TY - JOUR A1 - Ahmed, Zeeshan A1 - Zeeshan, Saman A1 - Huber, Claudia A1 - Hensel, Michael A1 - Schomburg, Dietmar A1 - Münch, Richard A1 - Eylert, Eva A1 - Eisenreich, Wolfgang A1 - Dandekar, Thomas T1 - ‘Isotopo’ a database application for facile analysis and management of mass isotopomer data JF - Database N2 - The composition of stable-isotope labelled isotopologues/isotopomers in metabolic products can be measured by mass spectrometry and supports the analysis of pathways and fluxes. As a prerequisite, the original mass spectra have to be processed, managed and stored to rapidly calculate, analyse and compare isotopomer enrichments to study, for instance, bacterial metabolism in infection. For such applications, we provide here the database application ‘Isotopo’. This software package includes (i) a database to store and process isotopomer data, (ii) a parser to upload and translate different data formats for such data and (iii) an improved application to process and convert signal intensities from mass spectra of \(^{13}C\)-labelled metabolites such as tertbutyldimethylsilyl-derivatives of amino acids. Relative mass intensities and isotopomer distributions are calculated applying a partial least square method with iterative refinement for high precision data. The data output includes formats such as graphs for overall enrichments in amino acids. The package is user-friendly for easy and robust data management of multiple experiments. KW - stable-isotope Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-120102 VL - 2014 IS - bau077 ER - TY - JOUR A1 - Keller, Daniela Barbara A1 - Schultz, Jörg T1 - Word Formation Is Aware of Morpheme Family Size N2 - Words are built from smaller meaning bearing parts, called morphemes. As one word can contain multiple morphemes, one morpheme can be present in different words. The number of distinct words a morpheme can be found in is its family size. Here we used Birth-Death-Innovation Models (BDIMs) to analyze the distribution of morpheme family sizes in English and German vocabulary over the last 200 years. Rather than just fitting to a probability distribution, these mechanistic models allow for the direct interpretation of identified parameters. Despite the complexity of language change, we indeed found that a specific variant of this pure stochastic model, the second order linear balanced BDIM, significantly fitted the observed distributions. In this model, birth and death rates are increased for smaller morpheme families. This finding indicates an influence of morpheme family sizes on vocabulary changes. This could be an effect of word formation, perception or both. On a more general level, we give an example on how mechanistic models can enable the identification of statistical trends in language change usually hidden by cultural influences. KW - linguistic morphology KW - language KW - death rates KW - psycholinguistics KW - chi square tests KW - vocabulary KW - birth rates KW - culture Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112848 ER - TY - THES A1 - Römer, Daniela T1 - Where and how to build? Influence of social and environmental cues on nest building behavior in leaf-cutting ants T1 - Wo und wie Bauen? Der Einfluss von sozialen und Umwelt-Hinweisen auf das Nestbauverhalten von Blattschneiderameisen N2 - This thesis explores the influence of social and environmental cues on the nest building behavior of leaf-cutting ants. Especially, the investigations are aimed at evaluating the mechanisms of nest building and how the nest environment can spatially guide building responses that lead to an adaptive nest architecture. The emergence of nest chambers in the nest of the leaf-cutting ant Acromyrmex lundi were evaluated. Rather than excavating nest chambers in advance, at places where workers encounter suitable environmental conditions for brood and fungus rearing, these items have to be present at a site. When presented in the laboratory with a choice between two otherwise identical digging sites, offering suitable environmental conditions, but one containing brood, the workers displayed a higher excavation activity at the site where they encountered the putative content of a chamber. The shape of the excavated cavity was also more round and chamber-like. It is concluded that leaf-cutting ants respond to social cues during nest building. Excavation is a costly process and colonies have to spend a part of their energy stores on nest building, so that regulatory responses for the control of nest excavation are expected to occur. Worker density at the beginning of the digging process influenced digging activity while the presence of in-nest stores did not. Stored brood and fungus did however influence the architecture of the excavated nest, leading to the excavation of larger chambers and smaller tunnels. While self-organized mechanisms appear to be involved in the nest building process, the social cues of the ants’ environment during building clearly influence the nest architecture and lead to an adjustment of the nest size to the current space needs of the colony. Workers secondarily regulated nest size by the opportunistic refilling of unused space with excavated soil pellets. As the ants should provide suitable conditions for brood and fungus rearing, they should show a behavioral response to CO2 concentrations, as the gas is known to hinder fungus respiration. Workers of A. lundi did indeed avoid high CO2-levels for fungus rearing but actually preferred CO2-values in the range encountered close to the soil surface, where this species excavates their nests. However, different CO2-levels did not affect their excavation behavior. While fungus chambers make up part of a leaf-cutting ant nest, most leaf-cutting ants of the genus Atta also spent part of the colony’s energy on excavating large, voluminous chambers for waste disposal, rather than scattering the material aboveground. It is expected that leaf-cutting ants also show environmental preferences for waste management. In experiments Atta laevigata workers preferred deposition in a warm and dry environment and showed no preference for specific CO2-levels. The continued accumulation of waste particles in a waste chamber seems to be based on the use of volatiles. These originate from the waste itself, and seem to be used as an orientation cue by workers relocating the material. The ensuing large accumulation of waste at one site should result in the emergence of more voluminous chambers for waste disposal. N2 - Diese Arbeit erforscht den Einfluss von sozialen und Umwelt-Hinweisen auf das Nestbauverhalten von Blattschneider-Ameisen. Die Untersuchungen sind besonders darauf gerichtet, die Mechanismen des Nestbaus zu erforschen, und wie die Umgebung des Nestes Bau-Antworten räumlich beeinflussen kann, wodurch eine adaptierte Nestarchitektur entsteht. Die Entstehung von Nestkammern in Nestern der Blattschneiderameise Acromyrmex lundi wurde untersucht. Anstatt Nestkammern im Voraus zu graben, an Orten an denen Arbeiterinnen geeignete Umweltbedingungen für Brut- und Pilzwachstum vorfinden, müssen diese Elemente an dieser Stelle anwesend sein. Wenn Arbeiter im Labor die Wahl hatten, an identischen Grabeorten zu graben, aber ein Grabeort ebenfalls Brut anbot, kam es zu einer höheren Grabeaktivität an dem Ort, an dem der voraussichtliche Inhalt einer Kammer, Brut und Pilz, anwesend war. Die Form des gegrabenen Hohlraumes war außerdem runder und entsprach mehr der einer Kammer. Es wurde geschlussfolgert, dass Blattschneiderameisen auf die Anwesenheit dieser sozialen Hinweise während des Nestbaus reagieren. Graben ist ein kostspieliger Prozess und Kolonien müssen einen Teil ihrer Energiereserven für den Nestbau aufwenden. Daher werden regulatorische Prozesse für die Kontrolle des Nestgrabens erwartet. Die Dichte der Arbeiter zu Beginn des Grabeprozesses beeinflusste die Grabeaktivität, während die Anwesenheit von Brut und Pilz dies nicht taten. Anwesende Brut und Pilz beeinflussten hingegen die Architektur des gegrabenen Nestes und führten zum Graben von größeren Kammern und kleineren Tunneln. Während Mechanismen der Selbst-Organisation am Nestbau-Prozess beteiligt sind, beeinflussen die sozialen Hinweise während des Nest-Baus anscheinend die Nest-Architektur und führen zu einer Anpassung der Nestgröße an die momentanen Ansprüche der Kolonie. Arbeiterinnen regulierten sekundär die Nestgröße, indem sie opportunistisch ungenutzten Platz mit ausgegrabenen Pellets auffüllen. Da die Ameisen Brut und Pilz unter geeigneten Umweltbedingungen entwickeln sollten, sollten sie Verhaltensantworten auf verschiedene CO2 Konzentrationen zeigen, da es bekannt ist, dass das Gas die Atmung des symbiontischen Pilzes negativ beeinflussen kann. Arbeiter vermieden in der Tat 4% CO2, zogen aber Konzentrationen von 1% CO2 vor, wie sie auch in den oberflächennahen Erdschichten vorzufinden sind, in denen die untersuchte Art, Acromyrmex lundi, ihre Nester gräbt. Allerdings beeinflussten höhere CO2 Konzentrationen nicht die Grabeaktivität der Arbeiterinnen. Während die Pilzkammern einen Teil eines Blattschneider-Nestes bilden, so verwenden die meisten Arten der Gattung Atta auch einen Teil der Energie der Kolonie auf das Graben von großen, voluminösen Abfallkammern, anstatt das Material an der Erdoberfläche zu verstreuen. Es wird daher erwartet, dass Blattschneiderameisen während der Abfallentsorgung bestimmte Präferenzen für ihre Umwelt zeigen. In Experimenten präferierten Arbeiterinnen von Atta laevigata eine warme und trockene Umgebung, zeigten jedoch keinerlei Präferenz für die CO2 Konzentration ihrer Umgebung. Die kontinuierliche Anhäufung von Abfallpartikeln in einer Abfallkammer scheint auf der Wahrnehmung von Volatilen zu basieren. Diese scheinen vom Abfall selbst auszugehen und zur Orientierung der abfalltragenden Arbeiterinnen zu dienen. Die darauf erfolgende Anhäufung von Abfall an einem Ort sollte zur Entstehung von großvolumigen Kammern zur Abfallentsorgung führen. KW - Nestbau KW - nest building KW - self-organization KW - leaf-cutting ant KW - environmental cues KW - symbiotic fungus KW - Blattschneiderameisen Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-109409 ER - TY - JOUR A1 - Akhoon, Bashir A. A1 - Singh, Krishna P. A1 - Varshney, Megha A1 - Gupta, Shishir K. A1 - Shukla, Yogeshwar A1 - Gupta, Shailendra K. T1 - Understanding the Mechanism of Atovaquone Drug Resistance in Plasmodium falciparum Cytochrome b Mutation Y268S Using Computational Methods JF - PLOS ONE N2 - The rapid appearance of resistant malarial parasites after introduction of atovaquone (ATQ) drug has prompted the search for new drugs as even single point mutations in the active site of Cytochrome b protein can rapidly render ATQ ineffective. The presence of Y268 mutations in the Cytochrome b (Cyt b) protein is previously suggested to be responsible for the ATQ resistance in Plasmodium falciparum (P. falciparum). In this study, we examined the resistance mechanism against ATQ in P. falciparum through computational methods. Here, we reported a reliable protein model of Cyt bc1 complex containing Cyt b and the Iron-Sulphur Protein (ISP) of P. falciparum using composite modeling method by combining threading, ab initio modeling and atomic-level structure refinement approaches. The molecular dynamics simulations suggest that Y268S mutation causes ATQ resistance by reducing hydrophobic interactions between Cyt bc1 protein complex and ATQ. Moreover, the important histidine contact of ATQ with the ISP chain is also lost due to Y268S mutation. We noticed the induced mutation alters the arrangement of active site residues in a fashion that enforces ATQ to find its new stable binding site far away from the wild-type binding pocket. The MM-PBSA calculations also shows that the binding affinity of ATQ with Cyt bc1 complex is enough to hold it at this new site that ultimately leads to the ATQ resistance. KW - molecular-dynamics simulations KW - HIV-1 protease KW - structure prediction KW - saccharomyces cerevisiae KW - I-tasser KW - inhibitors KW - binding KW - malaria KW - complex KW - protein-protein interactions Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114882 VL - 9 IS - 10 ER - TY - JOUR A1 - Siegl, Christine A1 - Prusty, Bhupesh K. A1 - Karunakaran, Karthika A1 - Wischhusen, Jörg A1 - Rudel, Thomas T1 - Tumor Suppressor p53 Alters Host Cell Metabolism to Limit Chlamydia trachomatis Infection JF - Cell Reports N2 - Obligate intracellular bacteria depend entirely on nutrients from the host cell for their reproduction. Here, we show that obligate intracellular Chlamydia downregulate the central tumor suppressor p53 in human cells. This reduction of p53 levels is mediated by the PI3K-Akt signaling pathway, activation of HDM2, and subsequent proteasomal degradation of p53. The stabilization of p53 in human cells severely impaired chlamydial development and caused the loss of infectious particle formation. DNA-damage-induced p53 interfered with chlamydial development through downregulation of the pentose phosphate pathway (PPP). Increased expression of the PPP key enzyme glucose-6-phosphate dehydrogenase rescued the inhibition of chlamydial growth induced by DNA damage or stabilized p53. Thus, downregulation of p53 is a key event in the chlamydial life cycle that reprograms the host cell to create a metabolic environment supportive of chlamydial growth. KW - chlamydia trachomatis KW - tumor Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-118200 SN - 2211-1247 VL - 9 IS - 3 ER - TY - JOUR A1 - Remmele, Christian W. A1 - Xian, Yibo A1 - Albrecht, Marco A1 - Faulstich, Michaela A1 - Fraunholz, Martin A1 - Heinrichs, Elisabeth A1 - Dittrich, Marcus T. A1 - Müller, Tobias A1 - Reinhardt, Richard A1 - Rudel, Thomas T1 - Transcriptional landscape and essential genes of Neisseria gonorrhoeae N2 - The WHO has recently classified Neisseria gonorrhoeae as a super-bacterium due to the rapid spread of antibiotic resistant derivatives and an overall dramatic increase in infection incidences. Genome sequencing has identified potential genes, however, little is known about the transcriptional organization and the presence of non-coding RNAs in gonococci. We performed RNA sequencing to define the transcriptome and the transcriptional start sites of all gonococcal genes and operons. Numerous new transcripts including 253 potentially non-coding RNAs transcribed from intergenic regions or antisense to coding genes were identified. Strikingly, strong antisense transcription was detected for the phase-variable opa genes coding for a family of adhesins and invasins in pathogenic Neisseria, that may have regulatory functions. Based on the defined transcriptional start sites, promoter motifs were identified. We further generated and sequenced a high density Tn5 transposon library to predict a core of 827 gonococcal essential genes, 133 of which have no known function. Our combined RNA-Seq and Tn-Seq approach establishes a detailed map of gonococcal genes and defines the first core set of essential gonococcal genes. KW - Neisseria gonorrhoeae Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-113676 ER - TY - JOUR A1 - Hopfenmueller, Sebastian A1 - Steffan-Dewenter, Ingolf A1 - Holzschuh, Andrea T1 - Trait-Specific Responses of Wild Bee Communities to Landscape Composition, Configuration and Local Factors N2 - Land-use intensification and loss of semi-natural habitats have induced a severe decline of bee diversity in agricultural landscapes. Semi-natural habitats like calcareous grasslands are among the most important bee habitats in central Europe, but they are threatened by decreasing habitat area and quality, and by homogenization of the surrounding landscape affecting both landscape composition and configuration. In this study we tested the importance of habitat area, quality and connectivity as well as landscape composition and configuration on wild bees in calcareous grasslands. We made detailed trait-specific analyses as bees with different traits might differ in their response to the tested factors. Species richness and abundance of wild bees were surveyed on 23 calcareous grassland patches in Southern Germany with independent gradients in local and landscape factors. Total wild bee richness was positively affected by complex landscape configuration, large habitat area and high habitat quality (i.e. steep slopes). Cuckoo bee richness was positively affected by complex landscape configuration and large habitat area whereas habitat specialists were only affected by the local factors habitat area and habitat quality. Small social generalists were positively influenced by habitat area whereas large social generalists (bumblebees) were positively affected by landscape composition (high percentage of semi-natural habitats). Our results emphasize a strong dependence of habitat specialists on local habitat characteristics, whereas cuckoo bees and bumblebees are more likely affected by the surrounding landscape. We conclude that a combination of large high-quality patches and heterogeneous landscapes maintains high bee species richness and communities with diverse trait composition. Such diverse communities might stabilize pollination services provided to crops and wild plants on local and landscape scales. KW - habitats KW - bees KW - grasslands KW - species diversity KW - biodiversity KW - pollination KW - flowers KW - foraging Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112872 ER - TY - JOUR A1 - Brehm, Klaus A1 - Koziol, Uriel A1 - Rauschendorfer, Theresa A1 - Rodríguez, Luis Zanon A1 - Krohne, Georg T1 - The unique stem cell system of the immortal larva of the human parasite Echinococcus multilocularis N2 - Background It is believed that in tapeworms a separate population of undifferentiated cells, the germinative cells, is the only source of cell proliferation throughout the life cycle (similar to the neoblasts of free living flatworms). In Echinococcus multilocularis, the metacestode larval stage has a unique development, growing continuously like a mass of vesicles that infiltrate the tissues of the intermediate host, generating multiple protoscoleces by asexual budding. This unique proliferation potential indicates the existence of stem cells that are totipotent and have the ability for extensive self-renewal. Results We show that only the germinative cells proliferate in the larval vesicles and in primary cell cultures that undergo complete vesicle regeneration, by using a combination of morphological criteria and by developing molecular markers of differentiated cell types. The germinative cells are homogeneous in morphology but heterogeneous at the molecular level, since only sub-populations express homologs of the post-transcriptional regulators nanos and argonaute. Important differences are observed between the expression patterns of selected neoblast marker genes of other flatworms and the E. multilocularis germinative cells, including widespread expression in E. multilocularis of some genes that are neoblast-specific in planarians. Hydroxyurea treatment results in the depletion of germinative cells in larval vesicles, and after recovery following hydroxyurea treatment, surviving proliferating cells grow as patches that suggest extensive self-renewal potential for individual germinative cells. Conclusions In E. multilocularis metacestodes, the germinative cells are the only proliferating cells, presumably driving the continuous growth of the larval vesicles. However, the existence of sub-populations of the germinative cells is strongly supported by our data. Although the germinative cells are very similar to the neoblasts of other flatworms in function and in undifferentiated morphology, their unique gene expression pattern and the evolutionary loss of conserved stem cells regulators suggest that important differences in their physiology exist, which could be related to the unique biology of E. multilocularis larvae. KW - Cestoda KW - Echinococcus KW - Neoblast KW - Germinative cell KW - Stem cell KW - Nanos KW - Argonaute KW - Mucin KW - Alkaline phosphatase Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-110315 ER - TY - THES A1 - Luibl [née Hermann], Christiane T1 - The role of the neuropeptides NPF, sNPF, ITP and PDF in the circadian clock of Drosophila melanogaster T1 - Die Rolle der Neuropeptide NPF, sNPF, ITP und PDF in der circadianen Uhr von Drosophila melanogaster N2 - Organisms have evolved endogenous clocks which allow them to organize their behavior, metabolism and physiology according to the periodically changing environmental conditions on earth. Biological rhythms that are synchronized to daily changes in environment are governed by the so-called circadian clock. Since decades, chronobiologists have been investigating circadian clocks in various model organisms including the fruitfly Drosophila melanogaster, which was used in the present thesis. Anatomically, the circadian clock of the fruitfly consists of about 150 neurons in the lateral and dorsal protocerebrum, which are characterized by their position, morphology and neurochemistry. Some of these neurons had been previously shown to contain either one or several neuropeptides, which are thought to be the main signaling molecules used by the clock. The best investigated of these neuropeptides is the Pigment Dispersing Factor (PDF), which had been shown to constitute a synchronizing signal between clock neurons as well as an output factor of the clock. In collaboration with various coworkers, I investigated the roles of three other clock expressed neuropeptides for the generation of behavioral rhythms and the partly published, partly unpublished data are presented in this thesis. Thereby, I focused on the Neuropeptide F (NPF), short Neuropeptide F (sNPF) and the Ion Transport Peptide (ITP). We show that part of the neuropeptide composition within the clock network seems to be conserved among different Drosophila species. However, the PDF expression pattern in certain neurons varied in species deriving from lower latitudes compared to higher latitudes. Together with findings on the behavioral level provided by other people, these data suggest that different species may have altered certain properties of their clocks - like the neuropeptide expression in certain neurons - in order to adapt their behavior to different habitats. We then investigated locomotor rhythms in Drosophila melanogaster flies, in which neuropeptide circuits were genetically manipulated either by cell ablation or RNA interference (RNAi). We found that none of the investigated neuropeptides seems to be of equal importance for circadian locomotor rhythms as PDF. PDF had been previously shown to be necessary for rhythm maintenance in constant darkness (DD) as well as for the generation of morning (M) activity and for the right phasing of the evening (E) activity in entrained conditions. We now demonstrate that NPF and ITP seem to promote E activity in entrained conditions, but are clearly not the only factors doing so. In addition, ITP seems to reduce nighttime activity. Further, ITP and possibly also sNPF constitute weak period shortening components in DD, thereby opposing the effect of PDF. However, neither NPF or ITP, nor sNPF seem to be necessary in the clock neurons for maintaining rhythmicity in DD. It had been previously suggested that PDF is released rhythmically from the dorsal projection terminals. Now we discovered a rhythm in ITP immunostaining in the dorsal projection terminals of the ITP+ clock neurons in LD, suggesting a rhythm in peptide release also in the case of ITP. Rhythmic release of both ITP and PDF seems to be important to maintain rhythmic behavior in DD, since constantly high levels of PDF and ITP in the dorsal protocerebrum lead to behavioral arrhythmicity. Applying live-imaging techniques we further demonstrate that sNPF acts in an inhibitory way on few clock neurons, including some that are also activated by PDF, suggesting that it acts as signaling molecule within the clock network and has opposing effects to PDF. NPF did only evoke very little inhibitory responses in very few clock neurons, suggesting that it might rather be used as a clock output factor. We were not able to apply the same live-imaging approach for the investigation of the clock neuron responsiveness to ITP, but overexpression of ITP with various driver lines showed that the peptide most likely acts mainly in clock output pathways rather than inter-clock neuron communication. Taking together, I conclude that all investigated peptides contribute to the control of locomotor rhythms in the fruitfly Drosophila melanogaster. However, this control is in most aspects dominated by the actions of PDF and rather only fine-tuned or complemented by the other peptides. I assume that there is a high complexity in spatial and temporal action of the different neuropeptides in order to ensure correct signal processing within the clock network as well as clock output. N2 - Die meisten Organismen haben endogene Uhren entwickelt, mit deren Hilfe sie ihre Verhaltensweisen, ihren Metabolismus und auch ihre Physiologie an die periodisch wechselnden Umweltbedingungen auf unserer Erde anpassen können. Die sogenannten circadianen Uhren steuern dabei biologische Rhythmen, die an täglich wiederkehrende Umweltfaktoren angepasst sind. Schon seit Jahrzehnten wurden diese circadianen Uhren von Chronobiologen in verschiedensten Modellorganismen untersucht. Zu diesen gehört auch die Taufliege Drosophila melanogaster, welche im Rahmen dieser Doktorarbeit Verwendung fand. Anatomisch besteht die circadiane Uhr der Taufliege aus etwa 150 sogenannten Uhrneuronen, die sich im dorsalen und lateralen Protocerebrum der Fliege befinden. Diese können anhand ihrer Position im Gehirn, ihrer Morphologie als auch ihrer neurochemischen Eigenschaften charakterisiert werden. Es wurde bereits in früheren Arbeiten gezeigt, dass einige dieser Uhrneuronen jeweils ein oder mehrere Neuropeptide exprimieren, welche mit großer Wahrscheinlichkeit die wichtigsten Signalmoleküle der Uhr darstellen. Dabei ist der „Pigment Dispersing Factor“ (PDF) wohl das Neuropeptid, welches bisher in Bezug auf seine Funktion in der Uhr die größte Aufmerksamkeit fand. Es ist daher auch das Neuropeptid, das bei Weitem am besten untersucht ist. So wurde bereits gezeigt, dass PDF die Oszillationen der Uhrneuronen untereinander synchronisiert und auch in Ausgangssignalwegen der Uhr zu nachgeschalteten Gehirnregionen eine Rolle spielt. In Zusammenarbeit mit verschiedenen Kollegen, wurde im Rahmen dieser Doktorarbeit untersucht, welche Rolle drei andere Neuropeptide, welche in den Uhrneuronen exprimiert werden, in der Generierung von Verhaltensrhythmen spielen. Der Fokus lag dabei auf der Untersuchung des Neuropeptids F (NPF) des short Neuropeptids F (sNPF) und des Ion Transport Peptids (ITP). Wir konnten für manche dieser Peptide zeigen, dass ihre Verwendung im Uhrnetzwerk unterschiedlicher Drosophila-Arten konserviert zu sein scheint. Im Falle von PDF zeigten sich jedoch Unterschiede in der zellspezifischen Expression in Arten aus südlichen Breitengraden im Vergleich zu Arten aus nördlichen Breitengraden. Zusammen mit ergänzenden Verhaltensdaten anderer Arbeitsgruppen, gehen wir davon aus, dass unterschiedliche Arten bestimmte Eigenschaften ihrer Uhr – wie etwa die Neuropeptid-Expression in bestimmten Zellen – verändert haben, um ihr Verhalten bestmöglich an ihr jeweiliges Habitat anzupassen. Des Weiteren wurde in dieser Arbeit die Aktivitätsrhythmik in Fliegen untersucht, in welchen gezielt bestimmte Neuropeptid-Systeme auf genetischem Wege - entweder durch Zellablation oder RNA-Interferenz (RNAi) - manipuliert wurden. Wir konnten zeigen, dass wohl keines der untersuchten Peptide eine ähnlich große Rolle für die Aktivitätsrhythmik spielt wie PDF. Aus früheren Arbeiten geht hervor, dass PDF sowohl für die Aufrechterhaltung eines Rhythmus in konstanter Dunkelheit (DD), als auch für die Generierung der Morgenaktivität und für die richtige Phasenlage der Abendaktivität in Licht-Dunkel Zyklen (LD) essentiell ist. Ergebnisse der vorliegenden Arbeit zeigen nun, dass NPF und ITP die Abendaktivität in LD fördern, dass sie jedoch nicht die einzigen Faktoren sind, die dies bewerkstelligen. ITP scheint außerdem Aktivität während der Nacht zu hemmen. Des Weiteren stellen ITP und möglicherweise auch sNPF eine schwache Perioden verkürzende Komponente in DD dar, ganz im Gegensatz zu PDF, welches eine Perioden verlängernde Wirkung besitzt. Jedoch scheinen weder ITP, NPF noch sNPF für die generelle Aufrechterhaltung eines Rhythmus in DD nötig zu sein. Vorhergehende Arbeiten wiesen bereits darauf hin, dass PDF wahrscheinlich rhythmisch an den dorsalen Nervenendigungen ausgeschüttet wird. Unsere jetzigen Ergebnisse zeigen desweiteren eine Oszillation in der ITP-Immunfärbung in den dorsalen Projektionen der ITP+ Uhrneuronen in LD, was auch auf eine rhythmische Ausschüttung dieses Peptids schließen lässt. Die rhythmische Freisetzung beider Peptide scheint für die Aufrechterhaltung eines Verhaltensrhythmus in DD wichtig zu sein, da eine konstant hohe Menge an ITP und PDF im dorsalen Gehirn den Freilauf-Rhythmus störten. Die live-Imaging Experimente dieser Arbeit zeigten, dass sNPF auf manche Uhrneuronen inhibitorisch wirkt – auch auf einige, die durch PDF aktiviert werden können. sNPF könnte also als Signalmolekül innerhalb des Uhrnetzwerkes fungieren. Auch NPF führte zu inhibitorischen Zellantworten, jedoch waren diese äußerst schwach und betrafen nur wenige Uhrneuronen, was darauf schließen lässt, dass dieses Peptid wahrscheinlich am Signalausgang der Uhr beteiligt ist. Es war uns bisher nicht möglich dieselben live-Imaging Untersuchungen auch für ITP durchzuführen, jedoch zeigten Überexpressionsstudien mit verschiedenen Treiberlinien, dass auch ITP mit großer Wahrscheinlichkeit im Signalausgang der Uhr fungiert. Zusammenfassend lässt sich sagen, dass alle hier untersuchten Neuropeptide an der Kontrolle der rhythmischen Lokomotoraktivität von Drosophila melanogaster mitwirken. Dabei ist PDF eindeutig der dominierende Faktor, während die anderen Neuropeptide die Wirkung von PDF eher feinregulieren oder komplementieren. Aus den Daten kann geschlossen werden, dass die örtliche und zeitliche Funktionsweise dieser verschiedenen Peptide sehr komplex ist, um sowohl die Prozessierung von Signalen innerhalb des Uhrnetzwerkes als auch in den weitgehend noch unbekannten Ausgangswegen der Uhr zu gewährleisten. KW - Taufliege KW - Biologische Uhr KW - Neuropeptide KW - Innere Uhr KW - Drosophila KW - Circadian Rhythms Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-93796 ER - TY - JOUR A1 - Hudson, Lawrence N. A1 - Newbold, Tim A1 - Contu, Sara A1 - Hill, Samantha L. L. A1 - Lysenko, Igor A1 - De Palma, Adriana A1 - Phillips, Helen R. P. A1 - Senior, Rebecca A. A1 - Bennett, Dominic J. A1 - Booth, Hollie A1 - Choimes, Argyrios A1 - Correia, David L. P. A1 - Day, Julie A1 - Echeverria-Londono, Susy A1 - Garon, Morgan A1 - Harrison, Michelle L. K. A1 - Ingram, Daniel J. A1 - Jung, Martin A1 - Kemp, Victoria A1 - Kirkpatrick, Lucinda A1 - Martin, Callum D. A1 - Pan, Yuan A1 - White, Hannah J. A1 - Aben, Job A1 - Abrahamczyk, Stefan A1 - Adum, Gilbert B. A1 - Aguilar-Barquero, Virginia A1 - Aizen, Marcelo A1 - Ancrenaz, Marc A1 - Arbelaez-Cortes, Enrique A1 - Armbrecht, Inge A1 - Azhar, Badrul A1 - Azpiroz, Adrian B. A1 - Baeten, Lander A1 - Báldi, András A1 - Banks, John E. A1 - Barlow, Jos A1 - Batáry, Péter A1 - Bates, Adam J. A1 - Bayne, Erin M. A1 - Beja, Pedro A1 - Berg, Ake A1 - Berry, Nicholas J. A1 - Bicknell, Jake E. A1 - Bihn, Jochen H. A1 - Böhning-Gaese, Katrin A1 - Boekhout, Teun A1 - Boutin, Celine A1 - Bouyer, Jeremy A1 - Brearley, Francis Q. A1 - Brito, Isabel A1 - Brunet, Jörg A1 - Buczkowski, Grzegorz A1 - Buscardo, Erika A1 - Cabra-Garcia, Jimmy A1 - Calvino-Cancela, Maria A1 - Cameron, Sydney A. A1 - Cancello, Eliana M. A1 - Carrijo, Tiago F. A1 - Carvalho, Anelena L. A1 - Castro, Helena A1 - Castro-Luna, Alejandro A. A1 - Cerda, Rolando A1 - Cerezo, Alexis A1 - Chauvat, Matthieu A1 - Clarke, Frank M. A1 - Cleary, Daniel F. R. A1 - Connop, Stuart P. A1 - D'Aniello, Biagio A1 - da Silva, Pedro Giovani A1 - Darvill, Ben A1 - Dauber, Jens A1 - Dejean, Alain A1 - Diekötter, Tim A1 - Dominguez-Haydar, Yamileth A1 - Dormann, Carsten F. A1 - Dumont, Bertrand A1 - Dures, Simon G. A1 - Dynesius, Mats A1 - Edenius, Lars A1 - Elek, Zoltán A1 - Entling, Martin H. A1 - Farwig, Nina A1 - Fayle, Tom M. A1 - Felicioli, Antonio A1 - Felton, Annika M. A1 - Ficetola, Gentile F. A1 - Filgueiras, Bruno K. C. A1 - Fonte, Steve J. A1 - Fraser, Lauchlan H. A1 - Fukuda, Daisuke A1 - Furlani, Dario A1 - Ganzhorn, Jörg U. A1 - Garden, Jenni G. A1 - Gheler-Costa, Carla A1 - Giordani, Paolo A1 - Giordano, Simonetta A1 - Gottschalk, Marco S. A1 - Goulson, Dave A1 - Gove, Aaron D. A1 - Grogan, James A1 - Hanley, Mick E. A1 - Hanson, Thor A1 - Hashim, Nor R. A1 - Hawes, Joseph E. A1 - Hébert, Christian A1 - Helden, Alvin J. A1 - Henden, John-André A1 - Hernández, Lionel A1 - Herzog, Felix A1 - Higuera-Diaz, Diego A1 - Hilje, Branko A1 - Horgan, Finbarr G. A1 - Horváth, Roland A1 - Hylander, Kristoffer A1 - Horváth, Roland A1 - Isaacs-Cubides, Paola A1 - Ishitani, Mashiro A1 - Jacobs, Carmen T. A1 - Jaramillo, Victor J. A1 - Jauker, Birgit A1 - Jonsell, Matts A1 - Jung, Thomas S. A1 - Kapoor, Vena A1 - Kati, Vassiliki A1 - Katovai, Eric A1 - Kessler, Michael A1 - Knop, Eva A1 - Kolb, Annette A1 - Körösi, Àdám A1 - Lachat, Thibault A1 - Lantschner, Victoria A1 - Le Féon, Violette A1 - LeBuhn, Gretchen A1 - Légaré, Jean-Philippe A1 - Letcher, Susan G. A1 - Littlewood, Nick A. A1 - López-Quintero, Carlos A. A1 - Louhaichi, Mounir A1 - Lövei, Gabor L. A1 - Lucas-Borja, Manuel Esteban A1 - Luja, Victor H. A1 - Maeto, Kaoru A1 - Magura, Tibor A1 - Mallari, Neil Aldrin A1 - Marin-Spiotta, Erika A1 - Marhall, E. J. P. A1 - Martínez, Eliana A1 - Mayfield, Margaret M. A1 - Mikusinski, Gregorz A1 - Milder, Jeffery C. A1 - Miller, James R. A1 - Morales, Carolina L. A1 - Muchane, Mary N. A1 - Muchane, Muchai A1 - Naidoo, Robin A1 - Nakamura, Akihiro A1 - Naoe, Shoji A1 - Nates-Parra, Guiomar A1 - Navarerete Gutierrez, Dario A. A1 - Neuschulz, Eike L. A1 - Noreika, Norbertas A1 - Norfolk, Olivia A1 - Noriega, Jorge Ari A1 - Nöske, Nicole M. A1 - O'Dea, Niall A1 - Oduro, William A1 - Ofori-Boateng, Caleb A1 - Oke, Chris O. A1 - Osgathorpe, Lynne M. A1 - Paritsis, Juan A1 - Parrah, Alejandro A1 - Pelegrin, Nicolás A1 - Peres, Carlos A. A1 - Persson, Anna S. A1 - Petanidou, Theodora A1 - Phalan, Ben A1 - Philips, T. Keith A1 - Poveda, Katja A1 - Power, Eileen F. A1 - Presley, Steven J. A1 - Proença, Vânia A1 - Quaranta, Marino A1 - Quintero, Carolina A1 - Redpath-Downing, Nicola A. A1 - Reid, J. Leighton A1 - Reis, Yana T. A1 - Ribeiro, Danilo B. A1 - Richardson, Barbara A. A1 - Richardson, Michael J. A1 - Robles, Carolina A. A1 - Römbke, Jörg A1 - Romero-Duque, Luz Piedad A1 - Rosselli, Loreta A1 - Rossiter, Stephen J. A1 - Roulston, T'ai H. A1 - Rousseau, Laurent A1 - Sadler, Jonathan P. A1 - Sáfián, Szbolcs A1 - Saldaña-Vásquez, Romeo A. A1 - Samnegård, Ulrika A1 - Schüepp, Christof A1 - Schweiger, Oliver A1 - Sedlock, Jodi L. A1 - Shahabuddin, Ghazala A1 - Sheil, Douglas A1 - Silva, Fernando A. B. A1 - Slade, Eleanor A1 - Smith-Pardo, Allan H. A1 - Sodhi, Navjot S. A1 - Somarriba, Eduardo J. A1 - Sosa, Ramón A. A1 - Stout, Jane C. A1 - Struebig, Matthew J. A1 - Sung, Yik-Hei A1 - Threlfall, Caragh G. A1 - Tonietto, Rebecca A1 - Tóthmérész, Béla A1 - Tscharntke, Teja A1 - Turner, Edgar C. A1 - Tylianakis, Jason M. A1 - Vanbergen, Adam J. A1 - Vassilev, Kiril A1 - Verboven, Hans A. F. A1 - Vergara, Carlos H. A1 - Vergara, Pablo M. A1 - Verhulst, Jort A1 - Walker, Tony R. A1 - Wang, Yanping A1 - Watling, James I. A1 - Wells, Konstans A1 - Williams, Christopher D. A1 - Willig, Michael R. A1 - Woinarski, John C. Z. A1 - Wolf, Jan H. D. A1 - Woodcock, Ben A. A1 - Yu, Douglas W. A1 - Zailsev, Andreys A1 - Collen, Ben A1 - Ewers, Rob M. A1 - Mace, Georgina M. A1 - Purves, Drew W. A1 - Scharlemann, Jörn P. W. A1 - Pervis, Andy T1 - The PREDICTS database: a global database of how local terrestrial biodiversity responds to human impacts JF - Ecology and Evolution N2 - Biodiversity continues to decline in the face of increasing anthropogenic pressures such as habitat destruction, exploitation, pollution and introduction of alien species. Existing global databases of species' threat status or population time series are dominated by charismatic species. The collation of datasets with broad taxonomic and biogeographic extents, and that support computation of a range of biodiversity indicators, is necessary to enable better understanding of historical declines and to project - and avert - future declines. We describe and assess a new database of more than 1.6 million samples from 78 countries representing over 28,000 species, collated from existing spatial comparisons of local-scale biodiversity exposed to different intensities and types of anthropogenic pressures, from terrestrial sites around the world. The database contains measurements taken in 208 (of 814) ecoregions, 13 (of 14) biomes, 25 (of 35) biodiversity hotspots and 16 (of 17) megadiverse countries. The database contains more than 1% of the total number of all species described, and more than 1% of the described species within many taxonomic groups - including flowering plants, gymnosperms, birds, mammals, reptiles, amphibians, beetles, lepidopterans and hymenopterans. The dataset, which is still being added to, is therefore already considerably larger and more representative than those used by previous quantitative models of biodiversity trends and responses. The database is being assembled as part of the PREDICTS project (Projecting Responses of Ecological Diversity In Changing Terrestrial Systems - ). We make site-level summary data available alongside this article. The full database will be publicly available in 2015. KW - urban-rural gradient KW - instensively managed farmland KW - Mexican coffee plantations KW - Bombus Spp. Hymenoptera KW - bumblebee nest density KW - data sharing KW - land use KW - habitat destruction KW - global change KW - land-use change KW - plant community composition KW - Northeastern Costa Rica KW - dung beetle coleoptera KW - bird species richness Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114425 VL - 4 IS - 24 ER - TY - JOUR A1 - Haydn, Johannes M. A1 - Hufnagel, Anita A1 - Grimm, Johannes A1 - Maurus, Katja A1 - Schartl, Manfred A1 - Meierjohann, Svenja T1 - The MAPK pathway as an apoptosis enhancer in melanoma JF - Oncotarget N2 - Inhibition of RAF/MEK/ERK signaling is beneficial for many patients with BRAFV600E–mutated melanoma. However, primary and secondary resistances restrict long-lasting therapy success. Combination therapies are therefore urgently needed. Here, we evaluate the cellular effect of combining a MEK inhibitor with a genotoxic apoptosis inducer. Strikingly, we observed that an activated MAPK pathway promotes in several melanoma cell lines the pro-apoptotic response to genotoxic stress, and MEK inhibition reduces intrinsic apoptosis. This goes along with MEK inhibitor induced increased RAS and P-AKT levels. The protective effect of the MEK inhibitor depends on PI3K signaling, which prevents the induction of pro-apoptotic PUMA that mediates apoptosis after DNA damage. We could show that the MEK inhibitor dependent feedback loop is enabled by several factors, including EGF receptor and members of the SPRED family. The simultaneous knockdown of SPRED1 and SPRED2 mimicked the effects of MEK inhibitor such as PUMA repression and protection from apoptosis. Our data demonstrate that MEK inhibition of BRAFV600E-positive melanoma cells can protect from genotoxic stress, thereby achieving the opposite of the intended anti-tumorigenic effect of the combination of MEK inhibitor with inducers of intrinsic apoptosis. KW - PI3K KW - melanoma KW - RAS KW - chemotherapy resistance KW - crosstalk Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-120649 SN - 1949-2553 VL - 5 IS - 13 ER - TY - JOUR A1 - Dusik, Verena A1 - Senthilan, Pingkalai R. A1 - Mentzel, Benjamin A1 - Hartlieb, Heiko A1 - Wülbeck, Corina A1 - Yoshii, Taishi A1 - Raabe, Thomas A1 - Helfrich-Förster, Charlotte T1 - The MAP Kinase p38 Is Part of Drosophila melanogaster's Circadian Clock JF - PLoS Genetics N2 - All organisms have to adapt to acute as well as to regularly occurring changes in the environment. To deal with these major challenges organisms evolved two fundamental mechanisms: the p38 mitogen-activated protein kinase (MAPK) pathway, a major stress pathway for signaling stressful events, and circadian clocks to prepare for the daily environmental changes. Both systems respond sensitively to light. Recent studies in vertebrates and fungi indicate that p38 is involved in light-signaling to the circadian clock providing an interesting link between stress-induced and regularly rhythmic adaptations of animals to the environment, but the molecular and cellular mechanisms remained largely unknown. Here, we demonstrate by immunocytochemical means that p38 is expressed in Drosophila melanogaster's clock neurons and that it is activated in a clock-dependent manner. Surprisingly, we found that p38 is most active under darkness and, besides its circadian activation, additionally gets inactivated by light. Moreover, locomotor activity recordings revealed that p38 is essential for a wild-type timing of evening activity and for maintaining ∼ 24 h behavioral rhythms under constant darkness: flies with reduced p38 activity in clock neurons, delayed evening activity and lengthened the period of their free-running rhythms. Furthermore, nuclear translocation of the clock protein Period was significantly delayed on the expression of a dominant-negative form of p38b in Drosophila's most important clock neurons. Western Blots revealed that p38 affects the phosphorylation degree of Period, what is likely the reason for its effects on nuclear entry of Period. In vitro kinase assays confirmed our Western Blot results and point to p38 as a potential "clock kinase" phosphorylating Period. Taken together, our findings indicate that the p38 MAP Kinase is an integral component of the core circadian clock of Drosophila in addition to playing a role in stress-input pathways. KW - in vitro kinase assay KW - biological locomotion KW - circadian oscillators KW - MAPK signaling cascades KW - circadian rhythms KW - drosophila melanogaster KW - neurons KW - phosphorylation Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-119433 SN - 1553-7404 VL - 10 IS - 8 ER - TY - THES A1 - Fraune, Johanna T1 - The evolutionary history of the mammalian synaptonemal complex T1 - Die Evolutionsgeschichte des Synaptonemalkomplexes der Maus N2 - Der Synaptonemalkomplex (SC) ist eine hochkonservierte Proteinstruktur. Er weist eine dreiteili-ge, leiterähnliche Organisation auf und ist für die stabile Paarung der homologen Chromosomen während der Prophase der ersten meiotischen Teilung verantwortlich, die auch als Synpase be-zeichnet wird. Fehler während der Synpase führen zu Aneuploidie oder Apoptose der sich entwi-ckelnden Keimzellen. Seit 1956 ist der SC Gegenstand intensiver Forschung. Seine Existenz wurde in zahlreichen Orga-nismen von der Hefe bis zum Menschen beschrieben. Seine Struktur aus zwei parallel verlaufen-den Lateralelementen (LE), die durch eine Vielzahl von sogenannten Transversalfilamenten (TF) verbunden werden und dem Zentralen Element (CE) in der Mitte des SC ist dabei offensichtlich über die Millionen von Jahren der Evolution erhalten geblieben. Einzelne Proteinkomponenten des SC wurden jedoch nur in wenigen Modelorganismen charakterisiert, darunter Saccharomyces cerevisiae, Arabidopsis thaliana, Drosophila melanogaster, Ceanorhabditis elegans und Mus mus-culus. Unerwarteter Weise gelang es bei dieser Charakterisierung nicht, eine evolutionäre Ver-wandtschaft, d.h. eine Homologie zwischen den Proteinsequenzen der verschiedenen SCs nach-zuweisen. Diese Tatsache sprach gegen die grundsätzliche Annahme, dass der SC in der Evolution nur einmal entstanden sei. Diese Arbeit hat sich nun der Aufgabe gewidmet, die Diskrepanz zwischen der hochkonservierten Struktur des SC und seiner augenscheinlich nicht-homologen Proteinzusammensetzung zu lösen. Dabei beschränkt sie sich auf die Analyse des Tierreichs. Es ist die erste Studie zur Evolution des SC in Metazoa und demonstriert die Monophylie der Säuger SC Proteinkomponenten im Tierreich. Die Arbeit zeigt, dass mindestens vier von sieben SC Proteinen der Maus spätestens im letzten gemeinsamen Vorfahren der Gewebetiere (Eumetazoa) enstanden sind und auch damals Teil ei-nes ursprünglichen SC waren, wie er heute in dem Nesseltier Hydra zu finden ist. Dieser SC weist die typische Struktur auf und besitzt bereits alle notwendigen Komponenten, um die drei Domä-nen – LE, TF und CE – zu assemblieren. Darüber hinaus ergaben die einzelnen Phylogenien der verschiedenen SC Proteine der Maus, dass der SC eine sehr dynamische Evolutionsgeschichte durchlaufen hat. Zusätzliche Proteine wurden während der Entstehung der Bilateria und der Wir-beltiere in den SC integriert, während andere ursprüngliche Komponenten möglicherweise Gen-Duplikationen erfuhren bzw. besonders in der Linie der Häutungstiere verloren gingen oder sich stark veränderten. Es wird die These aufgestellt, dass die auf den ersten Blick nicht-homologen SC Proteine der Fruchtfliege und des Fadenwurms tatsächlich doch von den ursprünglichen Prote-inenkomponenten abstammen, sich aber aufgrund der rasanten Evolution der Arthropoden und der Nematoden bis zu deren Unkenntlichkeit diversifizierten. Zusätzlich stellt die Arbeit Hydra als alternatives wirbelloses Modellsystem für die Meiose- und SC-Forschung zu den üblichen Modellen D. melanogaster und C. elegans vor. Die kürzlich gewon-nenen Erkenntnisse über den Hydra SC sowie der Einsatz der Standard-Methoden in diesem Orga-nismus werden in dem abschließenden Kapitel zusammengefasst und diskutiert. N2 - The synaptonemal complex (SC) is a highly conserved structure in sexually reproducing organism. It has a tripartite, ladder-like organization and mediates the stable pairing, called synapsis, of the homologous chromosomes during prophase of meiosis I. Failure in homolog synapsis result in aneuploidy and/or apoptosis of the developing germ cells. Since 1956, the SC is subject of intense research and its presence was described in various species from yeast to human. Its structure was maintained during millions of years of evolution consist-ing of two parallel lateral elements (LEs), joined by numerous transverse filaments (TFs) which run perpendicular to the LEs and an electron dense central element (CE) in the middle of the SC. Individual protein components, however, were characterized only in few available model organ-isms, as for example Saccharomyces cerevisiae, Arabidopsis thaliana, Drosophila melanogaster, Ceanorhabditis elegans and Mus musculus. Rather unexpectedly, these characterizations failed to detect an evolutionary homology between the protein components of the different SCs. This fact challenged the general idea of a single origin of the SC in the evolution of meiosis and sexual reproduction. This thesis now addressed itself to the task to unravel the discrepancy between the high conser-vation of the SC structure and its diverse and apparently non-homologous protein composition, focusing on the animal kingdom. It is the first study dealing with the evolution of the SC in Meta-zoa and demonstrates the monophyly of the mammalian SC components in metazoan species. The thesis demonstrates that at least four out of seven murine SC proteins emerged in Eumeta-zoa at the latest and have been likewise part of an ancient SC as it can be found in the present-day cnidarian species Hydra. This SC displays the common organization and already possesses the minimal protein kit corresponding to the three different structural domains: LEs, TFs and the CE. Additionally, the individual phylogenies of the murine SC proteins revealed the dynamic evolu-tionary history of the ancient SC. Further components were added during the diversification of Bilateria and vertebrates while ancestral proteins likely duplicated in the vertebrate lineage and diversified or got lost in the branch leading to ecdysozoan species. It is hypothesized that the apparently non-homologous SC proteins in D. melanogaster and C. elegans actually do derive from the ancient SC proteins but diversified beyond recognition during the fast evolution of Ar-thropoda and Nematoda. The study proposes Hydra as an alternative invertebrate model system for meiosis and SC re-search to the standard organisms D. melanogaster and C. elegans. Recent results about the cni-darian SC as well as the possible application of standard methods is discussed and summarized in the concluding section. KW - Synaptinemal-Komplex KW - Maus KW - Hydra KW - Evolution KW - Meiose Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-100043 ER - TY - JOUR A1 - Benz, Roland A1 - Maier, Elke A1 - Bauer, Susanne A1 - Ludwig, Albrecht T1 - The Deletion of Several Amino Acid Stretches of Escherichia coli Alpha-Hemolysin (HlyA) Suggests That the Channel-Forming Domain Contains Beta-Strands JF - PLOS ONE N2 - Escherichia coli α-hemolysin (HlyA) is a pore-forming protein of 110 kDa belonging to the family of RTX toxins. A hydrophobic region between the amino acid residues 238 and 410 in the N-terminal half of HlyA has previously been suggested to form hydrophobic and/or amphipathic α-helices and has been shown to be important for hemolytic activity and pore formation in biological and artificial membranes. The structure of the HlyA transmembrane channel is, however, largely unknown. For further investigation of the channel structure, we deleted in HlyA different stretches of amino acids that could form amphipathic β-strands according to secondary structure predictions (residues 71–110, 158–167, 180–203, and 264–286). These deletions resulted in HlyA mutants with strongly reduced hemolytic activity. Lipid bilayer measurements demonstrated that HlyAΔ71–110 and HlyAΔ264–286 formed channels with much smaller single-channel conductance than wildtype HlyA, whereas their channel-forming activity was virtually as high as that of the wildtype toxin. HlyAΔ158–167 and HlyAΔ180–203 were unable to form defined channels in lipid bilayers. Calculations based on the single-channel data indicated that the channels generated by HlyAΔ71–110 and HlyAΔ264–286 had a smaller size (diameter about 1.4 to 1.8 nm) than wildtype HlyA channels (diameter about 2.0 to 2.6 nm), suggesting that in these mutants part of the channel-forming domain was removed. Osmotic protection experiments with erythrocytes confirmed that HlyA, HlyAΔ71–110, and HlyAΔ264–286 form defined transmembrane pores and suggested channel diameters that largely agreed with those estimated from the single-channel data. Taken together, these results suggest that the channel-forming domain of HlyA might contain β-strands, possibly in addition to α-helical structures. KW - membrane potential KW - molecular mass KW - cations KW - membrane structures KW - membrane proteins KW - lipid bilayer KW - red blood cells KW - toxins Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-118115 SN - 1932-6203 VL - 9 IS - 12 ER - TY - THES A1 - Kaiser, Dorkas T1 - Termites and ants in BURKINA FASO (WEST AFRICA): taxonomic and functional diversity along land-use gradients; ecosystem services of termites in the traditional ZAÏ SYSTEM T1 - Termiten und Ameisen in Burkina Faso (West Africa): Taxonomische und funktionelle Diversität entlang Landnutzungs-Gradienten, Ökosystemdienste von Termiten im traditionellen Zai system N2 - The consequences of habitat change for human well-being are assumed to be especially extreme in Burkina Faso. The country is located in a highly drought-sensitive zone of West Africa, and small‐scale subsistence farmers may be especially affected if losses of biodiversity lead to changes in ecosystem functioning; many depend on more or less degraded lands for agricultural production. The overall aim of the present thesis consequently was to characterize the functional traits of soil-organisms which are crucial for a productive and balanced soil environment in the study region – termites and ants. They are true ecosystem engineers whose activity alters the habitat. Through soil-turnover in the course of constructing biogenic structures of varying size and nature (mounds, nests, galleries, soil-sheetings, foraging-holes), they bioturbate huge amounts of soil masses and exert massive effects on soil structure, positively influencing the fertility, stability, aeration and water infiltration rate into soils; and they provide habitats for other species. In sub-Saharan Africa, ants and termites are the only active soil macrofauna during the long dry season; in the sub-Sahel zone of Burkina Faso, termites even represent the only active, quantitatively remarkable decomposers all year round. Since no information was available about the actual diversity of the focal arthropods, I divided the thesis in two main parts: In the first part, a baseline study, I assessed the local termite and ant fauna, and investigated their quantitative and qualitative response to changing habitat parameters resulting from increasing human impact (‘functional response traits’). In the second and applied part, I addressed the impact of the biogenic structures which are important for the restoration of degraded soils (‘functional effect traits’). Two traditional agricultural systems characteristic for the study region were selected. Each system represented a land-use intensification gradient comprising four distinct habitats now differing in the magnitude of human intervention but formerly having the same initial state. The first disturbance gradient, the temporal cross-section of a traditional soil water conservation technique to restore degraded heavily encrusted, barren soil named Zaï in Ouahigouya (Yatenga province, sub-Sahel zone); the second disturbance gradient, an agriculture type using crop rotation and fallow as nutrient management techniques near Fada N’Gourma (Gourma province, North-Sudanese zone). No standard protocol existed for the assessment of termite and ant diversity in semi-arid (agro-) ecosystems; two widely accepted standard protocols provided the basis for the newly revised and combined rapid assessment protocol ‘RAP’: the ALL protocol for leaf litter ants of Agosti and Alonso (2000), and the transect protocol for termites in tropical forests of Jones and Eggleton (2000). In each study site, three to four replicate transects were conducted during the rainy seasons (2004—2008). The RAP-protocol turned out to be very effective to characterize, compare and monitor the taxonomic and functional diversity of termites and ants; between 70% and 90% of the estimated total species richness were collected on all levels (transects, habitats, regions). Together in both regions, 65 ant species (25 genera) and 39 termite species (13 genera) were collected. These findings represent the first records for Burkina Faso. The data indicate a high sensitivity of termites and ants to land-use intensification. The diversity strongly decreased with increasing anthropogenic impact in the North-Sudan region. In total, 53 ant species (23 genera) and 31 termite species (12 genera) were found. Very promising results concerning the recovery potential of the soil-arthropods’ diversity were gathered in the Zaï system. The diversity of both taxa strongly increased with increasing habitat rehabilitation – in total, 41 ant species (16 genera) and 33 termite species (11 genera) were collected. For both taxa significant differences could be noted in the shape of the density variations along the gradient. For instance termites: Fungus-growers showed the greatest adaptability to different management practices. The greatest variations between the habitats were observed in soil and grass-feeding termites. Whole functional groups were missing in heavily impacted habitats, e.g. soil-, grass-, and wood-feeders were absent in the degraded site in the sub-Sahel zone. Several environmental parameters could be identified which significantly explained a great part of the variations in the composition of the arthropods’ communities; they indicate the importance of the habitats’ structural complexity (vegetation structure) and concomitant effects on diurnal temperature and moisture fluctuations, the availability of food sources, and the soil-structure. The diversity of termites in the sub-Sahel region was strongly correlated with the crown-cover percentages, the topsoils’ sand-content, and the availability of litter; in the North-Sudan region with the cumulated woody plant basal area, the topsoils’ clay- and organic matter-content. The parameters identified for ant communities in the Zaï system, were the height of trees, the topsoils’ clay-content and air humidity; in the North-Sudan region the habitats’ crown-cover percentages, the quantity of litter and again the height of trees. In the second part of the thesis, I first rapidly assessed the (natural) variations in the amount of epigeal soil-structures along the two disturbance gradients in order to judge the relative importance of termites and ants for soil-turnover. The results illustrated impressively that a) in all study sites, termites were the main bioturbators while ant structures were of minor importance for soil turn-over; b) earthworms and grass-feeding termites contributed significantly to soil turn-over in the more humid North-Sudan region; and c) the bioturbated soil mass varied between seasons and years, however, the relative importance of the different taxa seemed to be fairly constant. In the sub-Sahel zone, fungus-growing Odontotermes and Macrotermes species fully take over the important function of bioturbation, leading to the transport of huge amounts of fine-textured soil material to the surface; with increasing habitat restoration, coarse fragments decreased in the upper horizons and became concentrated deeper along the soil profile. Consequently, in the applied part, I concentrated on the bioturbation activity of fungus-growing termites in the four main stages of the Zaï system: crusted bare soil (initial stage), millet field, young and old forest. In each of the four Zaï sites nine experimental blocks (each comprising four plots of 1m2) were used to stimulate the foraging activity of fungus-growing termites with different, locally available organic materials (Aristida kerstingii hay, Bombax costatum wooden blocks, compost and a control without any organic amendment). The experiment was conducted twice for the duration of four weeks (rainy season 2005, dry season 2006). The plots were regularly checked and the increase of the area covered by sheetings chronologically followed. After four weeks a) all sheeting-soil was collected, air dried and separately weighed according to the different genera, and b) the foraging-holes were counted and their diameter measured. Additionally, c) ponded water infiltration was measured in selected plots, and d) the physicochemical properties of sheeting-soil were analyzed. In case of complete consumption of the offered hay during the experimental 4-weeks-duration, the same procedure (a, b) was followed before adding new hay to the respective plot. The comparison between the different plots, sites and seasons revealed clearly that hay was the most attractive bait; for each gram of hay removed, Odontotermes brought about 12 g soil to the surface, Macrotermes 4 g. Odontotermes was the only genus attracted by organic material to the degraded area, and was therefore the decisive primary physical ecosystem engineer in the Zaï system, initiating the restoration process. The mass of soil bioturbated in the course of foraging increased strongly from the degraded, barren towards the most rehabilitated reforested site. Combining all 36 experimental plots per Zaï stage, Odontotermes bioturbated 31.8 tons of soil per hectare and month dry season in the degraded area, and 32.4 tons ha-1 mon-1 in the millet fields; both genera moved 138.9 tons ha-1 mon-1 in the young and 215.5 tons ha-1 mon-1 in the old Zaï forest. Few comparable figures were found in the literature. In northern Burkina Faso, both genera constructed 20 tons of sheetings ha-1 mon-1 after mulching with a straw-wood mixture (Mando & Miedema 1997), and in Senegal, around 10 tons ha-1 mon-1 were moved in heavily foraged plots (Rouland et al. 2003). Within a site, soil turn-over and the number of foraging holes created was always highest in hay, followed by compost, then by wood and in the end control. The fungus-growers’ foraging-activity was leading to an enormous increase in surface pore space – after one month of induced foraging activity in hay-plots, the median number of foraging-holes increased from 142 m-2 in the degraded site up to 921 m-2 in the old Zaï forest. The creation of subterranean galleries and macropores significantly increased the water infiltration rate by a mean factor 2–4. Laboratory analyses revealed that sheeting-soil differed strongly from the respective control soil as well as between the seasons, the food-type covered, and the two genera. Odontotermes-sheetings differed in more parameters than Macrotermes-sheetings, and dry season sheetings differed in more parameters (and more strongly) than rainy season sheetings. In the present study, soil organic matter, carbon and nitrogen contents were significantly increased in all dry season sheetings; in the rainy season mainly in those built on compost. Texture analysis pointed out that both genera used topsoil and soil from deeper horizons in varying mixture ratios, thereby supporting findings of Jouquet et al. (2006). To summarize, the present thesis contributes to a better understanding of the functional response traits of termites and ants to changing environmental parameters resulting from increasing human impact. The RAP-protocol represents an easy-to-learn and very effective method to representatively characterize, compare and monitor the taxonomic and functional diversity of termites and ants. The experiment has provided conclusive evidence of the importance of the consideration of fungus-growing termites (particularly Odontotermes and Macrotermes species) when aiming to restore infertile, degraded and crusted soils and to maintain a sustainable agricultural production in the Sahel‐Sudanese zone of West Africa. N2 - Die Folgen von Lebensraumveränderungen für die Lebensqualität der Bevölkerung sind vermutlich besonders extrem in Burkina Faso. Das Land liegt in einem für Dürren sehr anfälligen Gebiet von Westafrika. Die Kleinbauern, welche die Hauptproduzenten für Lebensmittel der Region sind, können besonders betroffen sein, wenn Verluste der biologischen Vielfalt zu Veränderungen in den Ökosystemfunktionen führen, da viele von degradierten Flächen für die landwirtschaftliche Produktion abhängen. Das Hauptziel der vorliegenden Arbeit war daher, die funktionellen Merkmale derjenigen Bodenorganismen zu charakterisieren, die im Untersuchungsgebiet von entscheidender Bedeutung für ertragreiche und ausgewogene Böden sind: Termiten und Ameisen. Sie sind wahre Ökosystem‐Ingenieure, deren Aktivität den Lebensraum verändert. Durch Bodenumwälzung während des Baus von biogenen Strukturen unterschiedlicher Größe und Natur (Hügel, Nester, unterirdischer Gänge, Schutzschichten aus Erde, sogenannte „soil-sheetings“, Furagierlöcher, etc.) bewegen sie riesige Bodenmassen und haben enorme Auswirkungen auf die Bodenstruktur. Dies wirkt sich wiederrum positiv auf die Bodenfruchtbarkeit, die Stabilität, die Bodenbelüftung und die Wasserinfiltration aus, und bietet so auch Lebensraum für andere Arten. In den afrikanischen Ländern südlich der Sahara sind Ameisen und Termiten die einzige nennenswerte aktive Bodenmakrofauna während des gesamten Jahres. In der Sub-Sahelregion von Burkina Faso sind während der Trockenzeit Termiten die einzigen aktiven Primärzersetzer. Da keine Informationen über den Artenreichtum der Termiten- und Ameisen-Fauna in Burkina Faso vorlagen, setzte ich in der Dissertation zwei Schwerpunkte: Im ersten Teil, einer Grundlagenstudie, erfasste ich die lokale Termiten und Ameisenfauna in verschiedenen Landnutzungssystemen und untersuchte deren quantitative und qualitative Reaktion auf sich ändernde Umweltbedingungen, die aus dem zunehmenden Einfluss des Menschen resultieren ("funktionelle Reaktionsmerkmale"). Im zweiten und anwendungsbezogenen Teil befasste ich mich mit dem Einfluss der für die Regeneration degradierter Böden wichtigen biogenen Strukturen ("funktionelle Wirkungsmerkmale"). Es wurden zwei für die Untersuchungsregion typische traditionelle Landwirtschafts-formen ausgewählt. Jede stellte einen Landnutzungsgradienten dar, der vier verschiedene Habitate umfasste, welche sich in der Stärke des anthropogenen Einflusses unterschieden, ursprünglich aber den gleichen Anfangszustand hatten. Der erste Nutzungsgradient in Ouahigouya (Provinz Yatenga, Sub-Sahel-Zone) – namens Zaï – war ein zeitlicher Querschnitt durch eine traditionelle Boden- und Wasserschutztechnik zur Regeneration stark verkrusteter, degradierter Böden. Der zweite Nutzungsgradient nahe der Stadt Fada N’Gourma (Provinz Gourma, Nord-Sudan Region) war ein Landwirtschaftstyp, der Fruchtfolge und Brachzeiten für das Nährstoffmanagement nutzte. Zur Erhebung der Termiten- und Ameisen-Diversität in semi-ariden (Agrar-) Ökosystemen existierte kein Standardprotokoll; zwei international akzeptierte Protokolle bildeten die Grundlage für das neu überarbeitete und kombinierte Protokoll „RAP“ zur schnellen Erhebung der Termiten- und Ameisenfauna: Das ALL-Protokoll für Ameisen der Laubstreuschicht von Agosti and Alonso (2000) und das Transektprotokoll für Termiten in tropischen Wäldern von Jones and Eggleton (2000). In meiner Untersuchung wurden zwischen 2004 und 2008 während der Regenzeit in jedem der Untersuchungsgebiete drei bis vier Transekte abgesammelt. Das RAP-Protokoll erwies sich als sehr effektive Methode, um die taxonomische und funktionelle Vielfalt von Termiten und Ameisen zu beschreiben, zu vergleichen und zu überwachen. Zwischen 70% und 90% der geschätzten Gesamtartenzahl wurden auf allen Ebenen (Transekte, Lebensräume, Regionen) gesammelt. Insgesamt wurden in beiden Regionen 65 Ameisenarten (25 Gattungen) und 39 Termitenarten (13 Gattungen) gesammelt. Dies sind bislang die ersten Nachweise für Burkina Faso. Die Daten weisen auf eine hohe Sensitivität von Termiten und Ameisen gegenüber einer Landnutzungsintensivierung hin. Mit zunehmendem anthropogenem Einfluss nahm die Artenvielfalt in der Nord-Sudanregion stark zu. Insgesamt wurden 53 Ameisenarten (23 Gattungen) und 31 Termitenarten (12 Gattungen) gefunden. Sehr vielversprechende Ergebnisse wurden bezüglich des Erholungspotenzials der Bodenarthropoden-Diversität im Zaï-System gesammelt; die Vielfalt beider Taxa nahm in mit zunehmender Lebensraumsanierung stark zu: Insgesamt wurden 41 Ameisenarten (16 Gattungen) und 33 Termitenarten (11 Gattungen) dieser Region gefunden. Entlang der Landnutzungsgradienten zeigten sich signifikante Unterschiede im Vorkommen von Termiten und Ameisen. So bewiesen bei Termiten beispielsweise die Pilzzüchter die größte Anpassungsfähigkeit an die unterschiedlichen Bewirtschaftungspraktiken. Die größten Unterschiede zwischen den Lebensräumen wurden bei den boden- und den grasfressenden Termiten beobachtet. In stark vom Menschen beeinflussten Lebensräumen fehlten ganze funktionelle Gruppen, beispielsweise kamen in der degradierten Fläche der Sub-Sahelregion weder Bodenfresser noch Grasfresser oder Holzfresser vor. Mehrere Umweltparameter wurden identifiziert, welche einen großen Teil der Veränderungen in der Zusammensetzung der Arthropoden-Gemeinschaften entlang der Gradienten signifikant erklärten; sie lassen auf eine große Bedeutung der strukturellen Habitat-Komplexität (Vegetationsstruktur) und den damit verbundenen mikroklimatischen Schwankungen (Temperatur- und Feuchtigkeit), der Nahrungsverfügbarkeit und der Bodenstruktur schließen. Die Termitenvielfalt in der Sub-Sahelzone korrelierte stark mit dem Überschirmungsgrad, dem Sandgehalt im Oberboden und der Verfügbarkeit von Streu. Ihre Vielfalt in der Nord-Sudanregion korrelierte stark mit der kumulierten Gehölzpflanzen-Grundfläche, dem Tongehalt und dem organischen Material im Oberboden. Die identifizierten Parameter für die Ameisen-Gemeinschaften im Zaï-System waren die Höhe der Bäume, der Sandgehalt im Oberboden und die Luftfeuchte. Ihre Vielfalt in der Nord-Sudanregion korrelierte stark mit dem Überschirmungsgrad, dem Trockengewicht der verfügbaren Streu und der Baumhöhe. Um die relative Bedeutung von Termiten und Ameisen für die Bodenumwälzung beurteilen zu können, erfasste ich im zweiten Teil der Arbeit zunächst die natürlichen Schwankungen im Trockengewicht der in jedem Untersuchungsgebiet oberirdisch vorhandenen biogenen Strukturen. Die Ergebnisse veranschaulichen eindrucksvoll, dass: 1. Termiten in allen Untersuchungsgebieten die Hauptumwälzer, Ameisenstrukturen dagegen von untergeordneter Bedeutung für die Bioturbation waren; 2. Regenwürmer und grasfressende Termiten in der regenreicheren Nord-Sudanregion wesentlich zur Bodenumwälzung beitrugen; 3. die Gesamtmasse der umgewälzten Erde von Jahr zu Jahr schwankte, die relative Bedeutung beider Taxa für die Bioturbation jedoch ziemlich konstant war; 4. in der Sub-Sahelzone die wichtige Funktion der Bodenumwälzung vollständig von pilzzüchtenden Macrotermes- und Odontotermes-Arten übernommen wird, die zusammen große Mengen von feinkörnigem Bodenmaterial an die Oberfläche transportieren. Dadurch sank mit zunehmender Habitat-Rehabilitation der Gehalt an grobkörnigem Bodenmaterial in den oberen Bodenschichten und reicherte sich zunehmend in den tieferen Horizonten an. Im anwendungsbezogen Teil der Arbeit konzentrierte ich mich daher auf die Bioturbationsleistung pilzzüchtender Termiten in den vier Hauptstadien des Zaï-Systems: der degradierten Fläche (Ausgangsstadium der vier Sukzessionsstadien), dem Hirsefeld, dem jungen und dem alten Zaï-Wald. In jedem dieser vier Sukzessionsstadien wurde die Furagiertätigkeit von pilzzüchtenden Termiten folgendermaßen angeregt: Es wurden neun Versuchsblöcke installiert, mit je vier Unterquadraten mit einer Fläche von 1 m2. Drei der Unterquadrate wurde mit unterschiedlichen, lokal verfügbaren organischen Materialien bedeckt (mit Aristida kerstingii Stroh, Bombax costatum Holz, Kompost), eines blieb als Kontrolle ohne organisches Material. Das vierwöchige Experiment wurde zweimal durchgeführt (Regenzeit 2005, Trockenzeit 2006). Dabei wurden die Untersuchungsflächen regelmäßig auf Termitenaktivität überprüft und die Zunahme der “soil-sheetings“ kartiert. Nach vier Wochen wurde: i. Die gesamte Termitenerde gesammelt, luftgetrocknet und für jede Gattung getrennt gewogen; ii. die Furagierlöcher gezählt und ihr Durchmesser vermessen; iii. in ausgewählten Flächen die Wasserinfiltrationsrate gemessen; iv. die physikalisch-chemischen Eigenschaften der Sheeting-Erde analysiert. Sobald das Stroh in einem Unterquadrat abgetragen war, wurde nach den betreffenden Messungen (s. oben i. und ii.) neues aufgebracht. Der Vergleich der Ergebnisse beider Durchläufe zeigte deutlich, dass Stroh der attraktivste Köder war. Für jedes Gramm abgetragenes Stroh wurden von Odontotermes etwa 12 g, von Macrotermes etwa 4 g Erde an die Oberfläche gebracht. Odontotermes war die einzige Gattung, die in der degradierten Fläche von organischem Material angelockt wurde. Sie ist damit der entscheidende primäre physikalische Ökosystem-Ingenieur im Zaï-System, der den Restaurierungsprozess anstößt. Mit zunehmender Habitatsanierung nahm die Menge der umgewälzten Erde stark zu: In den 36 Unterquadraten der degradierten Fläche bewegte Odontotermes insgesamt 31,8 Tonnen Erde pro Hektar und Monat Trockenzeit, in denen der Hirsefelder insgesamt 32,4 Tonnen. Beide Gattungen zusammen bewegten im jungen Zaï-Wald insgesamt 138,9 Tonnen, im alten Wald 215,5 Tonnen Erde pro Hektar und Monat Trockenzeit. In jedem Sukzessionsstadium waren sowohl die Bodenumwälzung als auch die Anzahl der Furagierlöcher in den Versuchsflächen mit Stroh am größten, gefolgt von denen mit Kompost, dann denen mit Holz und zuletzt den Kontrollflächen. Die Furagiertätigkeit der pilzzüchtenden Termiten führte zu einer starken Zunahme der Makroporosität des Oberbodens. Nach einem Monat induzierter Fraßaktivität stieg im Mittel die Anzahl der Furagierlöcher pro Quadratmeter von 142 in der degradierten Fläche auf 921 Löcher im alten Zaï Wald. Die bei der Nahrungssuche gegrabenen Gänge und Löcher führten zu einem signifikanten Anstieg der Wasserinfiltrationsrate, im Mittel um den Faktor 2–4. Nur wenige vergleichbare Zahlen konnten in der Literatur gefunden werden. Bei den Untersuchungen von Mando and Miedema (1997) im Norden von Burkina Faso wälzten die beiden Gattungen nach Mulchen mit einem Holz-Stroh-Gemisch Sheetings mit einem Trockengewicht von insgesamt 20 Tonnen je Hektar und Monat Trockenzeit um. Im Senegal wurden in Versuchsflächen mit starker Furagieraktivität rund 10 Tonnen Erde bewegt (Rouland et al. 2003). Laboranalysen ergaben, dass sich Sheeting-Erde stark sowohl von der entsprechenden Kontroll-Erde unterschied als auch dem überdeckten Futtertyp und ebenso zwischen den beiden Gattungen. Dabei unterschied sich Sheeting-Erde von Odontotermes in mehr Parametern als Sheeting-Erde von Macrotermes, und Sheetings aus der Trockenzeit unterschieden sich in mehreren Parametern und in stärkerem Maße als Sheetings aus der Regenzeit. Der Gehalt an organischem Material, an Kohlenstoff und Stickstoff war in allen Trockenzeit-Sheetings deutlich erhöht, in der Regenzeit vor allem in Sheetings, die über Kompost gebaut wurden. Die Analyse der Korngrößenverteilung ließ darauf schließen, dass beide Gattungen Erde aus dem Oberboden und aus tieferen Horizonten in unterschiedlichen Mischungsverhältnissen nutzten. Dies bestätigt Beobachtungen von Jouquet et al. (2006). Zusammenfassend lässt sich sagen, dass die vorliegende Untersuchung zu einem besseren Verständnis der funktionellen Reaktionsmerkmale von Termiten und Ameisen auf sich ändernde Umweltparameter beiträgt, die aus dem zunehmenden Einfluss des Menschen resultieren. Das RAP-Protokoll erwies sich als eine einfach zu erlernende und sehr effektive Methode, um die taxonomische und funktionelle Vielfalt von Termiten und Ameisen in semi-ariden Savannen und Agrarökosystemen repräsentativ zu charakterisieren, zu vergleichen und zu überwachen. Das Experiment erbrachte schlüssige Beweise für die Bedeutung pilzzüchtender Termiten (insbesondere Odontotermes und Macrotermes-Arten) für die Sanierung vollständig degradierter und verkrusteter Böden, und für eine nachhaltige landwirtschaftliche Produktion in der Sub-Sahelzone in Westafrika. KW - Termiten KW - termites KW - Ameisen KW - Biodiversität KW - menschlicher Einfluss KW - ants KW - diversity KW - human impact Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-107001 ER - TY - JOUR A1 - Naseem, Muhammad A1 - Srivastava, Mugdha A1 - Dandekar, Thomas T1 - Stem-cell-triggered immunity safeguards cytokinin enriched plant shoot apexes from pathogen infection JF - Frontiers in Plant Science N2 - Intricate mechanisms discriminate between friends and foes in plants. Plant organs deploy overlapping and distinct protection strategies. Despite vulnerability to a plethora of pathogens, the growing tips of plants grow bacteria free. The shoot apical meristem (SAM) is among three stem cells niches, a self-renewable reservoir for the future organogenesis of leaf, stem, and flowers. How plants safeguard this high value growth target from infections was not known until now. Recent reports find the stem cell secreted 12-amino acid peptide CLV3p (CLAVATA3 peptide) is perceived by FLS2 (FLAGELLIN SENSING 2) receptor and activates the transcription of immunity and defense marker genes. No infection in the SAM of wild type plants and bacterial infection in clv3 and fls2 mutants illustrate this natural protection against infections. Cytokinins (CKs) are enriched in the SAM and regulate meristem activities by their involvement in stem cell signaling networks. Auxin mediates plant susceptibility to pathogen infections while CKs boost plant immunity. Here, in addition to the stem-cell-triggered immunity we also highlight a potential link between CK signaling and CLV3p mediated immune response in the SAM. KW - auxin KW - stem cell niche KW - FLS2 receptor KW - CLAVATA3 KW - cytokinins Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-118247 SN - 1664-462X VL - 5 ER - TY - JOUR A1 - Roces, Flavio A1 - Pielström, Steffen T1 - Soil Moisture and Excavation Behaviour in the Chaco Leaf-Cutting Ant (Atta vollenweideri): Digging Performance and Prevention of Water Inflow into the Nest N2 - The Chaco leaf-cutting ant Atta vollenweideri is native to the clay-heavy soils of the Gran Chaco region in South America. Because of seasonal floods, colonies are regularly exposed to varying moisture across the soil profile, a factor that not only strongly influences workers' digging performance during nest building, but also determines the suitability of the soil for the rearing of the colony's symbiotic fungus. In this study, we investigated the effects of varying soil moisture on behaviours associated with underground nest building in A. vollenweideri. This was done in a series of laboratory experiments using standardised, plastic clay-water mixtures with gravimetric water contents ranging from relatively brittle material to mixtures close to the liquid limit. Our experiments showed that preference and group-level digging rate increased with increasing water content, but then dropped considerably for extremely moist materials. The production of vibrational recruitment signals during digging showed, on the contrary, a slightly negative linear correlation with soil moisture. Workers formed and carried clay pellets at higher rates in moist clay, even at the highest water content tested. Hence, their weak preference and low group-level excavation rate observed for that mixture cannot be explained by any inability to work with the material. More likely, extremely high moistures may indicate locations unsuitable for nest building. To test this hypothesis, we simulated a situation in which workers excavated an upward tunnel below accumulated surface water. The ants stopped digging about 12 mm below the interface soil/water, a behaviour representing a possible adaptation to the threat of water inflow field colonies are exposed to while digging under seasonally flooded soils. Possible roles of soil water in the temporal and spatial pattern of nest growth are discussed. KW - ants KW - fungi KW - surface water KW - vibration KW - acoustic signals KW - physical properties KW - analysis of variance KW - fungal structure Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-111298 ER - TY - JOUR A1 - Sommerlandt, F. M. J. A1 - Huber, W. A1 - Spaethe, J. T1 - Social Information in the Stingless Bee, Trigona corvina Cockerell (Hymenoptera: Apidae): The Use of Visual and Olfactory Cues at the Food Site JF - Sociobiology N2 - For social insects, colony performance is largely dependent on the quantity and quality of food intake and thus on the efficiency of its foragers. In addition to innate preferences and previous experience, foragers can use social information to decide when and where to forage. In some stingless bee (Meliponini) species, individual foraging decisions are shown to be influenced by the presence of social information at resource sites. In dual choice tests, we studied whether visual and/or olfactory cues affect individual decision-making in rigona corvina Cockerell and if this information is species-specific. We found that T. corvina foragers possess local enhancement: they are attracted by olfactory and visual cues released by conspecifics but avoid feeders associated with heterospecific individuals of the species Tetragona ziegleri (Friese). Overall, olfactory cues seem to be more important than visual cues, but information by visual cues alone is sufficient for discrimination. KW - visual cues KW - recruitment KW - local enhancement KW - odor marks KW - communication Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-118120 VL - 61 IS - 4 ER - TY - THES A1 - Wolter, Steve T1 - Single-molecule localization algorithms in super-resolution microscopy T1 - Einzelmoleküllokalisierungsalgorithmen in der superauflösenden Mikroskopie N2 - Lokalisationsmikroskopie ist eine Methodenklasse der superauflösenden Fluoreszenzmikroskopie, deren Methoden sich durch stochastische zeitliche Isolation der Fluoreszenzemission auszeichnen. Das Blinkverhalten von Fluorophoren wird so verändert, dass gleichzeitige Aktivierung von einander nahen Fluorophoren unwahrscheinlich ist. Bekannte okalisationsmikroskopische Methoden umfassen dSTORM, STORM, PALM, FPALM, oder GSDIM. Lokalisationsmikroskopie ist von hohem biologischem Interesse, weil sie die Auflösung des Fluoreszenzmikroskops bei minimalem technischem Aufwand um eine Größenordnung verbessert. Der verbundene Rechenaufwand ist allerdings erheblich, da Millionen von Fluoreszenzemissionen einzeln mit Nanometergenauigkeit lokalisiert werden müssen. Der Rechen- und Implementationsaufwand dieser Auswertung hat die Verbreitung der superauflösenden Mikroskopie lange verzögert. Diese Arbeit beschreibt meine algorithmische Grundstruktur für die Auswertung lokalisationsmikroskopischer Daten. Die Echtzeitfähigkeit, d.h. eine Auswertegeschwindigkeit oberhalb der Datenaufnahmegeschwindigkeit an normalen Messaufbauten, meines neuartigen und quelloffenen Programms wird demonstriert. Die Geschwindigkeit wird auf verbrauchermarktgängigen Prozessoren erreicht und dadurch spezialisierte Rechenzentren oder der Einsatz von Grafikkarten vermieden. Die Berechnung wird mit dem allgemein anerkannten Gaussschen Punktantwortmodell und einem Rauschmodell auf Basis der größten Poissonschen Wahrscheinlichkeit durchgeführt. Die algorithmische Grundstruktur wird erweitert, um robuste und optimale Zweifarbenauswertung zu realisieren und damit korrelative Mikroskopie zwischen verschiedenen Proteinen und Strukturen zu ermöglichen. Durch den Einsatz von kubischen Basissplines wird die Auswertung von dreidimensionalen Proben vereinfacht und stabilisiert, um präzisem Abbilden von mikrometerdicken Proben näher zu kommen. Das Grenzverhalten von Lokalisationsalgorithmen bei hohen Emissionsdichten wird untersucht. Abschließend werden Algorithmen für die Anwendung der Lokalisationsmikroskopie auf verbreitete Probleme der Biologie aufgezeigt. Zelluläre Bewegung und Motilität werden anhand der in vitro Bewegung von Myosin-Aktin-Filamenten studiert. Lebendzellbildgebung mit hellen und stabilen organischen Fluorophoren wird mittels SNAP-tag-Fusionsproteinen realisiert. Die Analyse des Aufbaus von Proteinklumpen zeigt, wie Lokalisationsmikroskopie neue quantitative Ansätze jenseits reiner Bildgebung bietet. N2 - Localization microscopy is a class of super-resolution fluorescence microscopy techniques. Localization microscopy methods are characterized by stochastic temporal isolation of fluorophore emission, i.e., making the fluorophores blink so rapidly that no two are likely to be photoactive at the same time close to each other. Well-known localization microscopy methods include dSTORM}, STORM, PALM, FPALM, or GSDIM. The biological community has taken great interest in localization microscopy, since it can enhance the resolution of common fluorescence microscopy by an order of magnitude at little experimental cost. However, localization microscopy has considerable computational cost since millions of individual stochastic emissions must be located with nanometer precision. The computational cost of this evaluation, and the organizational cost of implementing the complex algorithms, has impeded adoption of super-resolution microscopy for a long time. In this work, I describe my algorithmic framework for evaluating localization microscopy data. I demonstrate how my novel open-source software achieves real-time data evaluation, i.e., can evaluate data faster than the common experimental setups can capture them. I show how this speed is attained on standard consumer-grade CPUs, removing the need for computing on expensive clusters or deploying graphics processing units. The evaluation is performed with the widely accepted Gaussian PSF model and a Poissonian maximum-likelihood noise model. I extend the computational model to show how robust, optimal two-color evaluation is realized, allowing correlative microscopy between multiple proteins or structures. By employing cubic B-splines, I show how the evaluation of three-dimensional samples can be made simple and robust, taking an important step towards precise imaging of micrometer-thick samples. I uncover the behavior and limits of localization algorithms in the face of increasing emission densities. Finally, I show up algorithms to extend localization microscopy to common biological problems. I investigate cellular movement and motility by considering the in vitro movement of myosin-actin filaments. I show how SNAP-tag fusion proteins enable imaging with bright and stable organic fluorophores in live cells. By analyzing the internal structure of protein clusters, I show how localization microscopy can provide new quantitative approaches beyond pure imaging. KW - super-resolution microscopy KW - fluorescence KW - scientific computing KW - dSTORM KW - localization microscopy KW - PALM KW - 3D microscopy KW - two-color microscopy KW - Fluoreszenzmikroskopie KW - Bildauflösung KW - Bioinformatik Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-109370 ER - TY - JOUR A1 - Volceanov, Larisa A1 - Herbst, Katharina A1 - Biniossek, Martin A1 - Schilling, Oliver A1 - Haller, Dirk A1 - Nölke, Thilo A1 - Subbarayal, Prema A1 - Rudel, Thomas A1 - Zieger, Barbara A1 - Häcker, Georg T1 - Septins Arrange F-Actin-Containing Fibers on the Chlamydia trachomatis Inclusion and Are Required for Normal Release of the Inclusion by Extrusion JF - MBIO N2 - Chlamydia trachomatis is an obligate intracellular human pathogen that grows inside a membranous, cytosolic vacuole termed an inclusion. Septins are a group of 13 GTP-binding proteins that assemble into oligomeric complexes and that can form higher-order filaments. We report here that the septins SEPT2, -9, -11, and probably -7 form fibrillar structures around the chlamydial inclusion. Colocalization studies suggest that these septins combine with F actin into fibers that encase the inclusion. Targeting the expression of individual septins by RNA interference (RNAi) prevented the formation of septin fibers as well as the recruitment of actin to the inclusion. At the end of the developmental cycle of C. trachomatis, newly formed, infectious elementary bodies are released, and this release occurs at least in part through the organized extrusion of intact inclusions. RNAi against SEPT9 or against the combination of SEPT2/7/9 substantially reduced the number of extrusions from a culture of infected HeLa cells. The data suggest that a higher-order structure of four septins is involved in the recruitment or stabilization of the actin coat around the chlamydial inclusion and that this actin recruitment by septins is instrumental for the coordinated egress of C. trachomatis from human cells. The organization of F actin around parasite-containing vacuoles may be a broader response mechanism of mammalian cells to the infection by intracellular, vacuole-dwelling pathogens. IMPORTANCE Chlamydia trachomatis is a frequent bacterial pathogen throughout the world, causing mostly eye and genital infections. C. trachomatis can develop only inside host cells; it multiplies inside a membranous vacuole in the cytosol, termed an inclusion. The inclusion is covered by cytoskeletal "coats" or "cages," whose organization and function are poorly understood. We here report that a relatively little-characterized group of proteins, septins, is required to organize actin fibers on the inclusion and probably through actin the release of the inclusion. Septins are a group of GTP-binding proteins that can organize into heteromeric complexes and then into large filaments. Septins have previously been found to be involved in the interaction of the cell with bacteria in the cytosol. Our observation that they also organize a reaction to bacteria living in vacuoles suggests that they have a function in the recognition of foreign compartments by a parasitized human cell. KW - mammalian septins KW - host-cells KW - binding KW - proteins KW - organization KW - cytoskeleton KW - cytokinesis KW - mechanisms KW - expression KW - protease Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115421 SN - 2150-7511 VL - 5 IS - 5 ER -