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Authors Yuan

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Yuan, Zhiguo


Publications
15

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CitationNamesAbstract
Different clusters of Candidatus ‘Methanoperedens nitroreducens’-like archaea as revealed by high-throughput sequencing with new primers Xu et al. (2018). Scientific Reports 8 (1)
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Anaerobic oxidation of methane coupled to nitrate reduction in a novel archaeal lineage Haroon et al. (2013). Nature 500 (7464) Ca. Methanoperedens nitroreducens Ca. Methanoperedens Ca. Methanoperedenaceae
Selectively inducing the synthesis of a key structural exopolysaccharide in aerobic granules by enriching for Candidatus “Competibacter phosphatis” Seviour et al. (2011). Applied Microbiology and Biotechnology 92 (6)
Endogenous metabolism of Candidatus Accumulibacter phosphatis under various starvation conditions Lu et al. (2007). Water Research 41 (20) “Accumulibacter phosphatis”
Obtaining highly enriched cultures of Candidatus Accumulibacter phosphates through alternating carbon sources Lu et al. (2006). Water Research 40 (20) “Accumulibacter”
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Different clusters of Candidatus ‘Methanoperedens nitroreducens’-like archaea as revealed by high-throughput sequencing with new primers
AbstractThe newly discoveredCandidatus‘Methanoperedens nitroreducens’ (M.nitroreducens), mediating nitrate-dependent anaerobic oxidation of methane, is an important microorganism in linking carbon and nitrogen cycles. In order to explore the diversity ofM.nitroreducens-like archaea in various environmental niches with advanced high-throughput sequencing, new primers based on alpha subunit of methyl-coenzyme M reductase gene were designed. The PCR results demonstrated that the new primers could effectively detectM.nitroreducens-like archaea from an enrichment culture dominated byM.nitroreducensas well as samples collected from a natural freshwater lake and a full-scale wastewater treatment plant (WWTP). By high-throughput sequencing, more than 30,000M.nitroreducens-like sequences were obtained. Phylogenetic analysis of these sequences along with published sequences showed thatM.nitroreducens-like archaea could be divided into three sub-branches (named as Group A, Group B and Group C in this study). Clear geographical difference was observed, with Group A and Group B dominating samples in Queensland (Australia) and in European ecosystems, respectively. Further quantitative PCR revealed that theM.nitroreducens-like archaea were more abundant in WWTP than the freshwater lake. The study provided a large number of sequences forM.nitroreducens-like archaeal communities, thus expanded our understanding on the ecological diversity ofM.nitroreducens-like archaea.
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