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Evolutionary Expressed Sequence Tag Analysis of Drosophila Female Reproductive Tracts Identifies Genes Subjected to Positive Selection

机译:果蝇雌性生殖道的进化表达的序列标签分析确定了正选择的基因。

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摘要

Genes whose products are involved in reproduction include some of the fastest-evolving genes found within the genomes of several organisms. Drosophila has long been used to study the function and evolutionary dynamics of genes thought to be involved in sperm competition and sexual conflict, two processes that have been hypothesized to drive the adaptive evolution of reproductive molecules. Several seminal fluid proteins (Acps) made in the Drosophila male reproductive tract show evidence of rapid adaptive evolution. To identify candidate genes in the female reproductive tract that may be involved in female–male interactions and that may thus have been subjected to adaptive evolution, we used an evolutionary bioinformatics approach to analyze sequences from a cDNA library that we have generated from Drosophila female reproductive tracts. We further demonstrate that several of these genes have been subjected to positive selection. Their expression in female reproductive tracts, presence of signal sequences/transmembrane domains, and rapid adaptive evolution indicate that they are prime candidates to encode female reproductive molecules that interact with rapidly evolving male Acps.
机译:其产物参与生殖的基因包括在几种生物的基因组中发现的一些发展最快的基因。果蝇长期以来一直用于研究被认为与精子竞争和性冲突有关的基因的功能和进化动力学,这被认为是两个驱动生殖分子适应性进化的过程。果蝇雄性生殖道中产生的几种精液蛋白(Acps)显示出快速适应性进化的证据。为了鉴定雌性生殖道中可能参与雌性-雄性相互作用并因此经历了适应性进化的候选基因,我们使用了一种进化生物信息学方法来分析我们从果蝇雌性生殖产生的cDNA文库中获得的序列。大片。我们进一步证明了这些基因中的几个已经进行了正选择。它们在雌性生殖道中的表达,信号序列/跨膜结构域的存在以及快速的适应性进化表明它们是编码与快速进化的雄性Acps相互作用的雌性生殖分子的主要候选对象。

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