TY - JOUR A1 - Kang, Ji Hyoun A1 - Manousaki, Tereza A1 - Franchini, Paolo A1 - Kneitz, Susanne A1 - Schartl, Manfred A1 - Meyer, Axel T1 - Transcriptomics of two evolutionary novelties: how to make a sperm-transfer organ out of an anal fin and a sexually selected "sword" out of a caudal fin JF - Ecology and Evolution N2 - Swords are exaggerated male ornaments of swordtail fishes that have been of great interest to evolutionary biologists ever since Darwin described them in the Descent of Man (1871). They are a novel sexually selected trait derived from modified ventral caudal fin rays and are only found in the genus Xiphophorus. Another phylogenetically more widespread and older male trait is the gonopodium, an intromittent organ found in all poeciliid fishes, that is derived from a modified anal fin. Despite many evolutionary and behavioral studies on both traits, little is known so far about the molecular mechanisms underlying their development. By investigating transcriptomic changes (utilizing a RNA-Seq approach) in response to testosterone treatment in the swordtail fish, Xiphophorus hellerii, we aimed to better understand the architecture of the gene regulatory networks underpinning the development of these two evolutionary novelties. Large numbers of genes with tissue-specific expression patterns were identified. Among the sword genes those involved in embryonic organ development, sexual character development and coloration were highly expressed, while in the gonopodium rather more morphogenesis-related genes were found. Interestingly, many genes and genetic pathways are shared between both developing novel traits derived from median fins: the sword and the gonopodium. Our analyses show that a larger set of gene networks was co-opted during the development and evolution of the older gonopodium than in the younger, and morphologically less complex trait, the sword. We provide a catalog of candidate genes for future efforts to dissect the development of those sexually selected exaggerated male traits in swordtails. KW - mouse testis differentiation KW - fishes Xiphophorus KW - beetle horns KW - gonopodium KW - RNA-Seq KW - swordtails KW - Xiphophorus KW - key innovation KW - male-specific traits KW - Co-option KW - genus Xiphophorus KW - hybrid origin KW - Drosophila melanogaster KW - expression analysis KW - cell proliferation KW - preexisting bias KW - sex combs Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144139 VL - 5 IS - 4 ER - TY - THES A1 - Gebhardt, Susanne T1 - Expression, biochemische Charakterisierung und biologische Analyse des CONNECTIVE TISSUE GROWTH FACTOR T1 - Expression, biochemical charakterisation und biological analysis of CONNECTIVE TISSUE GROWTH FACTOR N2 - Der Connective tissue growth factor, CTGF, ist ein mit der EZM assoziiertes Protein, das diverse zelluläre Aktivitäten, einschließlich Adhäsion, Proliferation, Differenzierung und Migration, besitzt. Die umfassenden biologischen Eigenschaften des CTGF in verschiedenen Zelltypen spiegelt seine Fähigkeit, eine Vielfalt an Zelloberflächenmolekülen (HSPGs, Integrine, …) als auch andere bioaktive Moleküle (BMP-4, TGF-β1, ...) zu binden, wieder. Eine veränderte CTGF-Expression ist mit mehreren fibrotischen Erkrankungen assoziiert und CTGF selbst stimuliert die Entstehung und Progression fibrotischer Defekte. Genauere Informationen über den Einfluss des CTGF auf die Genexpression von Zellen waren bisher unbekannt. In dieser Arbeit wurde zunächst humanes CTGF in HEK-Zellen exprimiert und anschließend in mehreren chromatographischen Schritten aufgereinigt. Die biologische Charakterisierung zeigte, dass das rekombinante Protein mit BMP-2 in Oberflächenplasmonresonanzstudien und auf Zellbasis interagiert. Desweiteren konnte auch eine Interaktion mit Balb3T3-Zellen festgestellt werden. Die biologische Aktivität des Proteins wurde durch Proliferationsassays mit einer Endothelzelllinie und primären Fibroblasten des menschlichen Tenon bestätigt. Das reine rekombinante Protein wurde für Genexpressionsanalysen an humanen primären Fibroblasten des Tenon eingesetzt. Ergebnisse dieser Studie der Genexpression von HTF von drei unabhängigen Spendern zeigten, dass CTGF verschiedene biologische und physiologische Prozesse beeinflusst. Bekannte proliferatorische Eigenschaften und der Einfluss auf die EZM konnten bestätigt werden. Neben den bisher bekannten Funktionen der durch CTGF verursachten Effekte bei der Wundheilung, die überwiegend in der zweiten und dritten Phase der Wundheilung im Bereich der Umstrukturierung der EZM zu finden sind, konnten mehrere regulierte Gene nachgewiesen werden, die eine Rolle in der ersten Phase der Wundheilung, der Inflammation, spielen. Die interessantesten bisher im Zusammenhang mit CTGF noch nicht beschriebenen proinflammatorischen Proteine sind die CXC-Chemokine 1, 2, 6 und 8 sowie IL-6, die in den CTGF behandelten Fibroblasten stärker exprimiert waren. CTGF scheint somit eine mannigfaltige koordinierte Rolle in der Wundheilung am Auge, einschließlich Inflammation und EZM-Remodeling sowie möglicherweise auch in der Angiogenese und Hämostase, zu spielen und damit seine Rolle als mulitmodularer Faktor zu bestätigen. N2 - Connective tissue growth factor, CTGF, is an ECM associated protein that has diverse cellular activities including adhesion, proliferation, differentiaton and migration. The widespread biological properties of CTGF reflects its ability to bind many cell surface molecules (HSPGs, Integrins, LDL, …) and other bioactive molecules (BMP-4, TGF-β ...). Expression of CTGF is associated with many fibrotic diseases and CTGF itself stimulates development and progression of fibrotic defects. Detailed information about the effect of CTGF on cellular gene expression is relatively unknown so far. In this study human CTGF was expressed in HEK-cells and subsequently purified in several chromatographic steps. Biological characterization shows an interaction of the protein with BMP-2 in surface plasmon resonance studies and also in cell based assays. Furthermore there was detected an interaction with Balb3T3 cells. Biological activity of the protein was confirmed by proliferation assays with an endothelial cell line and primary fibroblasts of the human tenon. Pure recombinant protein was used for gene expression analysis of human primary fibroblast of the tenon. Results of this gene expression study from three independent donors showed influence of CTGF on different biological and physiological processes. Known proliferative properties and influence on the ECM could be confirmed. Beside up to now known function of CTGF induced effects in wound healing, predominantly found in second and third phase of wound healing in range of ECM remodeling and myofibroblast differentiation, several regulated genes, important in first phase of wound healing, the inflammation, could be detected. As yet unknown CTGF regulated interesting genes are the upregulated chemokines 1, 2, 6 and 8 as well as Interleukin 6, all with proinflammatoric properties. Significant influence of CTGF on the genexpression of tenon fibroblasts indicates the meaningful part of this protein in ocular woundhealing, including inflammation and ECM remodeling, potentially also angiogenesis and haemostasis, and confirms its multimodular function. KW - CTGF KW - rekombinante Expression KW - Expressionsanalyse KW - Fibrose KW - Glaukom KW - CTGF KW - rekombinant expression KW - expression analysis KW - fibrosis KW - glaukoma Y1 - 2008 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-29565 ER - TY - THES A1 - Zirn, Birgit T1 - Expressions- und Mutationsanalysen in kindlichen Wilms Tumoren T1 - Expression and mutation analysis in pediatric Wilms Tumors N2 - kumulative Dissertation, vgl. Abstracts der angehängten Publikationen N2 - cumulative dissertation, see abstracts of original papers KW - Nephroblastom KW - Genexpression KW - Genmutation KW - Wilms Tumor KW - Nephroblastom KW - Expressionsanalyse KW - Wilms tumor KW - nephroblastoma KW - expression analysis Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-20338 ER -