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具有雄性偏向表达的果蝇基因中,进化速率与重组率之间存在正相关。

Positive correlation between evolutionary rate and recombination rate in Drosophila genes with male-biased expression.

作者信息

Zhang Zhi, Parsch John

出版信息

Mol Biol Evol. 2005 Oct;22(10):1945-7. doi: 10.1093/molbev/msi189. Epub 2005 Jun 8.

Abstract

Previous studies have shown that genes that are expressed predominantly or exclusively in males tend to evolve rapidly in comparison to other genes. In most cases, however, it is unknown whether this rapid evolution is the result of increased positive (or sexual) selection on male-expressed traits or if it is due to a relaxation of selective constraints. To distinguish between these two possibilities, we analyzed the relationship between the nonsynonymous substitution rate (dN) and local recombination rate for 343 Drosophila genes that were classified as male, female, or nonsex biased in their expression. For the male-biased genes, a positive correlation between dN and recombination rate was observed. This can be explained by an increased rate of adaptive evolution in regions of higher recombination due to a reduction of Hill-Robertson interference. In contrast, the correlation between dN and recombination rate was negative for both female- and nonsex-biased genes, suggesting that these genes are primarily subject to purifying selection, which is expected to be less effective in regions of reduced recombination.

摘要

先前的研究表明,与其他基因相比,主要或仅在雄性中表达的基因往往进化得更快。然而,在大多数情况下,尚不清楚这种快速进化是雄性表达性状上正(或性)选择增加的结果,还是由于选择限制的放松。为了区分这两种可能性,我们分析了343个果蝇基因的非同义替换率(dN)与局部重组率之间的关系,这些基因在表达上被分类为雄性、雌性或无性别偏向。对于雄性偏向基因,观察到dN与重组率之间呈正相关。这可以通过较高重组区域中适应性进化速率的增加来解释,这是由于希尔-罗伯逊干扰的减少。相比之下,雌性和无性别偏向基因的dN与重组率之间的相关性为负,这表明这些基因主要受到纯化选择,而在重组减少的区域中,纯化选择的效果预计会较差。

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