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Simultaneous enrichment of denitrifying methanotrophs and anammox bacteria

机译:同时富集反硝化甲烷氧化菌和厌氧氨氧化菌

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Interaction between denitrifying anaerobic methane oxidation (DAMO) and anaerobic ammonium oxidation (anammox) processes may play an important role in global carbon and nitrogen cycles. In this study, a coculture of denitrifying methanotrophs (DAMO archaea and DAMO bacteria) and anammox bacteria, initially sourced from the environment, was enriched with a supply of methane, nitrate, and ammonium. After a 4.5-month enrichment, simultaneous oxidation of methane and ammonium and reduction of nitrate were observed. The highest rate of nitrate reduction in the suspended DAMO culture was 4.84 mmol/L/day, and simultaneously, the highest ammonium removal rate was 4.07 mmol/L/day. Fluorescence in situ hybridization and analysis of 16S rRNA gene clone libraries revealed the coexistence of DAMO archaea, DAMO bacteria, and anammox bacteria. The development of anammox bacteria might reduce the enrichment time of DAMO microorganisms and promote the activity of DAMO archaea. The activity of the reactor fluctuated during the long-term operation, which might be caused by the formation of microbial clusters whereby DAMO archaea grew in aggregates that were surrounded by anammox and DAMO bacteria. This study is the first to demonstrate that it is feasible to establish a coculture of DAMO archaea, DAMO bacteria, and anammox bacteria from environmental inocula.
机译:反硝化厌氧甲烷氧化(DAMO)和厌氧铵氧化(anammox)过程之间的相互作用可能在全球碳和氮循环中起重要作用。在这项研究中,反硝化甲烷氧化菌(DAMO古细菌和DAMO细菌)和厌氧氨氧化菌的共培养最初来自环境,富含甲烷,硝酸盐和铵。浓缩4.5个月后,观察到甲烷和铵的同时氧化和硝酸盐的还原。悬浮DAMO培养物中硝酸盐还原的最高速率为4.84 mmol / L / day,同时,氨的最高去除速率为4.07 mmol / L / day。荧光原位杂交和16S rRNA基因克隆文库的分析揭示了DAMO古细菌,DAMO细菌和厌氧细菌的共存。厌氧菌的发展可能会减少DAMO微生物的富集时间,并促进DAMO古细菌的活性。在长期运行过程中,反应器的活性会发生波动,这可能是由于形成了微生物簇而引起的,DAMO古细菌生长在聚集了厌氧菌和DAMO细菌的聚集体中。这项研究首次证明从环境接种物中建立DAMO古细菌,DAMO细菌和厌氧氨氧化菌的共培养是可行的。

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