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Transposable element-derived sequences in vertebrate development

机译:脊椎动物发育中的转座元素衍生的序列

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Transposable elements (TEs) are major components of all vertebrate genomes that can cause deleterious insertions and genomic instability. However, depending on the specific genomic context of their insertion site, TE sequences can sometimes get positively selected, leading to what are called “exaptation” events. TE sequence exaptation constitutes an important source of novelties for gene, genome and organism evolution, giving rise to new regulatory sequences, protein-coding exons/genes and non-coding RNAs, which can play various roles beneficial to the host. In this review, we focus on the development of vertebrates, which present many derived traits such as bones, adaptive immunity and a complex brain. We illustrate how TE-derived sequences have given rise to developmental innovations in vertebrates and how they thereby contributed to the evolutionary success of this lineage.
机译:可转换元素(TES)是所有脊椎动物基因组的主要组成部分,可导致有害插入和基因组不稳定性。 然而,根据其插入位点的特定基因组背景,TE序列有时会被肯定地选择,导致所谓的“展开”事件。 Te序列外来构成基因,基因组和生物进化的重要来源,产生新的调节序列,蛋白质编码外显子/基因和非编码RNA,这可以发挥对宿主有益的各种作用。 在这篇综述中,我们专注于脊椎动物的发展,其呈现许多衍生的特征,如骨骼,适应性免疫和复杂的大脑。 我们说明TE衍生的序列如何引起脊椎动物的发育创新以及它们的发展,从而促进了这种谱系的进化成功。

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