Haddrill Penelope R, Halligan Daniel L, Tomaras Dimitris, Charlesworth Brian
Institute of Evolutionary Biology, School of Biological Sciences, University of Edinburgh, Edinburgh, EH9 3JT, UK.
Genome Biol. 2007;8(2):R18. doi: 10.1186/gb-2007-8-2-r18.
The recombinational environment is predicted to influence patterns of protein sequence evolution through the effects of Hill-Robertson interference among linked sites subject to selection. In freely recombining regions of the genome, selection should more effectively incorporate new beneficial mutations, and eliminate deleterious ones, than in regions with low rates of genetic recombination.
We examined the effects of recombinational environment on patterns of evolution using a genome-wide comparison of Drosophila melanogaster and D. yakuba. In regions of the genome with no crossing over, we find elevated divergence at nonsynonymous sites and in long introns, a virtual absence of codon usage bias, and an increase in gene length. However, we find little evidence for differences in patterns of evolution between regions with high, intermediate, and low crossover frequencies. In addition, genes on the fourth chromosome exhibit more extreme deviations from regions with crossing over than do other, no crossover genes outside the fourth chromosome.
All of the patterns observed are consistent with a severe reduction in the efficacy of selection in the absence of crossing over, resulting in the accumulation of deleterious mutations in these regions. Our results also suggest that even a very low frequency of crossing over may be enough to maintain the efficacy of selection.
重组环境预计会通过选择作用下连锁位点间的希尔-罗伯逊干扰效应来影响蛋白质序列进化模式。在基因组的自由重组区域,与遗传重组率低的区域相比,选择应能更有效地纳入新的有益突变并消除有害突变。
我们通过对黑腹果蝇和雅库布果蝇进行全基因组比较,研究了重组环境对进化模式的影响。在基因组中没有交叉互换的区域,我们发现非同义位点和长内含子中的分歧增加,密码子使用偏好几乎不存在,并且基因长度增加。然而,我们几乎没有发现高、中、低交叉互换频率区域之间进化模式存在差异的证据。此外,与第四条染色体之外的其他无交叉互换基因相比,第四条染色体上的基因表现出与有交叉互换区域更极端的偏差。
观察到的所有模式都与在没有交叉互换的情况下选择效率严重降低一致,导致这些区域有害突变的积累。我们的结果还表明,即使交叉互换频率非常低也可能足以维持选择效率。