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The genus Pseudovibrio contains metabolically versatile bacteria adapted for symbiosis

机译:假弧菌属含有适应共生的代谢功能广泛的细菌

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摘要

The majority of strains belonging to the genus Pseudovibrio have been isolated from marine invertebrates such as tunicates, corals and particularly sponges, but the physiology of these bacteria is poorly understood. In this study, we analyse for the first time the genomes of two Pseudovibrio strains – FO-BEG1 and JE062. The strain FO-BEG1 is a required symbiont of a cultivated Beggiatoa strain, a sulfide-oxidizing, autotrophic bacterium, which was initially isolated from a coral. Strain JE062 was isolated from a sponge. The presented data show that both strains are generalistic bacteria capable of importing and oxidizing a wide range of organic and inorganic compounds to meet their carbon, nitrogen, phosphorous and energy requirements under both, oxic and anoxic conditions. Several physiological traits encoded in the analysed genomes were verified in laboratory experiments with both isolates. Besides the versatile metabolic abilities of both Pseudovibrio strains, our study reveals a number of open reading frames and gene clusters in the genomes that seem to be involved in symbiont–host interactions. Both Pseudovibrio strains have the genomic potential to attach to host cells, interact with the eukaryotic cell machinery, produce secondary metabolites and supply the host with cofactors.
机译:已经从海生无脊椎动物,例如被膜,珊瑚和特别是海绵中分离出了假弧菌属的大多数菌株,但是对这些细菌的生理学知之甚少。在这项研究中,我们首次分析了两个假弧菌菌株FO-BEG1和JE062的基因组。 FO-BEG1菌株是培养的Beggiatoa菌株的必需共生体,Beggiatoa菌株是一种硫化物氧化的自养细菌,最初是从珊瑚中分离出来的。从海绵中分离出菌株JE062。所提供的数据表明,这两种菌株都是通用细菌,能够在有氧和无氧条件下输入并氧化多种有机和无机化合物,以满足其碳,氮,磷和能量的需求。在实验室实验中,两种分离物均验证了所分析基因组中编码的几种生理性状。除了这两种假弧菌菌株的通用代谢能力外,我们的研究还揭示了基因组中许多开放的阅读框和基因簇,它们似乎与共生体-宿主相互作用有关。两种假弧菌菌株均具有连接宿主细胞,与真核细胞机器相互作用,产生次级代谢产物并向宿主提供辅因子的基因组潜力。

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