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The impact of transposable elements on mammalian development

机译:转座因子对哺乳动物发育的影响

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摘要

Despite often being classified as selfish or junk DNA, transposable elements (TEs) are a group of abundant genetic sequences that have a significant impact on mammalian development and genome regulation. In recent years, our understanding of how pre-existing TEs affect genome architecture, gene regulatory networks and protein function during mammalian embryogenesis has dramatically expanded. In addition, the mobilization of active TEs in selected cell types has been shown to generate genetic variation during development and in fully differentiated tissues. Importantly, the ongoing domestication and evolution of TEs appears to provide a rich source of regulatory elements, functional modules and genetic variation that fuels the evolution of mammalian developmental processes. Here, we review the functional impact that TEs exert on mammalian developmental processes and discuss how the somatic activity of TEs can influence gene regulatory networks.
机译:尽管通常被归类为自私或垃圾DNA,但转座因子(TEs)是一组丰富的遗传序列,对哺乳动物的发育和基因组调控具有重要影响。近年来,我们对已有的TE如何影响哺乳动物胚胎发生过程中的基因组结构,基因调控网络和蛋白质功能的了解已大大扩展。此外,已经证明在选定的细胞类型中动员TE的动员会在发育过程中和完全分化的组织中产生遗传变异。重要的是,TEs的持续驯化和进化似乎为调节因子,功能模块和遗传变异提供了丰富的来源,从而推动了哺乳动物发育过程的进化。在这里,我们回顾了TEs对哺乳动物发育过程的功能影响,并讨论了TEs的体细胞活动如何影响基因调控网络。

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