unvorhersagbare Auswirkungen auf die Bereitstellung von Ökosystemdienstleistungen in der Zukunft haben könnte. KW - Kilimandscharo KW - Biodiversität KW - Säugetiere KW - Zersetzer KW - Scarabaeidae KW - Höhengradient KW - Landnutzungsgradient KW - Arten-Energy-Theory KW - Ökologie KW - Diversität KW - elevational gradient KW - land use KW - species-energy-theory KW - ecology KW - ecosystem service Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-191950 ER - TY - JOUR A1 - Pietro-Garcia, Christian A1 - Hartmann, Oliver A1 - Reissland, Michaela A1 - Fischer, Thomas A1 - Maier, Carina R. A1 - Rosenfeldt, Mathias A1 - Schülein-Völk, Christina A1 - Klann, Kevin A1 - Kalb, Reinhard A1 - Dikic, Ivan A1 - Münch, Christian A1 - Diefenbacher, Markus E. T1 - Inhibition of USP28 overcomes Cisplatin-resistance of squamous tumors by suppression of the Fanconi anemia pathway JF - Cell Death and Differentiation N2 - Squamous cell carcinomas (SCC) frequently have an exceptionally high mutational burden. As consequence, they rapidly develop resistance to platinum-based chemotherapy and overall survival is limited. Novel therapeutic strategies are therefore urgently required. SCC express ∆Np63, which regulates the Fanconi Anemia (FA) DNA-damage response in cancer cells, thereby contributing to chemotherapy-resistance. Here we report that the deubiquitylase USP28 is recruited to sites of DNA damage in cisplatin-treated cells. ATR phosphorylates USP28 and increases its enzymatic activity. This phosphorylation event is required to positively regulate the DNA damage repair in SCC by stabilizing ∆Np63. Knock-down or inhibition of USP28 by a specific inhibitor weakens the ability of SCC to cope with DNA damage during platin-based chemotherapy. Hence, our study presents a novel mechanism by which ∆Np63 expressing SCC can be targeted to overcome chemotherapy resistance. Limited treatment options and low response rates to chemotherapy are particularly common in patients with squamous cancer. The SCC specific transcription factor ∆Np63 enhances the expression of Fanconi Anemia genes, thereby contributing to recombinational DNA repair and Cisplatin resistance. Targeting the USP28-∆Np63 axis in SCC tones down this DNA damage response pathways, thereby sensitizing SCC cells to cisplatin treatment. KW - USP28 KW - Cisplatin KW - squamous tumors Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-273014 SN - 1476-5403 VL - 29 IS - 3 ER - TY - THES A1 - Fricke, Ute T1 - Herbivory, predation and pest control in the context of climate and land use T1 - Herbivorie, Prädation und Schädlingskontrolle im Kontext von Klima und Landnutzung N2 - Chapter 1 – General introduction Anthropogenic land-use and climate change are the major drivers of the global biodiversity loss. Yet, biodiversity is essential for human well-being, as we depend on the availability of potable water, sufficient food and further benefits obtained from nature. Each species makes a somewhat unique contribution to these ecosystem services. Furthermore, species tolerate environmental stressors, such as climate change, differently. Thus, biodiversity is both the "engine" and the "insurance" for human well-being in a changing climate. Here, I investigate the effects of temperature and land use on herbivory (Chapter 2), predation (Chapter 3) and pest control (Chapter 4), and at the same time identify features of habitats (e.g. plant richness, proximity to different habitat types) and landscapes (e.g. landscape diversity, proportion of oilseed rape area) as potential management targets in an adaptation strategy to climate change. Finally, I discuss the similarities and differences between factors influencing herbivory, predation and pest control, while placing the observations in the context of climate change as a multifaceted phenomenon, and highlighting starting points for sustainable insect pest management (Chapter 5). Chapter 2 – Plant richness, land use and temperature differently shape invertebrate leaf-chewing herbivory on major plant functional groups Invertebrate herbivores are temperature-sensitive. Rising temperatures increase their metabolic rates and thus their demand for carbon-rich relative to protein-rich resources, which can lead to changes in the diets of generalist herbivores. Here, we quantified leaf-area loss to chewing invertebrates among three plant functional groups (legumes, non-leguminous forbs and grasses), which largely differ in C:N (carbon:nitrogen) ratio. This reseach was conducted along spatial temperature and land-use gradients in open herbaceous vegetation adjacent to different habitat types (forest, grassland, arable field, settlement). Herbivory largely differed among plant functional groups and was higher on legumes than forbs and grasses, except in open areas in forests. There, herbivory was similar among plant functional groups and on legumes lower than in grasslands. Also the presence of many plant families lowered herbivory on legumes. This suggests that open areas in forests and diverse vegetation provide certain protection against leaf damage to some plant families (e.g. legumes). This could be used as part of a conservation strategy for protected species. Overall, the effects of the dominant habitat type in the vicinity and diverse vegetation outweighed those of temperature and large-scale land use (e.g. grassland proportion, landscape diversity) on herbivory of legumes, forbs and grasses at the present time. Chapter 3 – Landscape diversity and local temperature, but not climate, affect arthropod predation among habitat types Herbivorous insects underlie top-down regulation by arthropod predators. Thereby, predation rates depend on predator community composition and behaviour, which is shaped by temperature, plant richness and land use. How the interaction of these factors affects the regulatory performance of predators was unknown. Therefore, we assessed arthropod predation rates on artificial caterpillars along temperature, and land-use gradients. On plots with low local mean temperature (≤ 7°C) often not a single caterpillar was attacked, which may be due to the temperature-dependent inactivity of arthropods. However, multi-annual mean temperature, plant richness and the dominant habitat type in the vicinity did not substantially affect arthropod predation rates. Highest arthropod predation rates were observed in diverse landscapes (2-km scale) independently of the locally dominanting habitat type. As landscape diversity, but not multi-annual mean temperature, affected arthropod predation rates, the diversification of landscapes may also support top-down regulation of herbivores independent of moderate increases of multi-annual mean temperature in the near future. Chapter 4 – Pest control and yield of winter oilseed rape depend on spatiotemporal crop-cover dynamics and flowering onset: implications for global warming Winter oilseed rape is an important oilseed crop in Europe, yet its seed yield is diminished through pests such as the pollen beetle and stem weevils. Damage from pollen beetles depends on pest abundances, but also on the timing of infestation relative to crop development as the bud stage is particularly vulnerable. The development of both oilseed rape and pollen beetles is temperature-dependent, while temperature effects on pest abundances are yet unknown, which brings opportunities and dangers to oilseed rape cropping under increased temperatures. We obtained measures of winter oilseed rape (flowering time, seed yield) and two of its major pests (pollen beetle, stem weevils) for the first time along both land-use and temperature gradients. Infestation with stem weevils was not influenced by any temperature or land-use aspect considered, and natural pest regulation of pollen beetles in terms of parasitism rates of pollen beetle larvae was low (< 30%), except on three out of 29 plots. Nonetheless, we could identify conditions favouring low pollen beetle abundances per plant and high seed yields. Low pollen beetle densities were favoured by a constant oilseed rape area relative to the preceding year (5-km scale), whereas a strong reduction in area (> 40%) caused high pest densities (concentration effect). This occurred more frequently in warmer regions, due to drought around sowing, which contributed to increased pollen beetle numbers in those regions. Yet, in warmer regions, oilseed rape flowered early, which possibly led to partial escape from pollen beetle infestation in the most vulnerable bud stage. This is also suggested by higher seed yields of early flowering oilseed rape fields, but not per se at higher temperatures. Thus, early flowering (e.g. cultivar selection) and the interannual coordination of oilseed rape area offer opportunities for environmental-friendly pollen beetle management. Chapter 5 – General discussion Anthropogenic land-use and climate change are major threats to biodiversity, and consequently to ecosystem functions, although I could show that ecosystem functions such as herbivory and predation barely responded to temperature along a spatial gradient at present time. Yet, it is important to keep several points in mind: (i) The high rate of climate warming likely reduces the time that species will have to adapt to temperature in the future; (ii) Beyond mean temperatures, many aspects of climate will change; (iii) The compensation of biodiversity loss through functional redundancy in arthropod communities may be depleted at some point; (iv) Measures of ecosystem functions are limited by methodological filters, so that changes may be captured incompletely. Although much uncertainty of the effects of climate and land-use change on ecosystem functions remains, actions to halt biodiversity loss and to interfere with natural processes in an environmentally friendly way, e.g. reduction of herbivory on crops, are urgently needed. With this thesis, I contribute options to the environment-friendly regulation of herbivory, which are at least to some extent climate resilient, and at the same time make a contribution to halt biodiversity loss. Yet, more research and a transformation process is needed to make human action more sustainable. In terms of crop protection, this means that the most common method of treating pests with fast-acting pesticides is not necessarily the most sustainable. To realize sustainable strategies, collective efforts will be needed targeted at crop damage prevention through reducing pest populations and densities in the medium to long term. The sooner we transform human action from environmentally damaging to biodiversity promoting, the higher is our insurance asset that secures human well-being under a changing climate. N2 - Kapitel 1 – Allgemeine Einleitung Intensive Landnutzung und Klimawandel sind die Hauptursachen des globalen Rückgangs der biologischen Vielfalt. Diese ist jedoch wichtig für das menschliche Wohlergehen, da wir von der Verfügbarkeit von trinkbarem Wasser, Nahrungsmitteln und weiteren Leistungen der Natur abhängig sind. Dazu leistet jede Art einen gewissermaßen einzigartigen Beitrag. Darüber hinaus kommen verschiedene Arten unterschiedlich gut mit umweltbedingten Stressfaktoren wie z.B. dem Klimawandel aus. Dadurch ist die biologische Vielfalt sowohl der "Motor" als auch die "Versicherung" für das menschliche Wohlergehen in einem sich verändernden Klima. Hier untersuche ich die Auswirkungen von Temperatur und Landnutzung auf Pflanzenfraß („Herbivorie“, Kapitel 2), Räuber-Beute-Beziehungen („Prädation“, Kapitel 3) und die Regulation von Schädlingen im Raps (Kapitel 4), und betrachte gleichzeitig Merkmale von Lebensräumen (z.B. Reichtum an Pflanzenarten und -familien, Nähe zu unterschiedlichen Lebensraumtypen) und Landschaften (z.B. Vielfältigkeit der Landschaft, Anteil der Rapsanbaufläche) als mögliche Ansatzpunkte für Anpassungsstrategien an den Klimawandel. Abschließend erörtere ich die Gemeinsamkeiten und Unterschiede der Faktoren, die Herbivorie, Prädation und Schädlingskontrolle beeinflussen, ordne diese in den Kontext des Klimawandels als vielseitiges Phänomen ein, und betone mögliche Ansatzpunkte für den nachhaltigen Pflanzenschutz (Kapitel 5). Kapitel 2 – Pflanzenreichtum, Landnutzung und Temperatur beeinflussen die Schädigung verschiedener funktioneller Pflanzengruppen durch blattfressende Wirbellose unterschiedlich Wirbellose Pflanzenfresser (z.B. Grashüpfer) sind temperaturempfindlich. Steigende Temperaturen erhöhen ihre Stoffwechselrate und damit ihren Bedarf an kohlenstoffreichen im Vergleich zu proteinreichen Ressourcen, was zu einer Ernährungsumstellung von pflanzenfressenden Generalisten führen kann. Hier erfassten wir die Blattschädigung durch kauende Wirbellose an drei funktionellen Pflanzengruppen (Leguminosen, andere krautige Pflanzen, Gräser), welche sich in ihrem C:N (Kohlenstoff:Stickstoff) Verhältnis unterscheiden. Die Erfassung führten wir entlang von räumlichen Temperatur- und Landnutzungsgradienten in offener krautiger Vegetation angrenzend an verschiedene Lebensraumtypen (Forst, Grünland, Ackerfläche, Siedlung) durch. Die Blattschädigung verschiedener funktioneller Pflanzengruppen variierte stark und war an Leguminosen höher als an krautigen Pflanzen oder Gräsern, außer auf Offenflächen im Forst. Dort waren die Blattschädigungen der funktionellen Pflanzengruppen ähnlich und die Schädigung an Leguminosen niedriger als im Grünland. Auch das Vorhandensein vieler Pflanzenfamilien verringerte die Blattschädigung an Leguminosen. Dies legt nahe, dass Offenflächen im Forst und vielfältige Vegetation einen gewissen Schutz gegen Blattschädigung an manchen Pflanzenfamilien (z.B. Leguminoses) bieten. Dies könnte im Rahmen des Artenschutzes einen Beitrag zum Erhalt geschützter Arten leisten. Insgesamt überwogen die Auswirkungen des vorherrschenden Lebensraumtyps in der näheren Umgebung und vielfältiger Vegetation zum jetzigen Zeitpunkt den Einfluss von Temperatur und großräumiger Landnutzung (z.B. Grünlandanteil, Vielfältigkeit der Landschaft) auf die Blattschädigung an Leguminosen, krautigen Pflanzen und Gräsern. Kapitel 3 – Vielfältige Landschaften und die lokale Temperatur, jedoch nicht das Klima, beeinflussen die Prädationsleistung von Gliederfüßern in verschiedenen Lebensräumen Pflanzenfressende Insekten unterliegen der Top-Down-Regulation durch räuberisch-lebende Gliederfüßer. Der Beitrag, den diese zur Top-Down-Regulation leisten hängt jedoch unter anderem von der Zusammensetzung ihrer Artengemeinschaft und von ihrem Verhalten ab. Beides wird durch Temperatur, Pflanzenreichtum und Landnutzung beeinflusst. Wie sich das Zusammenspiel dieser Faktoren auf die Regulationsleistung von Räubern auswirkt war bis dato unbekannt. Deshalb untersuchten wir die Attackierung von räuberischen Gliederfüßern auf Beuteattrappen (Knetraupen) entlang von Temperatur- und Landnutzungsgradienten. Auf Studienflächen mit niedriger lokaler Mitteltemperatur (≤ 7°C) wurde oft keine einzige Knetraupe attackiert, was sich möglicherweise auf die temperatureabhängige Inaktivität von Gliederfüßern zurückführen lässt. Die Durchschnittstemperatur im mehrjährigen Mittel, das Pflanzenreichtum und der vorherrschende Lebensraumtyp hingegen zeigten keinen substanziellen Einfluss auf die Attackierung der Knetraupen durch räuberische Gliederfüßer. Am höchsten waren die Attackierungsraten in vielfältigen Landschaften (2-km Skala) unabhängig vom lokal vorherrschenden Lebensraumtyp. Da vielfältige Landschaften, nicht jedoch die Durchschnittstemperatur im mehrjährigen Mittel, die Attackierungsraten beeinflussten, können Maßnahmen zur Diversifizierung von Landschaften möglicherweise unabhängig von moderat steigenden mehrjährigen Mitteltemperaturen in naher Zukunft die Top-Down-Regulation von Pflanzenfressern begünstigen. Kapitel 4 – Schädlingskontrolle und Ertrag im Winterraps sind von der räumlich-zeitlichen Dynamik der Rapsanbaufläche sowie vom Blühzeitpunkt abhängig: Implikationen für die globale Erwärmung Winterraps ist eine wichtige Ölpflanze in Europa, doch die Erträge werden insbesondere durch Schädlinge wie Rapsglanzkäfer und Stängelrüssler gemindert. Die Schädigung durch den Rapsglanzkäfer ist abhängig vom Schädlingsaufkommen, aber auch vom Befallszeitpunkt in Bezug zum Entwicklungsstadium des Winterraps, wobei das Knospenstadium besonders empfindlich ist. Die Entwicklung von Raps und Rapsglanzkäfer ist temperaturabhängig, wohingegen Temperatureffekte auf Schädlingsabundanzen unbekannt sind, sodass höhere Temperaturen sowohl Chancen als auch Gefahren mitsichbringen. Wir führten Messungen an Winterrapspflanzen (Blühzeitpunkt, Samenertrag) und zwei seiner Hauptschädlinge (Rapsglanzkäfer, Stängelrüssler) erstmalig entlang von Landnutzungs- und Temperaturgradienten durch. Der Befall mit Stängelrüsslern wurde nicht von den untersuchten Temperatur- und Landschaftsparametern beeinflusst und die natürliche Schädlingskontrolle von Rapsglanzkäferlarven in Bezug auf Parasitierungsraten war mit Ausnahme von drei von 29 Standorten gering (< 30%). Nichtsdestotrotz konnten wir Bedingungen identifizieren, die niedrige Befallszahlen mit Rapsglanzkäfern und hohe Samenerträge begünstigen. Geringe Rapsglanzkäferdichten wurden durch eine konstante Rapsanbaufläche relativ zum Vorjahr (5-km Skala) begünstigt, wohingegen eine starke Reduktion in der Anbaufläche (> 40%) zu hohem Befall führte (Konzentrationseffekt). Aufgrund von Trockenheit in warmen Regionen rund um den Saattermin trat dies häufiger in warmen Regionen auf, was zu einem stärkeren Befall mit Rapsglanzkäfern in diesen Regionen beitrug. In wärmeren Regionen kam der Raps jedoch auch früher zur Blüte, was es ihm vermutlich ermöglichte, dem Rapsglanzkäferbefall im empfindlichsten Knospenstadium einigermaßen zu entgehen. Dies zeigte sich auch daran, dass eine frühe Blüte, nicht jedoch höhere Temperaturen, zu höheren Erträgen führte. Eine frühe Blüte (z.B. durch Sortenwahl) und die jahresübergreifende Koordination der Rapsanbaufläche bieten Möglichkeiten für die umweltfreundliche Schädlingskontrolle von Rapsglanzkäfern. Kapitel 5 – Allgemeine Diskussion Der durch den Menschen verursachte Landnutzungs- und Klimawandel stellt eine große Gefahr für die biologische Vielfalt und damit auch für die Funktionalität von Ökosystemen dar, obwohl ich zeigen konnte, dass natürliche Abläufe wie Pflanzenfraß und Räuber-Beute-Beziehungen kaum auf Temperaturunterschiede entlang eines räumlichen Gradients reagierten. Dennoch ist es wichtig mehrere Punkte zu beachten: (i) Die Rate, mit der sich die Erde erwärmt, wird Arten in Zukunft weniger Zeit lassen sich an die herschende Temperatur anzupassen; (ii) Neben der Erderwärmung werden sich viele weitere Aspekte des Klimas verändern; (iii) Die Aufrechterhaltung von natürlichen Abläufen unter Artenverlust durch funktionale Redundanz könnte irgendwann erschöpft sein; (iv) Die Messung natürlicher Abläufe ist durch methodische Filter limitiert, sodass Änderungen unter Umständen unvollständig abgebildet werden. Obwohl Ungewissheiten bezüglich der Auswirkungen des Landnutzungs- und Klimawandels auf natürliche Abläufe bestehen bleiben, werden dringlich Maßnahmen benötigt, die zum Erhalt der biologischen Vielfalt beitragen und die es ermöglichen umweltfreundlich in natürliche Abläufe einzugreifen wie z.B. die Abmilderung von Pflanzenfraß an Kulturpflanzen. Mit dieser Doktorarbeit, zeige ich Ansatzpunkte für Maßnahmen zur umweltfreundlichen Regulation von Pflanzenfraß auf, die zumindest zu einem gewissen Grad Klima-resilient sind und zugleich einen Beitrag zur Eindämmung des Artensterbens leisten. Um das menschliche Handeln nachhaltiger zu machen, bedarf es neben weiterer Forschung eines Transformationsprozesses. Für den Pflanzenschutz bedeutet dies, dass die gängigste Methode der Schädlingsbekämpfung mit schnell wirkenden Pestiziden nicht unbedingt die nachhaltigste ist. Um nachhaltige Strategien zu realisieren werden gemeinschaftliche Bemühungen nötig sein, die sich der Vorbeugung von Schäden an Kulturpflanzen durch die mittel- bis langfristigen Reduktion von Schädlingspopulationen und -dichten widmen. Je früher wir das menschliche Handeln von umweltschädigend zu biodiversitätsfördernd umwandeln, desto größer ist unser “Versicherungswert”, der das menschliche Wohlergehen in einem sich änderndem Klima gewährleistet. KW - Ökologie KW - Schädlingsbekämpfung KW - Landnutzung KW - Klimaänderung KW - Prädation KW - Pest management KW - Predation KW - Herbivory KW - land use KW - climate Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-287328 ER - TY - JOUR A1 - Khayenko, Vladimir A1 - Maric, Hans Michael T1 - Innovative affinitätsbasierte Markierungen für die High-End-Mikroskopie JF - BIOspektrum N2 - Advanced tissue imaging techniques and super resolution microscopy are opening new avenues of investigations in life sciences. These mainly instrumentation-driven innovations require the development of appropriate molecular labelling tools. Here, we discuss currently used and upcoming manipulation-free protein labelling strategies and their potential for the precise and interference-free visualization of endogenous proteins. KW - Fluoreszenzsonden KW - High-End-Mikroskopie KW - Proteinmarkierungen Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-287377 VL - 27 ER - TY - JOUR A1 - Beer, Katharina A1 - Härtel, Stephan A1 - Helfrich-Förster, Charlotte T1 - The pigment-dispersing factor neuronal network systematically grows in developing honey bees JF - The Journal of Comparative Neurology N2 - The neuropeptide pigment-dispersing factor (PDF) plays a prominent role in the circadian clock of many insects including honey bees. In the honey bee brain, PDF is expressed in about 15 clock neurons per hemisphere that lie between the central brain and the optic lobes. As in other insects, the bee PDF neurons form wide arborizations in the brain, but certain differences are evident. For example, they arborize only sparsely in the accessory medulla (AME), which serves as important communication center of the circadian clock in cockroaches and flies. Furthermore, all bee PDF neurons cluster together, which makes it impossible to distinguish individual projections. Here, we investigated the developing bee PDF network and found that the first three PDF neurons arise in the third larval instar and form a dense network of varicose fibers at the base of the developing medulla that strongly resembles the AME of hemimetabolous insects. In addition, they send faint fibers toward the lateral superior protocerebrum. In last larval instar, PDF cells with larger somata appear and send fibers toward the distal medulla and the medial protocerebrum. In the dorsal part of the medulla serpentine layer, a small PDF knot evolves from which PDF fibers extend ventrally. This knot disappears during metamorphosis and the varicose arborizations in the putative AME become fainter. Instead, a new strongly stained PDF fiber hub appears in front of the lobula. Simultaneously, the number of PDF neurons increases and the PDF neuronal network in the brain gets continuously more complex. KW - apis mellifera KW - circadian clock KW - immunohistochemistry KW - larval and pupal development KW - neuroanatomy Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-257300 VL - 530 IS - 9 ER - TY - JOUR A1 - Mamontova, Victoria A1 - Trifault, Barbara A1 - Boten, Lea A1 - Burger, Kaspar T1 - Commuting to work: Nucleolar long non-coding RNA control ribosome biogenesis from near and far JF - Non-Coding RNA N2 - Gene expression is an essential process for cellular growth, proliferation, and differentiation. The transcription of protein-coding genes and non-coding loci depends on RNA polymerases. Interestingly, numerous loci encode long non-coding (lnc)RNA transcripts that are transcribed by RNA polymerase II (RNAPII) and fine-tune the RNA metabolism. The nucleolus is a prime example of how different lncRNA species concomitantly regulate gene expression by facilitating the production and processing of ribosomal (r)RNA for ribosome biogenesis. Here, we summarise the current findings on how RNAPII influences nucleolar structure and function. We describe how RNAPII-dependent lncRNA can both promote nucleolar integrity and inhibit ribosomal (r)RNA synthesis by modulating the availability of rRNA synthesis factors in trans. Surprisingly, some lncRNA transcripts can directly originate from nucleolar loci and function in cis. The nucleolar intergenic spacer (IGS), for example, encodes nucleolar transcripts that counteract spurious rRNA synthesis in unperturbed cells. In response to DNA damage, RNAPII-dependent lncRNA originates directly at broken ribosomal (r)DNA loci and is processed into small ncRNA, possibly to modulate DNA repair. Thus, lncRNA-mediated regulation of nucleolar biology occurs by several modes of action and is more direct than anticipated, pointing to an intimate crosstalk of RNA metabolic events. KW - long non-coding RNA KW - RNA polymerase II KW - nucleolus KW - ribosome biogenesis Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-242756 SN - 2311-553X VL - 7 IS - 3 ER - TY - JOUR A1 - Grassinger, Julia Maria A1 - Floren, Andreas A1 - Müller, Tobias A1 - Cerezo-Echevarria, Argiñe A1 - Beitzinger, Christoph A1 - Conrad, David A1 - Törner, Katrin A1 - Staudacher, Marlies A1 - Aupperle-Lellbach, Heike T1 - Digital lesions in dogs: a statistical breed analysis of 2912 cases JF - Veterinary Sciences N2 - Breed predispositions to canine digital neoplasms are well known. However, there is currently no statistical analysis identifying the least affected breeds. To this end, 2912 canine amputated digits submitted from 2014–2019 to the Laboklin GmbH & Co. KG for routine diagnostics were statistically analyzed. The study population consisted of 155 different breeds (most common: 634 Mongrels, 411 Schnauzers, 197 Labrador Retrievers, 93 Golden Retrievers). Non-neoplastic processes were present in 1246 (43%), tumor-like lesions in 138 (5%), and neoplasms in 1528 cases (52%). Benign tumors (n = 335) were characterized by 217 subungual keratoacanthomas, 36 histiocytomas, 35 plasmacytomas, 16 papillomas, 12 melanocytomas, 9 sebaceous gland tumors, 6 lipomas, and 4 bone tumors. Malignant neoplasms (n = 1193) included 758 squamous cell carcinomas (SCC), 196 malignant melanomas (MM), 76 soft tissue sarcomas, 52 mast cell tumors, 37 non-specified sarcomas, 29 anaplastic neoplasms, 24 carcinomas, 20 bone tumors, and 1 histiocytic sarcoma. Predisposed breeds for SCC included the Schnauzer (log OR = 2.61), Briard (log OR = 1.78), Rottweiler (log OR = 1.54), Poodle (log OR = 1.40), and Dachshund (log OR = 1.30). Jack Russell Terriers (log OR = −2.95) were significantly less affected by SCC than Mongrels. Acral MM were significantly more frequent in Rottweilers (log OR = 1.88) and Labrador Retrievers (log OR = 1.09). In contrast, Dachshunds (log OR = −2.17), Jack Russell Terriers (log OR = −1.88), and Rhodesian Ridgebacks (log OR = −1.88) were rarely affected. This contrasted with the well-known predisposition of Dachshunds and Rhodesian Ridgebacks to oral and cutaneous melanocytic neoplasms. Further studies are needed to explain the underlying reasons for breed predisposition or “resistance” to the development of specific acral tumors and/or other sites. KW - canine KW - subungual KW - toe KW - tumor KW - inflammation KW - breed predisposition Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-242690 SN - 2306-7381 VL - 8 IS - 7 ER - TY - THES A1 - Sisario, Dmitri Jonas T1 - Bildbasierte Analyse von Säugetierzellen unter dem Einfluss von osmotischem Stress, überkritischen elektrischen Feldern und ionisierender Strahlung T1 - Image-based analysis of mammalian cells subjected to osmotic stress, supracritical electric fields and ionizing radiation N2 - Im ersten Teil dieser Doktorarbeit wurde die kurz nach Elektroporation eintretende hämolytische Zellbewegung von humanen Erythrozyten erstmals quantitativ untersucht, um den zu Grunde liegenden Mechanismus aufzuklären. Die Ergebnisse legen nahe, dass die Bewegung aus dem Ausstoß von unter Druck stehendem Zytosol resultierte. Durch weitere Experimente wurde die Beteiligung des Nicht-Muskel-Myosins NMIIA am Aufbau des zytosolischen Überdrucks nachgewiesen. Ausgehend von diesen Ergebnissen wurde ein molekular-mechanischer bisher unbekannter NMII-basierter Mechanismus der rapiden Ghostbildung beschrieben. Diese Erkenntnis könnte biomedizinische Relevanz besitzen, da der Abbau von Erythrozyten in der Milz die Transformation zu Hb-armen Ghosts voraussetzt. Der zweite Teil dieser Arbeit befasste sich mit dem Hirntumor Glioblastoma multiforme (GBM), dessen Rezidiv hauptsächlich auf Strahlenresistenz und Zellinvasion zurückzuführen ist. Deshalb wurde mittels hochauflösender Fluoreszenzmikroskopie (dSTORM) die Nanostruktur des DSB-Markers Histon γH2AX und des DNA-Reparaturfaktors DNA-PKcs in bestrahlten GBM-Zellen analysiert. Anhand von dSTORM-Rekonstruktionen wurde erstmals gezeigt, dass die beiden Proteine kaum Kolokalisation im Nanometerbereich aufweisen. Zunehmend wird die anomale Expression von Membrantransportern aus der SLC-Familie mit der Migration von Krebszellen in Verbindung gebracht. Der finale Abschnitt befasste sich daher mit der subzellulären Lokalisierung der Transporterproteine SLC5A1 und SLC5A3 in GBM-Zellen, um ihre Beteiligung an der Zellmigration nachzuweisen. Dabei wurde erstmals gezeigt, dass der Leitsaum der untersuchten GBM-Zellen deutliches SLC5A1- und SLC5A3-Signal aufwies. Basierend auf diesen Befunden wurden den Transportern unterschiedliche Aufgaben bei der zellmigrativen lokalen Volumenregulation zugeschrieben. Somit ergänzen SLC5A1 und SLC5A3 das migrationsassoziierte Krebszell-Transportom. N2 - The unique properties of the highly specialized, enucleated mammalian erythrocytes allows them to withstand enormous mechanical stress. However, because their membrane area is limited, they display high osmotic fragility towards hypotonic shocks. In contrast, the much more complex tumor cells are not only capable of tolerating a wide range of osmotic stresses, but they frequently display considerable chemo- and even radioresistance. Because of these intriguing properties, both cell types have been the subject of intensive biophysical and biomedical research for decades. However, despite the long history of erythrocyte research, the apparently self-propelled motion of red blood cells that occurs in the course of hemolysis is a largely unknown phenomenon. In the first part of this doctoral thesis, the electroporation-triggered hemolytic cell motion of human erythrocytes was examined quantitatively for the first time in order to elucidate the underlying mechanism of this phenomenon. Using fluorescence and videomicroscopic analyses, the two main phases of electrohemolysis were identified. The first, prehemolytic phase was characterized by an efflux of low-molecular cytosolic solutes via electropores, accompanied by transient, osmotic cell shrinkage. Once the influx of extracellular solutes predominated, swelling to the critical cell volume started, apparent from the loss of discoid morphology. The second, hemolytic phase was characterized by a sudden cell acceleration to a peak velocity of ~35 µm/s, ~1 second of rapid and linear movement, gradual volume reduction and transformation to a hemoglobin-depleted, transparent ghost. The results of this work suggest that this rapid linear motion results from a cell contraction-driven expulsion of the pressurized hemoglobin (Hb)-rich cytosol through a single hemolytic hole. ... KW - Erythrozyt KW - Glioblastom KW - Zellmigration KW - DNS-Doppelstrangbruch KW - Hb-Jet Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-246772 ER -