A laboratory investigation of interactions between denitrifying anaerobic methane oxidation (DAMO) and anammox processes in anoxic environments

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作者
Shihu Hu
Raymond J. Zeng
Mohamed F. Haroon
Jurg Keller
Paul A. Lant
Gene W. Tyson
Zhiguo Yuan
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[1] The University of Queensland,Advanced Water Management Centre (AWMC)
[2] University of Science & Technology of China,Department of Chemistry
[3] Australian Centre for Ecogenomics,School of Chemical Engineering
[4] The University of Queensland,undefined
[5] The University of Queensland,undefined
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This study investigates interactions between recently identified denitrifying anaerobic methane oxidation (DAMO) and anaerobic ammonium oxidation (anammox) processes in controlled anoxic laboratory reactors. Two reactors were seeded with the same inocula containing DAMO organisms Candidatus Methanoperedens nitroreducens and Candidatus Methylomirabilis oxyfera and anammox organism Candidatus Kuenenia stuttgartiensis. Both were fed with ammonium and methane, but one was also fed with nitrate and the other with nitrite, providing anoxic environments with different electron acceptors. After steady state reached in several months, the DAMO process became solely/primarily responsible for nitrate reduction while the anammox process became solely responsible for nitrite reduction in both reactors. 16S rRNA gene amplicon sequencing showed that the nitrate-driven DAMO organism M. nitroreducens dominated both the nitrate-fed (~70%) and the nitrite-fed (~26%) reactors, while the nitrite-driven DAMO organism M. oxyfera disappeared in both communities. The elimination of M. oxyfera from both reactors was likely the results of this organism being outcompeted by anammox bacteria for nitrite. K.stuttgartiensis was detected at relatively low levels (1–3%) in both reactors.
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