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Genome analysis of Desulfotomaculum kuznetsovii strain 17T reveals a physiological similarity with Pelotomaculum thermopropionicum strain SIT

机译:Desulfotomaculum kuznetsovii菌株17T的基因组分析显示与Pelotomaculum thermopropionicum菌株SIT的生理相似性

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摘要

Desulfotomaculum kuznetsovii is a moderately thermophilic member of the polyphyletic spore-forming genus Desulfotomaculum in the family Peptococcaceae. This species is of interest because it originates from deep subsurface thermal mineral water at a depth of about 3,000 m. D. kuznetsovii is a rather versatile bacterium as it can grow with a large variety of organic substrates, including short-chain and long-chain fatty acids, which are degraded completely to carbon dioxide coupled to the reduction of sulfate. It can grow methylotrophically with methanol and sulfate and autotrophically with H2 + CO2 and sulfate. For growth it does not require any vitamins. Here, we describe the features of D. kuznetsovii together with the genome sequence and annotation. The chromosome has 3,601,386 bp organized in one contig. A total of 3,567 candidate protein-encoding genes and 58 RNA genes were identified. Genes of the acetyl-CoA pathway, possibly involved in heterotrophic growth with acetate and methanol, and in CO2 fixation during autotrophic growth are present. Genomic comparison revealed that D. kuznetsovii shows a high similarity with Pelotomaculum thermopropionicum. Genes involved in propionate metabolism of these two strains show a strong similarity. However, main differences are found in genes involved in the electron acceptor metabolism.
机译:Desulfotomaculum kuznetsovii是Peptococcaceae科中的多系孢子形成属Desulfotomaculum属中度嗜热成员。该物种之所以令人感兴趣,是因为它起源于深层地下热矿泉水,深度约为3,000 m。 D. kuznetsovii细菌是一种用途广泛的细菌,因为它可以与多种有机底物一起生长,包括短链和长链脂肪酸,这些底物会完全降解为二氧化碳,并减少硫酸盐的还原。它可以与甲醇和硫酸盐一起甲基营养生长,并与H2 + CO2和硫酸盐自营养生长。为了生长,它不需要任何维生素。在这里,我们描述了D. kuznetsovii的特征以及基因组序列和注释。该染色体在一个重叠群中组织了3,601,386 bp。总共鉴定了3567个候选蛋白质编码基因和58个RNA基因。存在乙酰-CoA途径的基因,其可能与乙酸和甲醇的异养生长有关,并且在自养生长期间参与CO 2固定。基因组比较显示D. kuznetsovii与热产Pelotomaculum thermopropionicum具有高度相似性。这两个菌株的丙酸代谢所涉及的基因显示出很强的相似性。然而,在涉及电子受体代谢的基因中发现了主要差异。

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