Drosophila sperm proteome evolution: Insights from comparative genomic approaches.

Spermatogenesis Pub Date : 2012-07-01 DOI:10.4161/spmg.21748
Elaine C Rettie, Steve Dorus
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引用次数: 11

Abstract

Despite their conserved functional role in sexually reproducing organisms, spermatozoa are a diverse and rapidly evolving cell type. This phenomenon is largely attributed to sexual selection in polygamous species where sperm from multiple males compete to fertilize a limited number of oocytes. Drosophila have proven to be a particularly informative model system for the study of spermatogenesis and in this review we discuss how the characterization of the Drosophila melanogaster sperm proteome has advanced our understanding of the evolutionary genomics of sperm form and function. We summarize the molecular evolutionary characteristics of sperm genes and highlight recent evidence demonstrating the importance of novel gene creation in the evolution of sperm function and competitive ability. Comparative proteomic evidence is also provided, supporting an overall functional conservation between the Drosophila and mouse sperm proteomes. This analysis reveals a diverse repertoire of proteins functioning in proteolytic pathways, as well as the presence of proteins of the complement and innate immunity systems. We propose that these pathways may have functional relevance to post-mating female immunological responses as well as coevolved interactions with pathways expressed in the female reproductive tract, including those involved in sperm-oocyte recognition and fertilization.

Abstract Image

Abstract Image

果蝇精子蛋白质组进化:来自比较基因组方法的见解。
尽管精子在有性生殖生物中具有保守的功能作用,但精子是一种多样化且快速进化的细胞类型。这种现象在很大程度上归因于一夫多妻物种的性选择,即来自多个雄性的精子竞争使有限数量的卵母细胞受精。果蝇已经被证明是研究精子发生的一个特别有用的模型系统,在这篇综述中,我们讨论了果蝇黑腹精子蛋白质组的特征如何促进我们对精子形态和功能的进化基因组学的理解。我们总结了精子基因的分子进化特征,并重点介绍了最近证明新基因创造在精子功能和竞争能力进化中的重要性的证据。还提供了比较蛋白质组学的证据,支持果蝇和小鼠精子蛋白质组之间的整体功能守恒。这一分析揭示了多种蛋白质在蛋白质水解途径中的功能,以及补体和先天免疫系统中蛋白质的存在。我们认为这些通路可能与雌性交配后的免疫反应以及与雌性生殖道中表达的通路(包括参与精子-卵母细胞识别和受精的通路)共同进化的相互作用有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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