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Isolation of Key Methanogens for Global Methane Emission from Rice Paddy Fields: a Novel Isolate Affiliated with the Clone Cluster Rice Cluster I

机译:稻田全球甲烷排放关键产甲烷菌的分离:与克隆簇水稻簇I相关的新型分离株

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摘要

Despite the fact that rice paddy fields (RPFs) are contributing 10 to 25% of global methane emissions, the organisms responsible for methane production in RPFs have remained uncultivated and thus uncharacterized. Here we report the isolation of a methanogen (strain SANAE) belonging to an abundant and ubiquitous group of methanogens called rice cluster I (RC-I) previously identified as an ecologically important microbial component via culture-independent analyses. To enrich the RC-I methanogens from rice paddy samples, we attempted to mimic the in situ conditions of RC-I on the basis of the idea that methanogens in such ecosystems should thrive by receiving low concentrations of substrate (H2) continuously provided by heterotrophic H2-producing bacteria. For this purpose, we developed a coculture method using an indirect substrate (propionate) in defined medium and a propionate-oxidizing, H2-producing syntroph, Syntrophobacter fumaroxidans, as the H2 supplier. By doing so, we significantly enriched the RC-I methanogens and eventually obtained a methanogen within the RC-I group in pure culture. This is the first report on the isolation of a methanogen within RC-I.
机译:尽管稻田(RPF)贡献了全球甲烷排放量的10%到25%,但负责RPF甲烷生产的生物仍未耕种,因此没有特征。在这里,我们报告了一种甲烷菌素(SANAE菌株)的分离,该菌素属于称为水稻簇I(RC-I)的大量广泛存在的甲烷菌素,以前已通过与文化无关的分析将其鉴定为具有生态学意义的重要微生物成分。为了从稻田样品中富集RC-1产甲烷菌,我们试图模仿RC-1的原位条件,即在这样的生态系统中产甲烷菌应通过接受异养持续提供的低浓度底物(H2)来2壮成长。产生H2的细菌。为此,我们开发了一种共培养方法,该方法使用间接基质(丙酸酯)在定义的培养基中,并使用丙酸酯氧化的产生H2的同养菌富氧氧化梭菌作为H2供应商。通过这样做,我们显着丰富了RC-1产甲烷菌,并最终在纯培养物中在RC-1组内获得了产甲烷菌。这是关于RC-1中甲烷源分离的第一份报告。

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