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Evolutionary analysis of a streamlined lineage of surface ocean Roseobacters

机译:流线型海洋表层玫瑰细菌的进化分析

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摘要

The vast majority of surface ocean bacteria are uncultivated. Compared with their cultured relatives, they frequently exhibit a streamlined genome, reduced G+C content and distinct gene repertoire. These genomic traits are relevant to environmental adaptation, and have generally been thought to become fixed in marine bacterial populations through selection. Using single-cell genomics, we sequenced four uncultivated cells affiliated with the ecologically relevant Roseobacter clade and used a composition-heterogeneous Bayesian phylogenomic model to resolve these single-cell genomes into a new clade. This lineage has no representatives in culture, yet accounts for ∼35% of Roseobacters in some surface ocean waters. Analyses of multiple genomic traits, including genome size, G+C content and percentage of noncoding DNA, suggest that these single cells are representative of oceanic Roseobacters but divergent from isolates. Population genetic analyses showed that substitution of physicochemically dissimilar amino acids and replacement of G+C-rich to G+C-poor codons are accelerated in the uncultivated clade, processes that are explained equally well by genetic drift as by the more frequently invoked explanation of natural selection. The relative importance of drift vs selection in this clade, and perhaps in other marine bacterial clades with streamlined G+C-poor genomes, remains unresolved until more evidence is accumulated.
机译:绝大多数表层海洋细菌是未经培养的。与他们培养的亲戚相比,他们经常表现出简化的基因组,降低的G + C含量和独特的基因库。这些基因组特征与环境适应有关,并且通常被认为通过选择而固定在海洋细菌种群中。使用单细胞基因组学,我们对与生态相关的玫瑰杆菌属相关的四个未培养细胞进行了测序,并使用组成异质的贝叶斯系统学模型将这些单细胞基因组解析为新的进化枝。该血统在文化上没有代表,但在某些表层海水中约占玫瑰红细菌的35%。对多种基因组性状的分析,包括基因组大小,G + C含量和非编码DNA的百分比,表明这些单细胞代表了海洋玫瑰红细菌,但与分离株有所不同。群体遗传学分析表明,在未培养的进化枝中,物理化学不同的氨基酸的取代和富含G + C的密码子的富G + C置换得到了加速。自然选择。在此进化枝中,也许在其他流线化的G + C贫乏基因组的海洋细菌进化枝中,漂移与选择之间的相对重要性尚未得到解决,直到积累了更多的证据为止。

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