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Fast Protein Evolution and Germ Line Expression of a Drosophila Parental Gene and Its Young Retroposed Paralog

机译:果蝇亲本基因及其年轻的后代旁系同源蛋白的快速蛋白质进化和生殖细胞系表达

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This is the first detailed study of the evolution, phylogenetic distribution, and transcription of one young retroposed gene, CG13732, and its parental gene CG15645, whose functions are unknown. CG13732 is a recognizable retroposed copy of CG15645 retaining the signals of this process. We name the parental gene Cervantes and the retrogene Quijote. To determine when this duplication occurred and the phylogenetic distribution of Quijote, we employed polymerase chain reaction, Southern blotting, and the available information on sequenced Drosophila genomes. Interestingly, these analyses revealed that Quijote is present only in 4 species of Drosophila (Drosophila melanogaster, Drosophila simulans, Drosophila sechellia, and Drosophila mauritiana) and that retroposed copies of Cervantes have also originated in the lineages leading to Drosophila yakuba and Drosophila erecta independently in the 3 instances. We name the new retrogene in the D. yakuba lineage Rocinante and the new retrogene in the D. erecta lineage Sancho. In this work, we present data on Quijote and its parental gene Cervantes. Polymorphism analysis of the derived gene and divergence data for both parental and derived genes were used to determine that both genes likely produce functional proteins and that they are changing at a fast rate (KA/KS ∼ 0.38). The negative value of H of Fay and Wu in the non-African sample reveals an excess of derived variants at high frequency. This could be explained either by positive selection in the region or by demographic effects. The comparative expression pattern shows that both genes express in the same adult tissues (male and female germ line) in D. melanogaster. Quijote is also expressed in male and female in D. simulans, D. sechellia, and D. mauritiana. We argue that the fast rate of evolution of these genes could be related to their putative germ line function and are further studying the independent recruitment of Cervantes-derived retrogenes in multiple lineages.
机译:这是首次详细研究一个年轻的逆转录基因CG13732及其亲本基因CG15645的进化,系统发育分布和转录,其功能未知。 CG13732是CG15645的可识别副本,保留了该过程的信号。我们将亲本基因命名为塞万提斯(Cervantes)和逆转录基因吉Qui德(Quijote)。为了确定何时发生这种重复以及吉jo德的系统发育分布,我们采用了聚合酶链反应,Southern印迹法以及果蝇基因组测序的可用信息。有趣的是,这些分析表明,吉jo德仅存在于4种果蝇中(果蝇,果蝇模拟,果蝇和毛果蝇),而塞万提斯的翻版副本也起源于导致果蝇雅库巴和直立果蝇的谱系。 3个实例。我们将D. yakuba血统Rocinante中的新逆转录基因命名为D. erecta血统Sancho。在这项工作中,我们提供有关Quijote及其亲本基因Cervantes的数据。通过对衍生基因的多态性分析以及亲本和衍生基因的差异数据来确定两个基因均可能产生功能性蛋白质,并且它们以快速速率变化(K A / K S 〜0.38)。非非洲样品中Fay和Wu的H的负值显示出高频衍生的变体过多。这可以通过对该地区的积极选择或人口统计效应来解释。比较表达模式显示两种基因在黑腹果蝇中的相同成年组织(雄性和雌性种系)中表达。 Quijote在D. simulans,D。sechellia和D. mauritiana中也以男性和女性表达。我们认为这些基因的快速进化可能与其推定的种系功能有关,并且正在进一步研究塞万提斯衍生的逆转录因子在多个谱系中的独立募集。

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