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基因表达对拟南芥和琴叶拟南芥分子进化的影响。

Effects of gene expression on molecular evolution in Arabidopsis thaliana and Arabidopsis lyrata.

作者信息

Wright Stephen I, Yau C B Kenneth, Looseley Mark, Meyers Blake C

机构信息

ICAPB, University of Edinburgh Ashworth Labs, Edinburgh, UK.

出版信息

Mol Biol Evol. 2004 Sep;21(9):1719-26. doi: 10.1093/molbev/msh191. Epub 2004 Jun 16.

Abstract

We analyzed the complete genome sequence of Arabidopsis thaliana and sequence data from 83 genes in the outcrossing A. lyrata, to better understand the role of gene expression on the strength of natural selection on synonymous and replacement sites in Arabidopsis. From data on tRNA gene abundance, we find a good concordance between codon preferences and the relative abundance of isoaccepting tRNAs in the complete A. thaliana genome, consistent with models of translational selection. Both EST-based and new quantitative measures of gene expression (MPSS) suggest that codon preferences derived from information on tRNA abundance are more strongly associated with gene expression than those obtained from multivariate analysis, which provides further support for the hypothesis that codon bias in Arabidopsis is under selection mediated by tRNA abundance. Consistent with previous results, analysis of protein evolution reveals a significant correlation between gene expression level and amino acid substitution rate. Analysis by MPSS estimates of gene expression suggests that this effect is primarily the result of a correlation between the number of tissues in which a gene is expressed and the rate of amino acid substitution, which indicates that the degree of tissue specialization may be an important determinant of the rate of protein evolution in Arabidopsis.

摘要

我们分析了拟南芥的全基因组序列以及异交的琴叶拟南芥中83个基因的序列数据,以便更好地理解基因表达在拟南芥同义位点和替代位点自然选择强度上所起的作用。从tRNA基因丰度数据来看,我们发现密码子偏好与拟南芥全基因组中同功tRNA的相对丰度之间具有良好的一致性,这与翻译选择模型相符。基于EST和新的基因表达定量方法(MPSS)均表明,从tRNA丰度信息得出的密码子偏好与基因表达的相关性,比从多变量分析得出的密码子偏好更强,这进一步支持了拟南芥密码子偏倚受tRNA丰度介导选择的假说。与之前的结果一致,蛋白质进化分析揭示了基因表达水平与氨基酸替代率之间存在显著相关性。通过MPSS对基因表达的估计分析表明,这种效应主要是由于基因表达所在组织的数量与氨基酸替代率之间的相关性所致,这表明组织特化程度可能是拟南芥蛋白质进化速率的一个重要决定因素。

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