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多效性限制阻碍了脊椎动物基因表达中性拮抗作用的解决。

Pleiotropic constraint hampers the resolution of sexual antagonism in vertebrate gene expression.

作者信息

Mank Judith E, Hultin-Rosenberg Lina, Zwahlen Martin, Ellegren Hans

机构信息

Evolutionary Biology Centre, Department of Evolutionary Biology, Uppsala University, Norbyvägen 18D, SE 752 36 Uppsala, Sweden.

出版信息

Am Nat. 2008 Jan;171(1):35-43. doi: 10.1086/523954.

Abstract

The numerous physiological and phenotypic differences between the sexes, as well as the disparity between male and female reproductive interests, result in sexual conflicts, which are often manifested at the genomic level. Sexually antagonistic genes benefit one sex at the expense of the other and experience strong pressure to evolve male- and female-specific expression patterns to resolve sexual conflicts and maximize fitness for both sexes. Sex-biased gene expression has recently been demonstrated for much of the metazoan transcriptome, suggesting that many loci are sexually antagonistic. However, many coding regions function in multiple processes throughout the organism. This pleiotropy increases the complexity of selection for any given gene, which in turn may obscure sex-specific selective pressures and hamper the evolution of sex-biased gene expression. Here we use microarray gene expression data, in conjunction with data on transcript abundance from expressed sequence tag libraries, to demonstrate that loci with sex-biased gene expression are significantly less pleiotropic than unbiased genes. This relationship was independent of sex chromosome gene dosage effects, and the results were concordant across two study organisms, chicken and mouse. These results suggest that the resolution of sexually antagonistic gene expression is determined by the evolutionary constraints acting on any given antagonistic locus.

摘要

两性之间存在众多生理和表型差异,以及雄性和雌性生殖利益的差异,这导致了性冲突,而性冲突常常在基因组水平上表现出来。性拮抗基因以牺牲另一性别为代价而使某一性别受益,并面临强大的选择压力,从而进化出雄性和雌性特异性的表达模式,以解决性冲突并使两性的适应性最大化。最近在许多后生动物转录组中都发现了性别偏向性基因表达,这表明许多基因座具有性拮抗作用。然而,许多编码区域在整个生物体的多个过程中发挥作用。这种多效性增加了对任何给定基因选择的复杂性,进而可能掩盖性别特异性选择压力,并阻碍性别偏向性基因表达的进化。在这里,我们使用微阵列基因表达数据,并结合来自表达序列标签文库的转录本丰度数据,来证明具有性别偏向性基因表达的基因座比无偏向性基因的多效性显著更低。这种关系独立于性染色体基因剂量效应,并且在两种研究生物体(鸡和小鼠)中结果一致。这些结果表明,性拮抗基因表达的解决方式是由作用于任何给定拮抗基因座的进化限制所决定的。

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