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Biogeography of the Sulfolobus islandicus pan-genome

机译:Sulfolobus islandicus泛基因组的生物地理学

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摘要

Variation in gene content has been hypothesized to be the primary mode of adaptive evolution in microorganisms; however, very little is known about the spatial and temporal distribution of variable genes. Through population-scale comparative genomics of 7 Sulfolobus islandicus genomes from 3 locations, we demonstrate the biogeographical structure of the pan-genome of this species, with no evidence of gene flow between geographically isolated populations. The evolutionary independence of each population allowed us to assess genome dynamics over very recent evolutionary time, beginning ≈910,000 years ago. On this time scale, genome variation largely consists of recent strain-specific integration of mobile elements. Localized sectors of parallel gene loss are identified; however, the balance between the gain and loss of genetic material suggests that 5. islandicus genomes acquire material slowly over time, primarily from closely related Sulfolobus species. Examination of the genome dynamics through population genomics in S. islandicus exposes the process of allopatric specia-tion in thermophilic Archaea and brings us closer to a generalized framework for understanding microbial genome evolution in a spatial context.
机译:基因含量的变化被认为是微生物适应性进化的主要模式。然而,对可变基因的时空分布知之甚少。通过来自3个地点的7个Sulfolobus islandicus基因组的种群规模比较基因组学,我们证明了该物种的泛基因组的生物地理结构,而没有证据表明地理上分离的种群之间存在基因流。每个种群的进化独立性使我们能够评估大约910,000年前的最近进化时期的基因组动力学。在这个时间尺度上,基因组变异主要由移动元件最近的菌株特异性整合组成。确定了平行基因丢失的局部区域;然而,遗传物质的得失之间的平衡表明5.岛上的基因组随着时间的流逝缓慢地获取物质,主要是从密切相关的Sulfolobus物种获得的。通过岛民链霉菌的种群基因组学对基因组动力学的研究揭示了嗜热古生菌中的异源物种形成过程,并使我们更接近于在空间背景下理解微生物基因组进化的通用框架。

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