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Mutational bias affects protein evolution in flowering plants

机译:突变偏差影响开花植物的蛋白质进化

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摘要

Amino acid sequences from several thousand homologous gene pairs were compared for two plant genomes, Oryza sativa and Arabidopsis thaliana. The Arabidopsis genes all have similar G+C (guanine plus cytosine) contents, whereas their homologs in rice span a wide range of G+C levels. The results show that those rice genes that display increased divergence in their nucleotide composition (specifically, increased G+C content) showed a corresponding, predictable change in the amino acid compositions of the encoded proteins relative to their Arabidopsis homologs. This trend was not seen in a "control" set of rice genes that had nucleotide contents closer to their Arabidopsis homologs. In addition to showing an overall difference in the amino acid composition of the homologous proteins, we were also able to investigate the biased patterns of amino acid substitution since the divergence of these two species. We found that the amino acid exchange matrix was highly asymmetric when comparing the High G+C rice genes with their Arabidopsis homologs. Finally, we investigated the possible causes of this biased pattern of sequence evolution. Our results indicate that the biased pattern of protein evolution is the consequence, rather than the cause, of the corresponding changes in nucleotide content. In fact, there is an even more marked asymmetry in the patterns of substitution at synonymous nucleotide sites. Surprisingly, there is a very strong negative con-elation between the level of nucleotide bias and the length of the coding sequences within the rice genome. This difference in gene length may provide important clues about the underlying mechanisms.
机译:比较了来自数千个同源基因对的氨基酸序列,用于两种植物基因组,水稻和拟南芥。拟南芥基因都具有相似的 G+C(鸟嘌呤加胞嘧啶)含量,而它们在水稻中的同系物跨越了广泛的 G+C 水平。结果表明,那些核苷酸组成差异增加(特别是G+C含量增加)的水稻基因相对于其拟南芥同源物,在编码蛋白质的氨基酸组成上显示出相应的、可预测的变化。在一组核苷酸含量更接近拟南芥同源物的水稻基因中没有看到这种趋势。除了显示同源蛋白质的氨基酸组成存在总体差异外,我们还能够研究自这两个物种分化以来氨基酸取代的偏倚模式。我们发现,当将高G+C水稻基因与其拟南芥同源物进行比较时,氨基酸交换基质是高度不对称的。最后,我们研究了这种偏倚的序列进化模式的可能原因。我们的结果表明,蛋白质进化的偏倚模式是核苷酸含量相应变化的结果,而不是原因。事实上,同义核苷酸位点的取代模式存在更明显的不对称性。令人惊讶的是,核苷酸偏倚水平与水稻基因组内编码序列的长度之间存在非常强烈的负相关关系。这种基因长度的差异可能为潜在机制提供重要线索。

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