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首页> 外文期刊>Molecular Biology and Evolution >Comparative Proteomics Reveals Evidence for Evolutionary Diversification of Rodent Seminal Fluid and Its Functional Significance in Sperm Competition
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Comparative Proteomics Reveals Evidence for Evolutionary Diversification of Rodent Seminal Fluid and Its Functional Significance in Sperm Competition

机译:比较蛋白质组学揭示了啮齿动物精液进化多样化的证据及其在精子竞争中的功能意义

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During insemination, males of internally fertilizing species transfer a complex array of seminal fluid proteins to the female reproductive tract. These proteins can have profound effects on female reproductive physiology and behavior and are thought to mediate postcopulatory sexual selection and intersexual conflict. Such selection may cause seminal fluid to evolve rapidly, with potentially important consequences for speciation. Here we investigate the evolution of seminal fluid proteins in a major mammalian radiation, the muroid rodents, by quantifying diversity in seminal fluid proteome composition for the first time across a broad range of closely related species. Using comparative proteomics techniques to identify and cross-match proteins, we demonstrate that rodent seminal fluid is highly diverse at the level of both proteomes and individual proteins. The striking interspecific heterogeneity in seminal fluid composition revealed by our survey far exceeds that seen in a second proteome of comparable complexity, skeletal muscle, indicating that the complement of proteins expressed in seminal fluid may be subject to rapid diversification. We further show that orthologous seminal fluid proteins exhibit substantial interspecific variation in molecular mass. Because this variation cannot be attributed to differential glycosylation or radical differences in termination sites, it is strongly suggestive of rapid amino acid divergence. Sperm competition is implicated in generating such divergence for at least one major seminal fluid protein in our study, SVS II, which is responsible for copulatory plug formation via transglutaminase-catalyzed cross-linking after insemination. We show that the molecular mass of SVS II is positively correlated with relative testis size across species, which could be explained by selection for an increased number of cross-linking sites involved in the formation of the copulatory plug under sperm competition.
机译:在授精过程中,内部受精物种的雄性将复杂的精液蛋白转移到雌性生殖道。这些蛋白质可对女性生殖生理和行为产生深远影响,并被认为可介导交配后的性选择和两性冲突。这样的选择可能会导致精液迅速进化,对物种形成具有潜在的重要影响。在这里,我们通过在广泛的密切相关物种中首次量化精液蛋白质组组成的多样性,调查了主要哺乳动物辐射,鼠类啮齿动物中精液蛋白质的进化。使用比较蛋白质组学技术来识别和交叉匹配蛋白质,我们证明了啮齿动物的精液在蛋白质组和单个蛋白质的水平上是高度多样化的。我们的调查显示,精液成分之间惊人的种间异质性远远超过了具有类似复杂性的第二个蛋白质组中的骨骼肌,这表明精液中表达的蛋白质补体可能会迅速多样化。我们进一步显示直系同源的精液蛋白在分子量上显示出种间差异。由于这种差异不能归因于差异糖基化或终止位点的自由基差异,因此强烈提示氨基酸快速差异。在我们的研究中,精子竞争与至少一种主要的精液蛋白质SVS II产生这种差异有关,SVS II负责授精后通过转谷氨酰胺酶催化的交联形成交配栓。我们显示,SVS II的分子量与跨物种的相对睾丸大小呈正相关,这可以通过选择参与精子竞争下交配栓形成的交联点数量增加来解释。

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