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首页> 外文期刊>Molecular biology and evolution >The Coevolutionary Period of Wolbachia pipientis Infecting Drosophila ananassae and Its Impact on the Evolution of the Host Germline Stem Cell Regulating Genes
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The Coevolutionary Period of Wolbachia pipientis Infecting Drosophila ananassae and Its Impact on the Evolution of the Host Germline Stem Cell Regulating Genes

机译:Wolbachia pipientis感染果蝇的共进化时期及其对宿主生殖系干细胞调控基因进化的影响。

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摘要

The endosymbiotic bacteria Wolbachia pipientis is known to infect a wide range of arthropod species yet less is known about the coevolutionary history it has with its hosts. Evidence of highly identical W. pipientis strains in evolutionary divergent hosts suggests horizontal transfer between hosts. For example, Drosophila ananassae is infected with a W. pipientis strain that is nearly identical in sequence to a strain that infects both D. simulans and O. suzukii, suggesting recent horizontal transferamong these three species. However, it is unknown whether the W. pipientis strain had recently invaded all three species or a more complex infectious dynamic underlies the horizontal transfers. Here, we have examined the coevolutionary history of D. ananassae and its resident W. pipientis to infer its period of infection. Phylogenetic analysis of 0. ananassae mitochondrial DNA and W. pipientis DNA sequence diversity revealed the current IV. pipientis infection is not recent. In addition, we examined the population genetics and molecular evolution of several germline stem cell (GSC) regulating genes of D. ananassae. These studies reveal significant evidence of recent and long-term positive selection at stonewall in D. ananassae, whereas pumillio showedpatterns of variation consistent with only recent positive selection. Previous studies had found evidence for adaptive evolution of two key germline differentiation genes, bag of marbles (bam) and benign gonial cell neoplasm (bgcn), in D. melanogaster and D. simulans and proposed that the adaptive evolution at these two genes was driven by arms race between the host GSC and W. pipientis. However, we did not find any statistical departures from a neutral model of evolution for bam and bgcn in D. ananassae despite our new evidence that this species has been infected with W. pipientis for a period longer than the most recent infection in D. melanogaster. In the end, analyzing the GSC regulating genes individually showed two of the seven genes to have evidence of selection. However, combining the data set and fitting a specific population genetic model significant proportion of the nonsynonymous sites across the GSC regulating genes were driven to fixation by positive selection. Clearly the GSC system isunder rapid evolution and potentially multiple drivers are causing the rapid evolution.
机译:内生共生细菌Wolbachia pipientis会感染多种节肢动物,但对其宿主的共同进化史知之甚少。在进化分歧宿主中高度一致的p。pipientis菌株的证据表明宿主之间水平转移。例如,果蝇被果蝇感染,其序列与感染D. simulans和铃木O. suzukii的菌株在序列上几乎相同,这表明这三个物种最近进行了水平转移。但是,尚不清楚p。pipientis菌株最近是否入侵了这三个物种,还是水平传播的基础是更复杂的传染动力学。在这里,我们检查了D. ananassae和其常驻W. pipientis的共同进化史,以推断其感染时期。对0. ananassae线粒体DNA和W. pipientis DNA序列多样性的系统发育分析揭示了当前的IV。 pipientis感染不是最近的。此外,我们检查了D. ananassae几个种系干细胞(GSC)调控基因的种群遗传学和分子进化。这些研究揭示了D.ananassae石墙近期和长期正选择的重要证据,而pumillio显示的变化模式仅与最近的正选择一致。先前的研究发现了在黑腹果蝇和拟南芥中两个关键种系分化基因自适应适应进化的证据,即大理石袋(bam)和良性角质细胞瘤(bgcn),并提出了驱动这两个基因的适应性进化由主办方GSC和W. pipientis之间的军备竞赛。然而,尽管我们有新的证据表明该物种已被p。pipientis感染的时间比最近的D. melanogaster感染的时间长,但我们没有发现与D. ananassae中bam和bgcn进化的中性模型有任何统计偏差。 。最后,单独分析GSC调控基因显示了七个基因中的两个具有选择的证据。但是,结合数据集并拟合特定的群体遗传模型,GSC调控基因中相当大比例的非同义位点被阳性选择驱使固定。显然,GSC系统正在快速发展之中,潜在的多种驱动因素正在导致快速发展。

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