@phdthesis{Bemm2018, author = {Bemm, Felix Mathias}, title = {Genetic foundation of unrivaled survival strategies - Of water bears and carnivorous plants -}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-157109}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2018}, abstract = {All living organisms leverage mechanisms and response systems to optimize reproduction, defense, survival, and competitiveness within their natural habitat. Evolutionary theories such as the universal adaptive strategy theory (UAST) developed by John Philip Grime (1979) attempt to describe how these systems are limited by the trade-off between growth, maintenance and regeneration; known as the universal three-way trade-off. Grime introduced three adaptive strategies that enable organisms to coop with either high or low intensities of stress (e.g., nutrient deficiency) and environmental disturbance (e.g., seasons). The competitor is able to outcompete other organisms by efficiently tapping available resources in environments of low intensity stress and disturbance (e.g., rapid growers). A ruderal specism is able to rapidly complete the life cycle especially during high intensity disturbance and low intensity stress (e.g., annual colonizers). The stress tolerator is able to respond to high intensity stress with physiological variability but is limited to low intensity disturbance environments. Carnivorous plants like D. muscipula and tardigrades like M. tardigradum are two extreme examples for such stress tolerators. D. muscipula traps insects in its native habitat (green swamps in North and South Carolina) with specialized leaves and thereby is able to tolerate nutrient deficient soils. M. tardigradum on the other side, is able to escape desiccation of its terrestrial habitat like mosses and lichens which are usually covered by a water film but regularly fall completely dry. The stress tolerance of the two species is the central study object of this thesis. In both cases, high througput sequencing data and methods were used to test for transcriptomic (D. muscipula) or genomic adaptations (M. tardigradum) which underly the stress tolerance. A new hardware resource including computing cluster and high availability storage system was implemented in the first months of the thesis work to effectively analyze the vast amounts of data generated for both projects. Side-by-side, the data management resource TBro [14] was established together with students to intuitively approach complex biological questions and enhance collaboration between researchers of several different disciplines. Thereafter, the unique trapping abilities of D. muscipula were studied using a whole transcriptome approach. Prey-dependent changes of the transcriptional landscape as well as individual tissue-specific aspects of the whole plant were studied. The analysis revealed that non-stimulated traps of D. muscipula exhibit the expected hallmarks of any typical leaf but operates evolutionary conserved stress-related pathways including defense-associated responses when digesting prey. An integrative approach, combining proteome and transcriptome data further enabled the detailed description of the digestive cocktail and the potential nutrient uptake machinery of the plant. The published work [25] as well as a accompanying video material (https://www.eurekalert.org/pub_releases/ 2016-05/cshl-fgr042816.php; Video credit: S{\"o}nke Scherzer) gained global press coverage and successfully underlined the advantages of D. muscipula as experimental system to understand the carnivorous syndrome. The analysis of the peculiar stress tolerance of M. tardigradum during cryptobiosis was carried out using a genomic approach. First, the genome size of M. tardigradum was estimated, the genome sequenced, assembled and annotated. The first draft of M. tardigradum and the workflow used to established its genome draft helped scrutinizing the first ever released tardigrade genome (Hypsibius dujardini) and demonstrated how (bacterial) contamination can influence whole genome analysis efforts [27]. Finally, the M. tardigradum genome was compared to two other tardigrades and all species present in the current release of the Ensembl Metazoa database. The analysis revealed that tardigrade genomes are not that different from those of other Ecdysozoa. The availability of the three genomes allowed the delineation of their phylogenetic position within the Ecdysozoa and placed them as sister taxa to the nematodes. Thereby, the comparative analysis helped to identify evolutionary trends within this metazoan lineage. Surprisingly, the analysis did not reveal general mechanisms (shared by all available tardigrade genomes) behind the arguably most peculiar feature of tardigrades; their enormous stress tolerance. The lack of molecular evidence for individual tardigrade species (e.g., gene expression data for M. tardigradum) and the non-existence of a universal experimental framework which enables hypothesis testing withing the whole phylum Tardigrada, made it nearly impossible to link footprints of genomic adaptations to the unusual physiological capabilities. Nevertheless, the (comparative) genomic framework established during this project will help to understand how evolution tinkered, rewired and modified existing molecular systems to shape the remarkable phenotypic features of tardigrades.}, subject = {B{\"a}rtierchen}, language = {en} } @article{DrenckhahnBaumgartnerZonneveld2017, author = {Drenckhahn, Detlev and Baumgartner, Werner and Zonneveld, Ben}, title = {Different genome sizes of Western and Eastern Ficaria verna lineages shed light on steps of Ficaria evolution}, series = {Forum Geobotanicum}, volume = {7}, journal = {Forum Geobotanicum}, issn = {1867-9315}, doi = {10.3264/FG.2017.1122}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-155061}, pages = {27-33}, year = {2017}, abstract = {The genus Ficaria is now considered to comprize eight Eurasian species. The most widespread European species is the tetraploid F. verna Huds. The present study provides evidence for the existence of two main lineages of F. verna that differ considerably in their genomic size by about 3 pg. A Western F. verna lineage west of river Rhine displays a mean genome size (2C-value) of 34.2 pg and is almost precisely codistributed with the diploid F. ambigua Boreau (20 pg) north of the Mediterranean. The remaining part of Europe appears to be occupied by the Eastern F. verna lineage solely (mean genome size of 31.3 pg) which codistributes in South-Eastern Europe with the diploid F. calthifolia Rchb. (15 pg). There is little overlap at the boundary of Western and Eastern F. verna lineages with the occurrence of a separate intermediate group in the Netherlands (mean genomic size of 33.2 pg) that appears to result from hybridization of both lineages. On the basis of these observations and further considerations we propose development of F. ambigua and F. calthifolia south of the Alps with subsequent divergence to populate their current Western and Eastern European ranges, respectively. The Western F. verna lineage is proposed to originate from autotetraploidization of F. ambigua (precursor) with moderate genomic downsizing and the Eastern F. verna lineage from auto¬tetraploidization of F. calthifolia (precursor).}, subject = {Durchflusscytometrie}, language = {en} } @phdthesis{Flunkert2018, author = {Flunkert, Julia}, title = {Analyse genetischer Stabilit{\"a}t in den Nachkommen bestrahlter Zellen mittels klassischer Chromosomenb{\"a}nderung und verschiedener Hochdurchsatz-Techniken}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-173670}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2018}, abstract = {Ionisierende Strahlung (IR) ist in der medizinischen Diagnostik und in der Tumortherapie von zentraler Bedeutung, kann aber Genominstabilit{\"a}t und Krebs ausl{\"o}sen. Strahleninduzierte Genominstabilit{\"a}t (RIGI) ist in den klonalen Nachkommen bestrahlter Zellen zu beobachten, die zugrundeliegenden Mechanismen sind jedoch noch unverstanden. Zur Erforschung von verz{\"o}gerten Strahleneffekten wurden prim{\"a}re embryonale Fibroblastenkulturen mit 2 Gray bestrahlt und f{\"u}r 20 Populationsverdopplungen klonal expandiert. Zellen, die keiner Strahlung ausgesetzt waren, dienten als Kontrolle f{\"u}r normale Alterungsprozesse. Die Klone wurden durch klassische Chromosomenb{\"a}nderungstechniken analysiert und in Abh{\"a}ngigkeit der Stabilit{\"a}t ihres Genoms in Gruppen eingeteilt. Ein Klon wurde als stabil gewertet, wenn die analysierten Metaphasen keinerlei Auff{\"a}lligkeiten zeigten, w{\"a}hrend instabile Klone ein Mosaik aus normalen und abnormalen Metaphasen waren. Die Zellen von zwei Spendern wurden untersucht, um interindividuelle Strahleneffekte zu beurteilen. Nach Bestrahlung hatten mehr als die H{\"a}lfte der Klone Metaphasen mit strukturellen Aberrationen und wurden dementsprechend als instabil eingestuft. Drei Klone zeigten zudem numerische Aberrationen, die ausschließlich das Y Chromosom betrafen. Fluoreszenz in situ Hybridisierungen verifizierten diese Beobachtung in weiteren Klonen und deuteten an, dass der Verlust des Y Chromosoms mit RIGI assoziiert ist. Molekulare Karyotypisierungen mit SNP Arrays ergaben, dass IR in den Klonen Ver{\"a}nderungen der Kopienzahl ausl{\"o}st. Ein Unterschied zwischen chromosomal stabilen und instabilen Klonen konnte jedoch nicht detektiert werden. Chromosomale Regionen, in denen sich bekanntermaßen fragile Stellen befinden, zeigten eine Anh{\"a}ufung von CNVs. Ein RIGI Effekt konnte f{\"u}r die fragile Stelle 3B, in der sich das Gen FHIT befindet, identifiziert werden. Exom Sequenzierungen von Klonen und der entsprechenden Massenkultur zeigten eine alterungsassoziierte Entstehung von Varianten. Der Effekt wurde durch die Einwirkung von Strahlung erh{\"o}ht. Auf Ebene von einzelnen Nukleotiden konnten ebenfalls Anh{\"a}ufungen von Sch{\"a}den in bestimmten genomischen Bereichen detektiert werden, dieser Effekt ging ohne die typischen RIGI Endpunkte einher. Die Ergebnisse der vorliegenden Arbeit zeigen, dass strahlenbedingte Ver{\"a}nderungen auf verschiedenen Ebenen (Chromosomen, Genkopienzahl und einzelnen Nukleotiden) beobachtet werden k{\"o}nnen, welche, unabh{\"a}ngig von RIGI, die Tumorentstehung beg{\"u}nstigen. Speziell Ver{\"a}nderungen im FRA3B Lokus und der Verlust des Y Chromosoms scheinen jedoch {\"u}ber die Destabilisierung des Genoms zur Krebsentstehung beizutragen.}, subject = {Ionisierende Strahlung}, language = {de} } @phdthesis{Guckenberger2003, author = {Guckenberger, Matthias}, title = {Analyse des Hitzeschocks bei Neisseria meningitidis mit DNA-Microarrays}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-8952}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2003}, abstract = {Das Gram negative Bakterium Neisseria meningitidis ist weltweit ein bedeutender Erreger der bakteriellen Meningitis. Obwohl das ausschließlich humanpathogene Bakterium in bis zu 25\% der Europ{\"a}ischen Bev{\"o}lkerung die oberen Atemwege als harmloser Kommensale besiedelt, kommt es unter bestimmten, noch nicht ganz verstandenen Bedingungen zu einer klinisch manifesten Infektion. In dieser Arbeit wurde die neue Technologie der DNA Mikroarray Technologie f{\"u}r die Untersuchung des Transkriptoms bei Neisseria meningitidis etabliert. Untersucht wurde die Reaktion von N. meningitidis auf einen Hitzeschock, eine pl{\"o}tzliche Steigerung der Temperatur. W{\"a}hrend einer Infektion wird das Bakterium durch induziertes Fieber sehr {\"a}hnlichen Bedingungen ausgesetzt. Im Ergebnis erlaubten die RNA Expressionsanalysen nicht nur eine sichere Unterscheidung deregulierter Gene von Genen mit konstanter Expression, sondern es konnte auch das Ausmaß der Deregulation exakt bestimmt werden. Die Daten der DNA Mikroarray Experimente wurden mit der etablierten Technik der RT-PCR exakt best{\"a}tigt. Bei den Hitzeschock-Versuchen mit Neisseria meningitidis konnten zahlreiche ORFs als Hitzeschock-Gene identifiziert werden. Die Funktion dieser Gene, darunter groEL/groES und dnaJ/dnaK, war bereits bei anderen Organismen beschrieben worden, was die Qualit{\"a}t und Reproduzierbarkeit der Ergebnisse unterstreicht. Es konnte gezeigt werden, dass die Intensit{\"a}t des Hitzeschocks und damit die Deregulation der Hitzeschock-Gene mit steigender Temperatur zunimmt. Eine Erkl{\"a}rung f{\"u}r dieses interessante Ergebnis w{\"a}re, dass mit Steigerung der Temperatur der Schaden im Bakterium zunimmt und dadurch auch mehr Hitzeschock Proteine zur Reparatur ben{\"o}tigt werden. Daneben wurde erstmals die transkriptionelle Beeinflussung von Genen aus dem Bereich der Transformation durch einen Hitzeschock gefunden. Diese Daten konnten durch einen ph{\"a}notypischen Nachweis der Verminderung der Transformationsaktivit{\"a}t von Meningokokken nach einem Hitzeschock best{\"a}tigt werden. Diese neue Technik wird eine der Schl{\"u}sseltechnologien f{\"u}r die Forschung in der postgenomischen {\"A}ra sein. Viele Fragen in dem noch l{\"u}ckenhaften Wissen {\"u}ber die Pathologie von Neisseria meningitidis sollen sich in Zukunft mit Hilfe der DNA Mikroarrays beantworten lassen.}, language = {de} } @phdthesis{Gupta2018, author = {Gupta, Shishir Kumar}, title = {Re-annotation of Camponotus floridanus Genome and Characterization of Innate Immunity Transcriptome Responses to Bacterial Infections}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-140168}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2018}, abstract = {The sequencing of several ant genomes within the last six years open new research avenues for understanding not only the genetic basis of social species but also the complex systems such as immune responses in general. Similar to other social insects, ants live in cooperative colonies, often in high densities and with genetically identical or closely related individuals. The contact behaviours and crowd living conditions allow the disease to spread rapidly through colonies. Nevertheless, ants can efficiently combat infections by using diverse and effective immune mechanisms. However, the components of the immune system of carpenter ant Camponotus floridanus and also the factors in bacteria that facilitate infection are not well understood. To form a better view of the immune repository and study the C. floridanus immune responses against the bacteria, experimental data from Illumina sequencing and mass-spectrometry (MS) data of haemolymph in normal and infectious conditions were analysed and integrated with the several bioinformatics approaches. Briefly, the tasks were accomplished in three levels. First, the C. floridanus genome was re-annotated for the improvement of the existing annotation using the computational methods and transcriptomics data. Using the homology based methods, the extensive survey of literature, and mRNA expression profiles, the immune repository of C. floridanus were established. Second, large-scale protein-protein interactions (PPIs) and signalling network of C. floridanus were reconstructed and analysed and further the infection induced functional modules in the networks were detected by mapping of the expression data over the networks. In addition, the interactions of the immune components with the bacteria were identified by reconstructing inter-species PPIs networks and the interactions were validated by literature. Third, the stage-specific MS data of larvae and worker ants were analysed and the differences in the immune response were reported. Concisely, all the three omics levels resulted to multiple findings, for instance, re-annotation and transcriptome profiling resulted in the overall improvement of structural and functional annotation and detection of alternative splicing events, network analysis revealed the differentially expressed topologically important proteins and the active functional modules, MS data analysis revealed the stage specific differences in C. floridanus immune responses against bacterial pathogens. Taken together, starting from re-annotation of C. floridanus genome, this thesis provides a transcriptome and proteome level characterization of ant C. floridanus, particularly focusing on the immune system responses to pathogenic bacteria from a biological and a bioinformatics point of view. This work can serve as a model for the integration of omics data focusing on the immuno-transcriptome of insects.}, subject = {Camponotus floridanus}, language = {en} } @phdthesis{Hackl2016, author = {Hackl, Thomas}, title = {A draft genome for the Venus flytrap, Dionaea muscipula : Evaluation of assembly strategies for a complex Genome - Development of novel approaches and bioinformatics solutions}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-133149}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2016}, abstract = {The Venus flytrap, \textit{Dionaea muscipula}, with its carnivorous life-style and its highly specialized snap-traps has fascinated biologist since the days of Charles Darwin. The goal of the \textit{D. muscipula} genome project is to gain comprehensive insights into the genomic landscape of this remarkable plant. The genome of the diploid Venus flytrap with an estimated size between 2.6 Gbp to 3.0 Gbp is comparatively large and comprises more than 70 \% of repetitive regions. Sequencing and assembly of genomes of this scale are even with state-of-the-art technology and software challenging. Initial sequencing and assembly of the genome was performed by the BGI (Beijing Genomics Institute) in 2011 resulting in a 3.7 Gbp draft assembly. I started my work with thorough assessment of the delivered assembly and data. My analysis showed that the BGI assembly is highly fragmented and at the same time artificially inflated due to overassembly of repetitive sequences. Furthermore, it only comprises about on third of the expected genes in full-length, rendering it inadequate for downstream analysis. In the following I sought to optimize the sequencing and assembly strategy to obtain an assembly of higher completeness and contiguity by improving data quality and assembly procedure and by developing tailored bioinformatics tools. Issues with technical biases and high levels of heterogeneity in the original data set were solved by sequencing additional short read libraries from high quality non-polymorphic DNA samples. To address contiguity and heterozygosity I examined numerous alternative assembly software packages and strategies and eventually identified ALLPATHS-LG as the most suited program for assembling the data at hand. Moreover, by utilizing digital normalization to reduce repetitive reads, I was able to substantially reduce computational demands while at the same time significantly increasing contiguity of the assembly. To improve repeat resolution and scaffolding, I started to explore the novel PacBio long read sequencing technology. Raw PacBio reads exhibit high error rates of 15 \% impeding their use for assembly. To overcome this issue, I developed the PacBio hybrid correction pipeline proovread (Hackl et al., 2014). proovread uses high coverage Illumina read data in an iterative mapping-based consensus procedure to identify and remove errors present in raw PacBio reads. In terms of sensitivity and accuracy, proovread outperforms existing software. In contrast to other correction programs, which are incapable of handling data sets of the size of D. muscipula project, proovread's flexible design allows for the efficient distribution of work load on high-performance computing clusters, thus enabling the correction of the Venus flytrap PacBio data set. Next to the assembly process itself, also the assessment of the large de novo draft assemblies, particularly with respect to coverage by available sequencing data, is difficult. While typical evaluation procedures rely on computationally extensive mapping approaches, I developed and implemented a set of tools that utilize k-mer coverage and derived values to efficiently compute coverage landscapes of large-scale assemblies and in addition allow for automated visualization of the of the obtained information in comprehensive plots. Using the developed tools to analyze preliminary assemblies and by combining my findings regarding optimizations of the assembly process, I was ultimately able to generate a high quality draft assembly for D. muscipula. I further refined the assembly by removal of redundant contigs resulting from separate assembly of heterozygous regions and additional scaffolding and gapclosing using corrected PacBio data. The final draft assembly comprises 86 × 10 3 scaffolds and has a total size of 1.45 Gbp. The difference to the estimated genomes size is well explained by collapsed repeats. At the same time, the assembly exhibits high fractions full-length gene models, corroborating the interpretation that the obtained draft assembly provides a complete and comprehensive reference for further exploration of the fascinating biology of the Venus flytrap.}, subject = {Venusfliegenfalle}, language = {en} } @article{Korte2022, author = {Korte, Arthur}, title = {Der Zusammenhang zwischen Genom und Ph{\"a}notyp}, series = {BIOspektrum}, volume = {28}, journal = {BIOspektrum}, number = {3}, issn = {0947-0867}, doi = {10.1007/s12268-022-1765-y}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-324231}, pages = {279-282}, year = {2022}, abstract = {Understanding the causal relationship between genotype and phenotype is a major objective in biology. Genome-wide association studies (GWAS) correlate genetic polymorphisms with trait variation and have already identified causative variants for various traits in many different organisms, from humans to plants. Importantly, many adaptive traits, like the regulation of flowering time in plants, are not regulated by distinct genetic effects, but by more sophisticated gene regulatory networks.}, language = {de} } @phdthesis{Ng2001, author = {Ng, Eva Yee Wah}, title = {How did Listeria monocytogenes become pathogenic?}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-1752}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2001}, abstract = {Listeriae are Gram positive, facultative, saprophytic bacteria capable of causing opportunistic infections in humans and animals. This thesis presents three separate lines of inquiries that can lead to the eventual convergence of a global view of Listeria as pathogen in the light of evolution, genomics, and function. First, we undertook to resolve the phylogeny of the genus Listeria with the goal of ascertaining insights into the evolution of pathogenic capability of its members. The phylogeny of Listeriae had not yet been clearly resolved due to a scarcity of phylogenetically informative characters within the 16S and 23S rRNA molecules. The genus Listeria contains six species: L. monocytogenes, L. ivanovii, L. innocua, L. seeligeri, L. welshimeri, and L. grayi; of these, L. monocytogenes and L. ivanovii are pathogenic. Pathogenicity is enabled by a 10-15Kb virulence gene cluster found in L. seeligeri, L. monocytogenes and L. ivanovii. The genetic contents of the virulence gene cluster loci, as well as some virulence-associated internalin loci were compared among the six species. Phylogenetic analysis based on a data set of nucleic acid sequences from prs, ldh, vclA, vclB, iap, 16S and 23S rRNA genes identified L. grayi as the ancestral branch of the genus. This is consistent with previous 16S and 23S rRNA findings. The remainder 5 species formed two groupings. One lineage represents L. monocytogenes and L. innocua, while the other contains L. welshimeri, L. ivanovii and L. seeligeri, with L. welshimeri forming the deepest branch within this group. Deletion breakpoints of the virulence gene cluster within L. innocua and L. welshimeri support the proposed tree. This implies that the virulence gene cluster was present in the common ancestor of L. monocytogenes, L. innocua, L. ivanovii, L. seeligeri and L. welshimeri; and that pathogenic capability has been lost in two separate events represented by L. innocua and L. welshimeri. Second, we attempted to reconstitute L. innocua of its deleted virulence gene cluster, in its original chromosomal location, from the L. monocytogenes 12 Kb virulence gene cluster. This turned out particularly difficult because of the limits of genetic tools presently available for the organism. The reconstitution was partially successful. The methods and approaches are presented, and all the components necessary to complete the constructs are at hand for both L. innocua and the parallel, positive control of L. monocytogenes mutant deleted of its virulence gene cluster. Third, the sequencing of the entire genome of L. monocytogenes EGDe was undertaken as part of an EU Consortium. Our lab was responsible for 10 per cent of the labor intensive gap-closure and annotation efforts, which I helped coordinate. General information and comparisons with sister species L. innocua and a close Gram positive relative Bacillus subtilis are presented in context. The areas I personally investigated, namely, sigma factors and stationary phase functions, are also presented. L. monocytogenes and L. innocua both possess surprisingly few sigma factors: SigA, SigB, SigH, SigL, and an extra-cytoplasmic function type sigma factor (SigECF). The stationary phase genes of L. monocytogenes is compared to the well-studied, complex, stationary phase networks of B. subtilis. This showed that while genetic competence functions may be operative in unknown circumstances, non-sporulating Listeria opted for very different approaches of regulation from B. subtilis. There is virtually no overlap of known, stationary phase genes between Listeria and Gram negative model organism E. coli.}, subject = {Listeria monocytogenes}, language = {en} } @phdthesis{Paunescu2003, author = {Paunescu, Karina}, title = {DNA-Stabilit{\"a}t und Thioredoxin/Thioredoxin Reduktase im Zellkern}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-6999}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2003}, abstract = {Das System Thioredoxin /Thioredoxin Reduktase(Trx/TrxR) ist ein sehr versatiles System zur neutralisation reaktiver Sauerstoffspezies, zur Regulation redox-sensitiver Vorg{\"a}nge und zur Aktivierung von Transkriptionsfaktoren wie Steroidhormonrezeptoren, AP-1 und NFkB. Das Enzym Thioredoxin Reduktase war zun{\"a}chst nur als zytosolisches Enzym beschrieben, es ist mittlerweile bekannt, dass es z. B. nach Phorbolester-Stimulation auch sezeniert werden kann. Ad{\"a}quate Stimuli f{\"u}r die nucl{\"a}ere Translokation von Trx sind z. B. UV-Licht und TNF-Signalling. Zudem wurde in der vorhandenen Arbeit anhand transienter Transfektion und immunhistochemischer Untersuchungen nachgewiesen, dass beide Komponenten des Systems auch im Zellkern pr{\"a}sent sind. Ein Teil er Arbeit stellt die Charakteriesierung der subzellul{\"a}ren Lokalisation zweier Isoformen von Thioredoxin Reduktase 1 mit unterschiedlichem N-Terminus dar. Es konnte gezeigt werden, dass die beiden Isoformen als mRNA und Protein vorhanden sind. Es wurde dann die Interaktion des Enzyms Thioredoxin Reduktase mit anderen Komponenten des Zellkerns, hier speziell mit Enzymen der DNA-Prozessierung untersucht. Zudem wurde in einem Immunpr{\"a}zipitationsansatz ("Pull-Down-Assay") nucl{\"a}ere Interaktionspartner des Enzyms charakterisiert. Diese Partner sollen nach Gelelektrophorese und MALDI-TOF-Analyse identifiziert werden. Zu den DNA-Prozessierungsenzyme z{\"a}hlt auch Topisomerase I. Durch Antik{\"o}rpervermittelte Assays gelang es nachzuweisen, dass Topoisomerase I mit TrxR eine Protein-Protein-Wechsekwirkung eingeht. In einem Rekonstruktionssystem mit rekombinanter Topoisomerase I und gerenigter TrxR ergab sich jedoch keiner Hinweis f{\"u}r eine funktionelle Interaktion in DNA-Relaxations-Assay. Die Aufschl{\"u}sselung der Protein-Protein-Interaktion, der detaillierten molekularen Mechanismen und ihrer physiologischen relevanz bleibt weiteren Unterschungen vorbehalten.}, language = {de} } @phdthesis{Terhoeven2020, author = {Terhoeven, Niklas}, title = {Genomics of carnivorous Droseraceae and Transcriptomics of Tobacco pollination as case studies for neofunctionalisation of plant defence mechanisms}, doi = {10.25972/OPUS-18971}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-189712}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Plants have evolved many mechanisms to defend against herbivores and pathogens. In many cases, these mechanisms took other duties. One example of such a neofunction- alisation would be carnivory. Carnivory evolved from the defence against herbivores. Instead of repelling the predator with a bitter taste, the plant kills it and absorbs its nutrients. A second example can be found in the pollination process. Many of the genes involved here were originally part of defence mechanisms against pathogens. In this thesis, I study these two examples on a genomic and transcriptomic level. The first project, Genomics of carnivorous Droseraceae, aims at obtaining annotated genome sequences of three carnivorous plants. I assembled the genome of Aldrovanda vesiculosa, annotated those of A. vesiculosa, Drosera spatulata and Dionaea muscipula and com- pared their genomic contents. Because of the high repetitiveness of the D. muscipula genome, I also developed reper, an assembly free method for detection, classification and quantification of repeats. With that method, we were able to study the repeats without the need of incorporating them into a genome assembly. The second large project investigates the role of DEFL (defensin-like) genes in pollen tube guidance in tobacco flowers. We sequenced the transcriptome of the SR1 strain in different stages of the pollination process. I assembled and annotated the transcriptome and searched for differentially expressed genes. We also used a method based on Hidden- Markov-Models (HMM) to find DEFLs, which I then analysed regarding their expression during the different stages of fertilisation. In total, this thesis results in annotated genome assemblies of three carnivorous Droser- aceae, which are used as a foundation for various analyses investigating the roots of car- nivory, insights into the role of DEFLs on a transcriptomic level in tobacco pollination and a new method for repeat identification in complex genomes.}, subject = {Droseraceae}, language = {en} } @phdthesis{Yu2019, author = {Yu, Sung-Huan}, title = {Development and application of computational tools for RNA-Seq based transcriptome annotations}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-176468}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2019}, abstract = {In order to understand the regulation of gene expression in organisms, precise genome annotation is essential. In recent years, RNA-Seq has become a potent method for generating and improving genome annotations. However, this Approach is time consuming and often inconsistently performed when done manually. In particular, the discovery of non-coding RNAs benefits strongly from the application of RNA-Seq data but requires significant amounts of expert knowledge and is labor-intensive. As a part of my doctoral study, I developed a modular tool called ANNOgesic that can detect numerous transcribed genomic features, including non-coding RNAs, based on RNA-Seq data in a precise and automatic fashion with a focus on bacterial and achaeal species. The software performs numerous analyses and generates several visualizations. It can generate annotations of high-Resolution that are hard to produce using traditional annotation tools that are based only on genome sequences. ANNOgesic can detect numerous novel genomic Features like UTR-derived small non-coding RNAs for which no other tool has been developed before. ANNOgesic is available under an open source license (ISCL) at https://github.com/Sung-Huan/ANNOgesic. My doctoral work not only includes the development of ANNOgesic but also its application to annotate the transcriptome of Staphylococcus aureus HG003 - a strain which has been a insightful model in infection biology. Despite its potential as a model, a complete genome sequence and annotations have been lacking for HG003. In order to fill this gap, the annotations of this strain, including sRNAs and their functions, were generated using ANNOgesic by analyzing differential RNA-Seq data from 14 different samples (two media conditions with seven time points), as well as RNA-Seq data generated after transcript fragmentation. ANNOgesic was also applied to annotate several bacterial and archaeal genomes, and as part of this its high performance was demonstrated. In summary, ANNOgesic is a powerful computational tool for RNA-Seq based annotations and has been successfully applied to several species.}, subject = {Genom}, language = {en} }