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Evolutionary Significance of Wolbachia-to-Animal Horizontal Gene Transfer: Female Sex Determination and the f Element in the Isopod Armadillidium vulgare

机译:沃尔巴克氏体向动物水平基因转移的进化意义:女性性别的确定和等足类犰狳的f元素

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摘要

An increasing number of horizontal gene transfer (HGT) events from bacteria to animals have been reported in the past years, many of which involve Wolbachia bacterial endosymbionts and their invertebrate hosts. Most transferred Wolbachia genes are neutrally-evolving fossils embedded in host genomes. A remarkable case of Wolbachia HGT for which a clear evolutionary significance has been demonstrated is the “f element”, a nuclear Wolbachia insert involved in female sex determination in the terrestrial isopod Armadillidium vulgare. The f element represents an instance of bacteria-to-animal HGT that has occurred so recently that it was possible to infer the donor (feminizing Wolbachia closely related to the wVulC Wolbachia strain of A. vulgare) and the mechanism of integration (a nearly complete genome inserted by micro-homology-mediated recombination). In this review, we summarize our current knowledge of the f element and discuss arising perspectives regarding female sex determination, unstable inheritance, population dynamics and the molecular evolution of the f element. Overall, the f element unifies three major areas in evolutionary biology: symbiosis, HGT and sex determination. Its characterization highlights the tremendous impact sex ratio distorters can have on the evolution of sex determination mechanisms and sex chromosomes in animals and plants.
机译:在过去的几年中,已经报道了越来越多的从细菌到动物的水平基因转移(HGT)事件,其中许多涉及Wolbachia细菌内共生菌及其无脊椎动物宿主。大多数转移的沃尔巴克氏体基因是嵌入宿主基因组中的中性进化化石。 Wolbachia HGT的一个杰出案例已被证明具有明显的进化意义,是“ f元素”,它是一种在地面等脚足类犰狳寻常型中确定女性性别的Wolbachia核插入物。 f元素代表了最近发生的细菌-动物HGT的一个实例,因此可以推断出供体(女性化的Wolbachia与A. vulgare的wVulC Wolbachia菌株密切相关)和整合机制(几乎完整)基因组通过微同源重组介导的重组插入)。在这篇综述中,我们总结了我们目前对f元素的了解,并讨论了关于女性性别决定,不稳定遗传,种群动态和f元素的分子进化的新观点。总的来说,f元素统一了进化生物学的三个主要领域:共生,HGT和性别决定。它的特征凸显了性别比例畸变者可能对动植物的性别决定机制和性染色体产生巨大影响。

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