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Candidatus Desulfofervidus auxilii, a hydrogenotrophic sulfate-reducing bacterium involved in the thermophilic anaerobic oxidation of methane

机译:Candidatus Desulfofervidus auxilii,一种参与甲醇嗜热厌氧氧化的氢营养型硫酸盐还原菌

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摘要

Abstract\ud\udThe anaerobic oxidation of methane (AOM) is mediated by consortia of anaerobic methane-oxidizing archaea (ANME) and their specific partner bacteria. In thermophilic AOM consortia enriched from Guaymas Basin, members of the ANME-1 clade are associated with bacteria of the HotSeep-1 cluster, which likely perform direct electron exchange via nanowires. The partner bacterium was enriched with hydrogen as sole electron donor and sulfate as electron acceptor. Based on phylogenetic, genomic and metabolic characteristics we propose to name this chemolithoautotrophic sulfate reducer Candidatus Desulfofervidus auxilii. Ca. D. auxilii grows on hydrogen at temperatures between 50°C and 70°C with an activity optimum at 60°C and doubling time of 4-6 days. Its genome draft encodes for canonical sulfate reduction, periplasmic and soluble hydrogenases and autotrophic carbon fixation via the reductive tricarboxylic acid cycle. The presence of genes for pili formation and cytochromes, and their similarity to genes of Geobacter spp., indicate a potential for syntrophic growth via direct interspecies electron transfer when the organism grows in consortia with ANME. This first ANME-free enrichment of an AOM partner bacterium and its characterization opens the perspective for a deeper understanding of syntrophy in anaerobic methane oxidation.
机译:摘要\ ud \ ud甲烷厌氧氧化(AOM)是由厌氧甲烷氧化古细菌(ANME)及其特定伴侣细菌组成的联合体介导的。在从瓜伊马斯盆地富集的嗜热AOM财团中,ANME-1进化枝的成员与HotSeep-1簇的细菌有关,它们可能通过纳米线进行直接电子交换。伴侣细菌富含作为唯一电子供体的氢和作为电子受体的硫酸盐。基于系统发育,基因组和代谢特征,我们建议将这种化石自养硫酸盐还原剂命名为Candidatus Desulfofervidus auxilii。钙D. auxilii在50°C至70°C的温度下在氢气中生长,在60°C时的最佳活性和4-6天的倍增时间。它的基因组草图编码通过还原性三羧酸循环进行规范的硫酸盐还原,周质和可溶性氢化酶以及自养碳固定。菌毛形成和细胞色素的基因的存在,以及它们与Geobacter spp。的基因的相似性,表明当该生物体与ANME一起在菌群中生长时,可能通过直接种间电子转移而导致菌体生长。这是AOM伴侣细菌的第一个无ANME富集及其表征,为深入了解厌氧甲烷氧化中的同养化开辟了前景。

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