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X染色体连锁和性别偏向基因表达对果蝇适应性蛋白质进化速率的影响。

Effects of X-linkage and sex-biased gene expression on the rate of adaptive protein evolution in Drosophila.

作者信息

Baines John F, Sawyer Stanley A, Hartl Daniel L, Parsch John

机构信息

Section of Evolutionary Biology, Department of Biology, University of Munich, 82152 Munich, Germany.

出版信息

Mol Biol Evol. 2008 Aug;25(8):1639-50. doi: 10.1093/molbev/msn111. Epub 2008 May 13.

Abstract

Patterns of polymorphism and divergence in Drosophila protein-coding genes suggest that a considerable fraction of amino acid differences between species can be attributed to positive selection and that genes with sex-biased expression, that is, those expressed predominantly in one sex, have especially high rates of adaptive evolution. Previous studies, however, have been restricted to autosomal sex-biased genes and, thus, do not provide a complete picture of the evolutionary forces acting on sex-biased genes across the genome. To determine the effects of X-linkage on sex-biased gene evolution, we surveyed DNA sequence polymorphism and divergence in 45 X-linked genes, including 17 with male-biased expression, 13 with female-biased expression, and 15 with equal expression in the 2 sexes. Using both single- and multilocus tests for selection, we found evidence for adaptive evolution in both groups of sex-biased genes. The signal of adaptive evolution was particularly strong for X-linked male-biased genes. A comparison with data from 91 autosomal genes revealed a "fast-X" effect, in which the rate of adaptive evolution was greater for X-linked than for autosomal genes. This effect was strongest for male-biased genes but could be seen in the other groups as well. A genome-wide analysis of coding sequence divergence that accounted for sex-biased expression also uncovered a fast-X effect for male-biased and unbiased genes, suggesting that recessive beneficial mutations play an important role in adaptation.

摘要

果蝇蛋白质编码基因的多态性和分化模式表明,物种间相当一部分氨基酸差异可归因于正选择,且具有性别偏向性表达的基因,即主要在一种性别中表达的基因,具有特别高的适应性进化速率。然而,以往的研究仅限于常染色体上的性别偏向性基因,因此无法全面了解全基因组中影响性别偏向性基因的进化力量。为了确定X染色体连锁对性别偏向性基因进化的影响,我们调查了45个X连锁基因的DNA序列多态性和分化情况,其中包括17个雄性偏向性表达的基因、13个雌性偏向性表达的基因以及15个在两性中表达水平相等的基因。通过单基因座和多基因座选择测试,我们在两组性别偏向性基因中都发现了适应性进化的证据。适应性进化的信号在X连锁雄性偏向性基因中尤为强烈。与91个常染色体基因的数据进行比较,发现了一种“快速X”效应,即X连锁基因的适应性进化速率高于常染色体基因。这种效应在雄性偏向性基因中最为明显,但在其他组中也能观察到。对考虑了性别偏向性表达的编码序列分化进行全基因组分析,也发现了雄性偏向性和无偏向性基因的快速X效应,这表明隐性有益突变在适应性中起着重要作用。

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本文引用的文献

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SEX CHROMOSOMES AND THE EVOLUTION OF SEXUAL DIMORPHISM.性染色体与两性异形的进化
Evolution. 1984 Jul;38(4):735-742. doi: 10.1111/j.1558-5646.1984.tb00346.x.
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Demasculinization of X chromosomes in the Drosophila genus.果蝇属X染色体的去雄性化
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