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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Detecting Adaptation with Genome-Scale Molecule Evolutionary Analysis: An Educational Primer for Use with 'RNA Interference Pathways Display High Rates of Adaptive Protein Evolution in Multiple Invertebrates'
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Detecting Adaptation with Genome-Scale Molecule Evolutionary Analysis: An Educational Primer for Use with 'RNA Interference Pathways Display High Rates of Adaptive Protein Evolution in Multiple Invertebrates'

机译:用基因组分子进化分析检测适应性:用于“RNA干扰途径的教育底漆在多个无脊椎动物中显示高蛋白质演化的高速率”

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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.
机译:宿主和病原体彼此施加共施加的压力,因为努力建立自己和主持人寻求抑制感染。 RNA干扰(RNAi)是细胞抑制病毒和转换元件的机制,从而用作免疫防御形式。 以前的研究表明,抗病毒RNAi基因在果蝇果蝇马铃薯中迅速发展,这表明它们可以适自适应地与病毒和转换元件共存。 Palmer和同事的一篇文章将该观察扩展到线虫和多种昆虫。 他们的制品可以与该引物结合起来,以证明在自然选择的测量中使用比较基因组学和分子进化分析。

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