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首页> 外文期刊>Journal of Molecular Evolution >Molecular evolution of the plant virus family Bromoviridae based on RNA 3-encoded proteins
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Molecular evolution of the plant virus family Bromoviridae based on RNA 3-encoded proteins

机译:基于RNA 3编码蛋白的植物病毒科Bromoviridae的分子进化

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We have carried out an evolutionary study of the two proteins encoded by the RNA 3 from members of the plant virus family Bromoviridae. Using maximum likelihood methods, we have inferred the patterns of amino acid substitution that better explain the diversification of this viral family. The results indicate that the molecular evolution of this family was rather complex, with each protein evolving at different rates and according to different patterns of amino acid substitution. These differences include different amino acid equilibrium frequencies, heterogeneity in substitution rates among sites, and covariation among sites. Despite these differences, the model of protein evolution that better fits both proteins is one specifically proposed for the evolution of globular proteins. We also found evidence for coevolution between domains of these two proteins. Finally, our analyses suggest that the molecular clock hypothesis does not hold, since different lineages evolved at different rates. The implications of these results for the taxonomy of this important family of plant viruses are discussed.
机译:我们已经对植物病毒科Bromoviridae成员的RNA 3编码的两种蛋白质进行了进化研究。使用最大似然方法,我们已经推断出氨基酸取代的模式,可以更好地解释该病毒家族的多元化。结果表明该家族的分子进化是相当复杂的,每种蛋白质以不同的速率和根据氨基酸取代的不同模式进化。这些差异包括不同的氨基酸平衡频率,位点之间取代率的异质性以及位点之间的协变。尽管存在这些差异,但是一种更适合两种蛋白质的蛋白质进化模型是专门为球状蛋白质进化而提出的模型。我们还发现了这两种蛋白质的域之间共同进化的证据。最后,我们的分析表明分子时钟假设不成立,因为不同的谱系以不同的速率进化。讨论了这些结果对这个重要的植物病毒家族的分类的影响。

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