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首页> 外文期刊>Molecular Biology and Evolution >Towards a More Nuanced Understanding of the Relationship between Sex-Biased Gene Expression and Rates of Protein-Coding Sequencen Evolution
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Towards a More Nuanced Understanding of the Relationship between Sex-Biased Gene Expression and Rates of Protein-Coding Sequencen Evolution

机译:对性别歧视基因表达与蛋白质编码序列进化速率之间关系的更细致的理解

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摘要

Genes that are differentially expressed between the sexes (sex-biased genes) are among the fastest evolving genes in animal genomes. The majority of sex-biased expression is attributable to genes that are primarily expressed in sex-limited reproductive tissues, and these reproductive genes are often rapidly evolving because of intra- and intersexual selection pressures. Additionally, studies of multiple taxa have revealed that genes with sex-biased expression are also expressed in a limited number of tissues. This is worth noting because narrowly expressed genes are known to evolve faster than broadly expressed genes. Therefore, it is not clear whether sex-biased genes are rapidly evolving because they have sexually dimorphic expression, because they are expressed in sex-limited reproductive tissues, or because they are narrowly expressed. To determine the extend to which other confounding variables can explain the rapid evolution of sex-biased genes, I analyzed the rates of evolution of sex-biased genes in Drosophila melanogaster and Mus musculus in light of tissue-specific measures of expression. I find that genes with sex-biased expression in somatic tissues shared by both sexes are often evolving faster than non–sex-biased genes, but this is best explained by the narrow expression profiles of sex-biased genes. Sex-biased genes in sex-limited tissues in D. melanogaster, however, evolve faster than other narrowly expressed genes. Therefore, the rapid evolution of sex-biased genes is limited only to those genes primarily expressed in sex-limited reproductive tissues.
机译:性别差异表达的基因(性别偏向基因)是动物基因组中发展最快的基因之一。多数性别偏见的表达可归因于主要在有性别限制的生殖组织中表达的基因,而这些生殖基因由于性别选择和夫妻间的选择压力而经常迅速发展。另外,对多个分类群的研究表明,具有性别偏向性表达的基因也在有限数量的组织中表达。值得注意的是,已知窄表达的基因比宽表达的基因进化得更快。因此,尚不清楚性别偏向基因是否由于其具有性二态性表达,是否在性别受限的生殖组织中表达或是否表达狭窄而在迅速发展。为了确定其他混淆变量可以解释性别偏向基因快速进化的范围,我根据组织特异的表达量度分析了果蝇和小家蝇中性别偏向基因的进化速率。我发现,在男女共有的体细胞组织中具有性别偏向性表达的基因通常比非性别偏向性基因进化得更快,但这可以通过性别偏向性基因的狭窄表达谱得到最好的解释。然而,D。melanogaster的性别受限组织中的性别偏向基因比其他狭窄表达的基因进化得更快。因此,性别偏向基因的快速进化只限于那些主要在性别受限的生殖组织中表达的基因。

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