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Evolutionary recruitment of flexible Esrp-dependent splicing programs into diverse embryonic morphogenetic processes

机译:灵活的依赖Esrp的剪接程序进化募集到各种胚胎形态发生过程中

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摘要

Epithelial-mesenchymal interactions are crucial for the development of numerous animal structures. Thus, unraveling how molecular tools are recruited in different lineages to control interplays between these tissues is key to understanding morphogenetic evolution. Here, we study Esrp genes, which regulate extensive splicing programs and are essential for mammalian organogenesis. We find that Esrp homologs have been independently recruited for the development of multiple structures across deuterostomes. Although Esrp is involved in a wide variety of ontogenetic processes, our results suggest ancient roles in non-neural ectoderm and regulating specific mesenchymal-to-epithelial transitions in deuterostome ancestors. However, consistent with the extensive rewiring of Esrp-dependent splicing programs between phyla, most developmental defects observed in vertebrate mutants are related to other types of morphogenetic processes. This is likely connected to the origin of an event in Fgfr, which was recruited as an Esrp target in stem chordates and subsequently co-opted into the development of many novel traits in vertebrates.
机译:上皮-间质相互作用对许多动物结构的发展至关重要。因此,揭示如何在不同谱系中募集分子工具来控制这些组织之间的相互作用是理解形态发生进化的关键。在这里,我们研究Esrp基因,其调节广泛的剪接程序,对于哺乳动物器官发生至关重要。我们发现,Esrp同源物已被独立招募,用于跨氘吻合器的多种结构的发展。尽管Esrp参与了各种各样的个体发育过程,但我们的结果表明,古代在非神经外胚层中的作用以及在氘代造口祖先中调节特定的间充质到上皮转化的作用。然而,与门之间Esrp依赖的剪接程序的广泛重新布线相一致,在脊椎动物突变体中观察到的大多数发育缺陷都与其他类型的形态发生过程有关。这很可能与Fgfr事件的起源有关,该事件被招募为茎索中的Esrp目标,随后被选入脊椎动物的许多新特征的发展中。

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