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Stimulation of Methanotrophic Growth in Cocultures by Cobalamin Excreted by Rhizobia

机译:根瘤菌分泌的钴胺素刺激共培养物中的甲烷营养生长。

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Methanotrophs play a key role in the global carbon cycle, in which they affect methane emissions and help to sustain diverse microbial communities through the conversion of methane to organic compounds. To investigate the microbial interactions that cause positive effects on methanotrophs, cocultures were constructed using Methylovulum miyakonense HT12 and each of nine nonmethanotrophic bacteria, which were isolated from a methane-utilizing microbial consortium culture established from forest soil. Three rhizobial strains were found to strongly stimulate the growth and methane oxidation of M. miyakonense HT12 in cocultures. We purified the stimulating factor produced by Rhizobium sp. Rb122 and identified it as cobalamin. Growth stimulation by cobalamin was also observed for three other gammaproteobacterial methanotrophs. These results suggest that microbial interactions through cobalamin play an important role in methane oxidation in various ecosystems.
机译:甲烷营养菌在全球碳循环中起着关键作用,在其中影响甲烷的排放并通过将甲烷转化为有机化合物来帮助维持各种微生物群落。为了研究对甲烷氧化菌产生积极影响的微生物相互作用,使用了Miyakonulum miyakonense HT12和九种非甲烷氧化菌中的每一种,从森林土壤中建立的利用甲烷的微生物菌群培养物中分离出共培养物。在共培养中,发现了三种根瘤菌菌株强烈刺激了M. miyakonense HT12的生长和甲烷氧化。我们纯化了根瘤菌产生的刺激因子。 Rb122并将其鉴定为钴胺素。还观察到钴胺素对其他三种γ-变形细菌甲烷营养生物的生长刺激。这些结果表明,通过钴胺素的微生物相互作用在各种生态系统的甲烷氧化中起重要作用。

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