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Detecting Adaptation with Genome-Scale Molecular Evolutionary Analysis: An Educational Primer for Use with RNA Interference Pathways Display High Rates of Adaptive Protein Evolution in Multiple Invertebrates

机译:用基因组规模的分子进化分析检测适应性:一种与 RNA干扰途径显示多种无脊椎动物中的高适应性蛋白质进化率高有关的教育引物

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摘要

Hosts and pathogens impose coevolutionary pressure on each other as pathogens strive to establish themselves and hosts seek to suppress infection. RNA interference (RNAi) is a mechanism by which cells repress viruses and transposable elements, thereby serving as a form of immune defense. Previous studies have shown that antiviral RNAi genes evolve extraordinarily quickly in the fruit fly Drosophila melanogaster, suggesting that they may adaptively coevolve with viruses and transposable elements. An article by Palmer and colleagues extends this observation to nematodes and multiple insects. Their article can be combined with this Primer to demonstrate the use of comparative genomics and molecular evolutionary analyses in the measurement of natural selection.>Related article in GENETICS: Palmer, W. H., J. D. Hadfield, and D. J. Obbard, 2018 RNA-Interference pathways display high rates of adaptive protein evolution in multiple invertebrates. Genetics 208: .
机译:随着病原体努力建立自身,而宿主寻求抑制感染,宿主和病原体彼此施加了共同进化的压力。 RNA干扰(RNAi)是细胞抑制病毒和转座因子的机制,因此是免疫防御的一种形式。先前的研究表明,抗病毒RNAi基因在果蝇果蝇(Drosophila melanogaster)中异常快速地进化,表明它们可能与病毒和转座因子适应性地进化。 Palmer及其同事的一篇文章将这一发现扩展到了线虫和多种昆虫。他们的文章可以与此入门文章结合使用,以证明比较基因组学和分子进化分析在自然选择的测量中的应用。> GENETICS中的相关文章:Palmer,W​​H,JD Hadfield,and DJ Obbard,2018 RNA干扰途径在多种无脊椎动物中显示出高水平的适应性蛋白进化。遗传学208:

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