首页> 外文OA文献 >Genome-Based Metabolic Reconstruction of a Novel Uncultivated Freshwater Magnetotactic coccus “Ca. Magnetaquicoccus inordinatus” UR-1, and Proposal of a Candidate Family “Ca. Magnetaquicoccaceae”
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Genome-Based Metabolic Reconstruction of a Novel Uncultivated Freshwater Magnetotactic coccus “Ca. Magnetaquicoccus inordinatus” UR-1, and Proposal of a Candidate Family “Ca. Magnetaquicoccaceae”

机译:基于基因组的新代谢重建新型野外淡水磁通胶囊“CA. Magnetaquicccus Inordinatus“UR-1,以及候选家庭的提议”。 Magnetaquicoccaceae“

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摘要

Magnetotactic bacteria are widely represented microorganisms that have the ability to synthesize magnetosomes. The magnetotactic cocci of the order Magnetococcales are the most frequently identified, but their classification remains unclear due to the low number of cultivated representatives. This paper reports the analysis of an uncultivated magnetotactic coccus UR-1 collected from the Uda River (in eastern Siberia). Genome analyses of this bacterium and comparison to the available Magnetococcales genomes identified a novel species called “Ca. Magnetaquicoccus inordinatus,” and a delineated candidate family “Ca. Magnetaquicoccaceae” within the order Magnetococcales is proposed. We used average amino acid identity values <55–56% and <64–65% as thresholds for the separation of families and genera, respectively, within the order Magnetococcales. Analyses of the genome sequence of UR-1 revealed a potential ability for a chemolithoautotrophic lifestyle, with the oxidation of a reduced sulfur compound and carbon assimilation by rTCA. A nearly complete magnetosome genome island, containing a set of mam and mms genes, was also identified. Further comparative analyses of the magnetosome genes showed vertical inheritance as well as horizontal gene transfer as the evolutionary drivers of magnetosome biomineralization genes in strains of the order Magnetococcales.
机译:磁通细菌是广泛代表的微生物,其具有合成磁性体的能力。磁能电磁器的磁通量COCCI是最常确定的,但由于培养代表数量较少,它们的分类仍然不明确。本文报告了从UDA河(东部西伯利亚东部)收集的未采用的磁通科COCCU UR-1分析。这种细菌的基因组分析并与可用的磁能电池基因组的比较鉴定了一种名为“CA.”的新种类。 Magnetaquicccus Inordinatus,“和一个划定的候选人家庭”Ca.提出了磁化能CACEAE“在订单磁力内。我们使用平均氨基酸同一性值<55-56%和<64-65%,分别在磁电池中分别分别分离家族和属的阈值。 UR-1基因组序列的分析揭示了较优养殖生活方式的潜在能力,通过RTCA的氧化还原硫化合物和碳同化氧化。还鉴定了含有一组MAM和MMS基因的近乎完全磁体基因岛。磁体基因的进一步对比分析显示垂直遗传以及水平基因转移作为磁体菌株菌株中磁体生物矿化基因的进化驱动器。

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