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Natural selection drives extremely rapid evolution in antiviral RNAi genes

机译:自然选择可推动抗病毒RNAi基因的快速进化

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摘要

RNA interference (RNAi) is perhaps best known as a laboratory tool. However, RNAi-related pathways represent an antiviral component of innate immunity in both plants and animals [1]. Since viruses can protect themselves by suppressing RNAi [2-4], interaction between RNA viruses and host RNAi may represent an ancient coevolutionary "arms race." This could lead to strong directional selection on RNAi genes, but to date their evolution has not been studied. By comparing DNA sequences from different species of Drosophila, we show that the rate of amino acid evolution is substantially elevated in genes related to antiviral RNAi function (Dcr2, R2D2, and Ago2). They are among the fastest evolving 3% of all Drosophila genes; they evolve significantly faster than other components of innate immunity and faster than paralogous genes that mediate "housekeeping" functions. Based on DNA polymorphism data from three species of Drosophila, McDonald-Kreitman tests showed that this rapid evolution is due to strong positive selection. Furthermore, Dcr2 and Ago2 display reduced genetic diversity, indicative of a recent selective sweep in both genes. Together, these data show rapid adaptive evolution of the antiviral RNAi pathway in Drosophila. This is a signature of host-pathogen arms races and implies that the ancient battle between RNA viruses and host antiviral RNAi genes is active and significant in shaping RNAi function.
机译:RNA干扰(RNAi)可能是最著名的实验室工具。然而,RNAi相关途径代表了动植物固有免疫的抗病毒成分[1]。由于病毒可以通过抑制RNAi来保护自身[2-4],因此RNA病毒与宿主RNAi之间的相互作用可能代表着古老的进化“军备竞赛”。这可能导致对RNAi基因的强方向选择,但迄今为止尚未对其进化进行研究。通过比较来自果蝇不同物种的DNA序列,我们显示了与抗病毒RNAi功能(Dcr2,R2D2和Ago2)相关的基因中氨基酸进化的速率大大提高。它们是所有果蝇基因中进化最快的3%之一;它们的进化比先天免疫的其他成分快得多,比介导“管家”功能的旁系同源基因快得多。根据来自果蝇的三种物种的DNA多态性数据,McDonald-Kreitman测试表明,这种快速的进化归因于强大的阳性选择。此外,Dcr2和Ago2显示出减少的遗传多样性,这表明最近在这两个基因中进行了选择性扫描。总之,这些数据表明果蝇中抗病毒RNAi途径的快速适应性进化。这是宿主-病原体军备竞赛的标志,暗示着RNA病毒与宿主抗病毒RNAi基因之间的古老斗争在塑造RNAi功能方面是活跃且重要的。

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