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偏倚性基因转换影响了酿酒酵母组中密码子使用和氨基酸使用的模式。

Biased gene conversion affects patterns of codon usage and amino acid usage in the Saccharomyces sensu stricto group of yeasts.

机构信息

Institute of Evolutionary Biology, School of Biological Sciences, Kings Buildings, West Mains Road, Edinburgh EH9 3JT, United Kingdom.

出版信息

Mol Biol Evol. 2011 Jan;28(1):117-29. doi: 10.1093/molbev/msq191. Epub 2010 Jul 23.

Abstract

Patterns of synonymous codon usage vary between organisms and are controlled by neutral processes (such as drift and mutation) as well as by selection. Here we show that an additional neutral process, GC-biased gene conversion (gBGC), plays a part in shaping patterns of both synonymous codon usage and amino acid composition in a manner dependent upon the local recombination rate. We obtain estimates of the strength of gBGC acting on synonymous sites in five species of yeast, which we find to be a much weaker force than selection. We use this to correct estimates of the strength of selection on codon usage bias, which are normally confounded by the action of gBGC. Our estimate of the rate of gBGC agrees well with an experimentally determined value obtained from Saccharomyces cerevisiae. We also find that, contrary to expectation, codon usage bias is highest in areas of intermediate levels of recombination for GC-ending optimal codons. Possible reasons for this are discussed.

摘要

同义密码子的使用模式在不同的生物体之间存在差异,这些模式受到中性过程(如漂移和突变)以及选择的控制。在这里,我们表明,一种额外的中性过程,GC 偏向性基因转换(gBGC),以依赖于局部重组率的方式,在塑造同义密码子使用模式和氨基酸组成模式方面发挥了作用。我们在五种酵母物种中获得了作用于同义位点的 gBGC 强度的估计值,我们发现它的作用比选择弱得多。我们用它来纠正对密码子使用偏好选择强度的估计值,这些估计值通常会受到 gBGC 作用的混淆。我们对 gBGC 速率的估计值与从酿酒酵母中获得的实验确定值非常吻合。我们还发现,与预期相反,对于 GC 结尾的最优密码子,在重组水平中等的区域,密码子使用偏好性最高。对此可能的原因进行了讨论。

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