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首页> 外文期刊>Environmental microbiology >Comparative genomics of the marine bacterial genus Glaciecola reveals the high degree of genomic diversity and genomic characteristic for cold adaptation
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Comparative genomics of the marine bacterial genus Glaciecola reveals the high degree of genomic diversity and genomic characteristic for cold adaptation

机译:海洋细菌属Glaciecola的比较基因组学揭示了高度的基因组多样性和冷适应的基因组特征

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摘要

To what extent the genomes of different species belonging to one genus can be diverse and the relationship between genomic differentiation and environmental factor remain unclear for oceanic bacteria. With many new bacterial genera and species being isolated from marine environments, this question warrants attention. In this study, we sequenced all the type strains of the published species of Glaciecola, a recently defined cold-adapted genus with species from diverse marine locations, to study the genomic diversity and cold-adaptation strategy in this genus. The genome size diverged widely from 3.08 to 5.96 Mb, which can be explained by massive gene gain and loss events. Horizontal gene transfer and new gene emergence contributed substantially to the genome size expansion. The genus Glaciecola had an open pan-genome. Comparative genomic research indicated that species of the genus Glaciecola had high diversity in genome size, gene content and genetic relatedness. This may be prevalent in marine bacterial genera considering the dynamic and complex environments of the ocean. Species of Glaciecola had some common genomic features related to cold adaptation, which enable them to thrive and play a role in biogeochemical cycle in the cold marine environments.
机译:属于一个属的不同物种的基因组在多大程度上可以多样化,并且对于海洋细菌而言,基因组分化和环境因素之间的关系仍然不清楚。随着许多新细菌属和物种与海洋环境隔离,这个问题值得关注。在这项研究中,我们对最近定义的冷适应种Glaciecola的所有类型菌株与来自不同海洋位置的物种进行了测序,以研究该属的基因组多样性和冷适应策略。基因组大小从3.08 Mb宽泛到5.96 Mb,差异很大,这可以用大量的基因获取和丢失事件来解释。水平基因转移和新基因的出现大大促进了基因组大小的扩展。 Glaciecola属有一个开放的泛基因组。比较基因组学研究表明,Glaciecola属的物种在基因组大小,基因含量和遗传相关性方面具有很高的多样性。考虑到海洋的动态和复杂环境,这在海洋细菌属中可能很普遍。 Glaciecola物种具有与寒冷适应相关的一些常见基因组特征,这使它们能够在寒冷海洋环境中ive壮成长并在生物地球化学循环中发挥作用。

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