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密码子偏好性选择强度随时间的变化导致果蝇碱基组成进化的不同模式。

Variation in the Intensity of Selection on Codon Bias over Time Causes Contrasting Patterns of Base Composition Evolution in Drosophila.

作者信息

Jackson Benjamin C, Campos José L, Haddrill Penelope R, Charlesworth Brian, Zeng Kai

机构信息

Department of Animal and Plant Sciences, University of Sheffield, Sheffield, United Kingdom.

Institute of Evolutionary Biology, School of Biological Sciences, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Genome Biol Evol. 2017 Jan 1;9(1):102-123. doi: 10.1093/gbe/evw291.

Abstract

Four-fold degenerate coding sites form a major component of the genome, and are often used to make inferences about selection and demography, so that understanding their evolution is important. Despite previous efforts, many questions regarding the causes of base composition changes at these sites in Drosophila remain unanswered. To shed further light on this issue, we obtained a new whole-genome polymorphism data set from D. simulans. We analyzed samples from the putatively ancestral range of D. simulans, as well as an existing polymorphism data set from an African population of D. melanogaster. By using D. yakuba as an outgroup, we found clear evidence for selection on 4-fold sites along both lineages over a substantial period, with the intensity of selection increasing with GC content. Based on an explicit model of base composition evolution, we suggest that the observed AT-biased substitution pattern in both lineages is probably due to an ancestral reduction in selection intensity, and is unlikely to be the result of an increase in mutational bias towards AT alone. By using two polymorphism-based methods for estimating selection coefficients over different timescales, we show that the selection intensity on codon usage has been rather stable in D. simulans in the recent past, but the long-term estimates in D. melanogaster are much higher than the short-term ones, indicating a continuing decline in selection intensity, to such an extent that the short-term estimates suggest that selection is only active in the most GC-rich parts of the genome. Finally, we provide evidence for complex evolutionary patterns in the putatively neutral short introns, which cannot be explained by the standard GC-biased gene conversion model. These results reveal a dynamic picture of base composition evolution.

摘要

四重简并编码位点构成了基因组的主要组成部分,并且经常被用于推断选择和种群统计学特征,因此了解它们的进化过程很重要。尽管之前已经做了很多努力,但关于果蝇中这些位点碱基组成变化的原因,仍有许多问题未得到解答。为了进一步阐明这个问题,我们从拟暗果蝇(D. simulans)获得了一个新的全基因组多态性数据集。我们分析了来自拟暗果蝇假定祖先分布范围的样本,以及来自黑腹果蝇(D. melanogaster)非洲种群的现有多态性数据集。通过使用雅库布果蝇(D. yakuba)作为外类群,我们发现了明确的证据,表明在相当长的一段时间内,两个谱系的四重简并位点都受到了选择,且选择强度随GC含量增加。基于碱基组成进化的明确模型,我们认为在两个谱系中观察到的AT偏向性替代模式可能是由于祖先选择强度的降低,而不太可能仅仅是由于对AT的突变偏向性增加导致的。通过使用两种基于多态性的方法来估计不同时间尺度上的选择系数,我们表明拟暗果蝇近期密码子使用的选择强度相当稳定,但黑腹果蝇的长期估计值远高于短期估计值,这表明选择强度在持续下降,以至于短期估计表明选择仅在基因组中GC含量最高的部分起作用。最后,我们为假定中性的短内含子中的复杂进化模式提供了证据,这无法用标准的GC偏向性基因转换模型来解释。这些结果揭示了碱基组成进化的动态图景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d75/5381600/d20c3a42d263/evw291f1p.jpg

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