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Genome Reduction in the Mosquito Symbiont Asaia

机译:亚洲蚊子共生体的基因组减少

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摘要

Symbiosis is now recognized as a driving force in evolution, a role that finds its ultimate expression in the variety of associations bonding insects with microbial symbionts. These associations have contributed to the evolutionary success of insects, with the hosts acquiring the capacity to exploit novel ecological niches, and the symbionts passing from facultative associations to obligate, mutualistic symbioses. In bacterial symbiont of insects, the transition from the free-living life style to mutualistic symbiosis often resulted in a reduction in the genome size, with the generation of the smallest bacterial genomes thus far described. Here, we show that the process of genome reduction is still occurring in Asaia, a group of bacterial symbionts associated with a variety of insects. Indeed, comparative genomics of Asaia isolated from different mosquito species revealed a substantial genome size and gene content reduction in Asaia from Anopheles darlingi, a South-American malaria vector. We thus propose Asaia as a novel model to study genome reduction dynamics, within a single bacterial taxon, evolving in a common biological niche.
机译:现在,共生被认为是进化的驱动力,这种作用在将昆虫与微生物共生体结合在一起的各种关联中得到最终表达。这些协会为昆虫的进化成功做出了贡献,宿主获得了开发新型生态位的能力,共生体从兼性协会转变为专心的,共生的共生体。在昆虫的细菌共生体中,从自由生活型向共生共生的过渡通常会导致基因组大小的减小,从而产生了迄今为止描述的最小的细菌基因组。在这里,我们显示了基因组减少的过程仍在Asaia中发生,Asaia是与各种昆虫相关的一组细菌共生体。确实,从不同蚊子物种中分离出的比较细小的亚细亚基因组学揭示了南美疟疾媒介Anopheles darlingi在亚细亚中的基因组大小和基因含量明显减少。因此,我们提出了Asaia作为研究单一细菌分类群中基因组减少动态的新模型,该进化以共同的生物生态位为基础。

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