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从冲突的坩埚中:piRNA 介导的内源性基因调控和自私转座元件带来的其他适应模式。

From the cauldron of conflict: Endogenous gene regulation by piRNA and other modes of adaptation enabled by selfish transposable elements.

机构信息

Department of Ecology and Evolutionary Biology, University of Kansas, 1200 Sunnyside Avenue, Lawrence, KS 66045, United States.

出版信息

Semin Cell Dev Biol. 2025 Jan 1;164:1-12. doi: 10.1016/j.semcdb.2024.05.001. Epub 2024 May 31.

Abstract

Transposable elements (TEs) provide a prime example of genetic conflict because they can proliferate in genomes and populations even if they harm the host. However, numerous studies have shown that TEs, though typically harmful, can also provide fuel for adaptation. This is because they code functional sequences that can be useful for the host in which they reside. In this review, I summarize the "how" and "why" of adaptation enabled by the genetic conflict between TEs and hosts. In addition, focusing on mechanisms of TE control by small piwi-interacting RNAs (piRNAs), I highlight an indirect form of adaptation enabled by conflict. In this case, mechanisms of host defense that regulate TEs have been redeployed for endogenous gene regulation. I propose that the genetic conflict released by meiosis in early eukaryotes may have been important because, among other reasons, it spurred evolutionary innovation on multiple interwoven trajectories - on the part of hosts and also embedded genetic parasites. This form of evolution may function as a complexity generating engine that was a critical player in eukaryotic evolution.

摘要

转座元件 (TEs) 提供了一个很好的遗传冲突的例子,因为它们可以在基因组和种群中增殖,即使它们对宿主有害。然而,许多研究表明,转座元件虽然通常是有害的,但也可以为适应提供动力。这是因为它们编码的功能序列对它们所在的宿主是有用的。在这篇综述中,我总结了转座元件和宿主之间的遗传冲突所带来的“如何”和“为什么”的适应。此外,我还着重讨论了小 piwi 相互作用 RNA (piRNAs) 对 TE 控制的机制,强调了冲突所带来的间接适应形式。在这种情况下,调节转座元件的宿主防御机制被重新用于内源性基因调控。我提出,减数分裂在早期真核生物中释放的遗传冲突可能很重要,原因之一是它在多个交织的轨迹上激发了进化创新——不仅是宿主,还有内嵌入的遗传寄生虫。这种形式的进化可能是一种复杂性生成引擎,它是真核生物进化的关键参与者。

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