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实验室规模反硝化除磷反应器中污泥微生物群落的宏基因组分析

Metagenomic analysis of the sludge microbial community in a lab-scale denitrifying phosphorus removal reactor.

作者信息

Lv Xiao-Mei, Shao Ming-Fei, Li Ji, Li Chao-Lin

机构信息

Harbin Institute of Technology Shenzhen Graduate School, Shenzhen, Guangdong, 518055, China.

出版信息

Appl Biochem Biotechnol. 2015 Apr;175(7):3258-70. doi: 10.1007/s12010-015-1491-8. Epub 2015 Feb 10.

Abstract

Denitrifying phosphorus removal is an attractive wastewater treatment process due to its reduced carbon source demand and sludge minimization potential. In the present study, the metagenome of denitrifying phosphorus removal sludge from a lab-scale anaerobic-anoxic SBR was generated by Illumina sequencing to study the microbial community. Compared with the aerobic phosphorus removal sludge, the denitrifying phosphorus removal sludge demonstrated quite similar microbial community profile and microbial diversity with sludge from Aalborg East EBPR WWTP. Proteobacteria was the most dominant phylum; within Proteobacteria, β-Proteobacteria was the most dominant class, followed by α-, γ-, δ-, and ε-Proteobacteria. The genes involved in phosphate metabolism and biofilm formation reflected the selective pressure of the phosphorus removal process. Moreover, ppk sequence from DPAO was outside the Accumulibacter clusters, which suggested different core phosphorus removal bacteria in denitrifying and aerobic phosphorus removal systems. In a summary, putative DPAO might be a novel genus that is closely related between Accumulibacter and Dechloromonas within Rhodocyclus. The microbial community and metabolic profiles achieved in this study will eventually help to improve the understanding of key microorganisms and the entire community in order to improve the phosphorus removal efficiency of EBPR processes.

摘要

反硝化除磷是一种具有吸引力的废水处理工艺,因为它对碳源的需求减少且具有使污泥产量最小化的潜力。在本研究中,通过Illumina测序生成了来自实验室规模厌氧 - 缺氧序批式反应器(SBR)的反硝化除磷污泥的宏基因组,以研究微生物群落。与好氧除磷污泥相比,反硝化除磷污泥表现出与奥尔堡东强化生物除磷(EBPR)污水处理厂的污泥非常相似的微生物群落概况和微生物多样性。变形菌门是最主要的菌门;在变形菌门中,β - 变形菌纲是最主要的纲,其次是α -、γ -、δ - 和ε - 变形菌纲。参与磷代谢和生物膜形成的基因反映了除磷过程的选择压力。此外,反硝化聚磷菌(DPAO)的ppk序列不在聚磷菌属(Accumulibacter)簇内,这表明反硝化和好氧除磷系统中的核心除磷细菌不同。总之,推测的反硝化聚磷菌可能是一个与红环菌属(Rhodocyclus)内的聚磷菌属和脱氯单胞菌属密切相关的新属。本研究中获得的微生物群落和代谢概况最终将有助于增进对关键微生物和整个群落的理解,从而提高强化生物除磷工艺的除磷效率。

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