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Early evolution of animal cell signaling and adhesion genes

机译:动物细胞信号转导和粘附基因的早期进化

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In stark contrast to the rapid morphological radiation of eumetazoans during the Cambrian explosion, the simple body plan of sponges (Phylum Porifera) emerged from the Cambrian relatively unchanged. Although the genetic and developmental underpinnings of these disparate evolutionary outcomes are unknown, comparisons between modern sponges and eumetazoans promise to reveal the extent to which critical genetic factors were present in their common ancestors. Two particularly interesting classes of genes in this respect are those involved in cell signaling and adhesion. These genes help guide development and morphogenesis in modern eumetazoans, but the timing and sequence of their origins is unknown. Here, we demonstrate that the sponge Oscarefla carmela, one of the earliest branching animals, expresses core components of the Writ, transforming growth factor p, receptor tyrosine kinase, Notch, Hedgehog, and Jak/Stat signaling pathways. Furthermore, we identify sponge homologs of nearly every major eumetazoan cell-adhesion gene family, including those that encode cell-surface receptors, cytoplasmic linkers, and extracellular-matrix proteins. From these data, we infer that key signaling and adhesion genes were in place early in animal evolution, before the divergence of sponge and eumetazoan lineages.
机译:与在寒武纪爆炸期间快速发生的杜鹃花形态辐射形成鲜明对比的是,从寒武纪出现的简单的海绵体(Phylum Porifera)体态相对不变。尽管这些不同的进化结果的遗传和发育基础尚不清楚,但现代海绵和杜鹃花之间的比较有望揭示其共同祖先存在关键遗传因素的程度。在这方面,两类特别有趣的基因是那些参与细胞信号传导和粘附的基因。这些基因有助于指导现代大猩猩的发育和形态发生,但是其起源的时间和顺序尚不清楚。在这里,我们证明海绵Oscarefla carmela是最早的分支动物之一,表达了Writ的核心成分,转化生长因子p,受体酪氨酸激酶,Notch,Hedgehog和Jak / Stat信号通路。此外,我们确定了几乎每个主要的杜仲细胞粘附基因家族的海绵同系物,包括那些编码细胞表面受体,胞质接头和细胞外基质蛋白的海绵同系物。从这些数据,我们推断关键信号和粘附基因在动物进化的早期就已经到位,在海绵和杜鹃花谱系分化之前。

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