首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Recombination confounds interpretations of Wolbachia evolution.
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Recombination confounds interpretations of Wolbachia evolution.

机译:重组混淆了Wolbachia进化的解释。

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摘要

Wolbachia are vertically transmitted bacteria known from arthropods and nematode worms, which are maintained in host populations because they either physiologically benefit infected individuals or parasitically manipulate their reproduction. The different manipulation phenotypes are scattered across the Wolbachia phylogeny, suggesting that there have been multiple evolutions of similar phenotypes. This conclusion relies on the assumption of an absence of recombination between bacterial strains, so that the gene used to reconstruct the phylogeny reflects the evolutionary history of the genes involved in the trait. We tested for recombination by reconstructing the phylogeny of two Wolbachia genes from seven B-subdivision strains. The two genes produced mutually incompatible topologies, indicating that these lineages are subject to genetic recombination. This means that many evolutionary patterns inferred from Wolbachia phylogenies must be re-evaluated. Furthermore, recombination may be an important feature both in the evolution of the manipulation phenotypes and avoidance of Müller's ratchet. Finally, we discuss the implications of recombination for attempts to genetically engineer Wolbachia for use in the control of crop pests and human pathogens.
机译:沃尔巴氏菌是节肢动物和线虫蠕虫中已知的垂直传播细菌,它们保留在宿主种群中,因为它们在生理上使受感染的个体受益或寄生地控制其繁殖。不同的操作表型散布在整个沃尔巴克氏族系统发育中,这表明相似表型已有多种进化。该结论基于细菌菌株之间不存在重组的假设,因此用于重建系统发育的基因反映了涉及该性状的基因的进化历史。我们通过从七个B细分菌株中重建两个Wolbachia基因的系统发育来测试重组。这两个基因产生相互不兼容的拓扑结构,表明这些谱系经历了基因重组。这意味着必须重新评估从Wolbachia系统发育推断出的许多进化模式。此外,重组可能是操纵表型演变和避免Müller棘轮的重要特征。最后,我们讨论了重组对尝试遗传改造沃尔巴赫氏菌以控制农作物害虫和人类病原体的意义。

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