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适应是否受限于突变?遗传多样性对动物适应替代率的时变影响。

Is adaptation limited by mutation? A timescale-dependent effect of genetic diversity on the adaptive substitution rate in animals.

机构信息

ISEM, Univ. Montpellier, CNRS, EPHE, IRD, Montpellier, France.

LEGE, Department of Biology, University of Namur, Namur, Belgium.

出版信息

PLoS Genet. 2020 Apr 6;16(4):e1008668. doi: 10.1371/journal.pgen.1008668. eCollection 2020 Apr.

Abstract

Whether adaptation is limited by the beneficial mutation supply is a long-standing question of evolutionary genetics, which is more generally related to the determination of the adaptive substitution rate and its relationship with species effective population size (Ne) and genetic diversity. Empirical evidence reported so far is equivocal, with some but not all studies supporting a higher adaptive substitution rate in large-Ne than in small-Ne species. We gathered coding sequence polymorphism data and estimated the adaptive amino-acid substitution rate ωa, in 50 species from ten distant groups of animals with markedly different population mutation rate θ. We reveal the existence of a complex, timescale dependent relationship between species adaptive substitution rate and genetic diversity. We find a positive relationship between ωa and θ among closely related species, indicating that adaptation is indeed limited by the mutation supply, but this was only true in relatively low-θ taxa. In contrast, we uncover no significant correlation between ωa and θ at a larger taxonomic scale, suggesting that the proportion of beneficial mutations scales negatively with species' long-term Ne.

摘要

适应是否受有益突变供应的限制是进化遗传学中长期存在的问题,这更普遍地与适应替代率的确定及其与物种有效种群大小(Ne)和遗传多样性的关系有关。到目前为止,报告的经验证据尚无定论,一些研究支持大 Ne 物种比小 Ne 物种具有更高的适应替代率,但并非所有研究都支持这一观点。我们收集了编码序列多态性数据,并估计了来自十个不同动物群体的 50 个物种的适应性氨基酸替代率ωa,这些动物群体的种群突变率θ差异很大。我们揭示了物种适应性替代率与遗传多样性之间存在复杂的、依赖时间尺度的关系。我们发现,在近缘物种中,ωa 与θ之间存在正相关关系,表明适应确实受到突变供应的限制,但这种情况仅在相对低θ的分类群中才是正确的。相比之下,在更大的分类尺度上,我们发现ωa 与θ之间没有显著的相关性,这表明有益突变的比例与物种的长期 Ne 呈负相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a15/7162527/a169519e1379/pgen.1008668.g001.jpg

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