National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Department of Environmental Engineering, Beijing University of Technology, Beijing 100124, China.
National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Department of Environmental Engineering, Beijing University of Technology, Beijing 100124, China.
J Environ Sci (China). 2018 May;67:237-248. doi: 10.1016/j.jes.2017.09.001. Epub 2017 Sep 14.
Candidatus Accumulibacter has been identified as dominant polyphosphate-accumulating organisms (PAOs) in enhanced biological phosphorus (P) removal (EBPR) from wastewater. This study revealed the relevance of community structure, abundance and seasonal population dynamics of Candidatus Accumulibacter to process operation of wastewater treatment plants (WWTPs) in China using ppk1 gene as phylogenetic marker. All sludge samples had properties of denitrifying P removal using nitrate as an electron acceptor. Accumulibacter abundance in the anaerobic-anoxic-oxic (AO) process was the highest (26% of total bacteria), and higher in winter than in summer with a better EBPR performance. Type-II was the dominant Accumulibacter in all processes, and type-I accounted for a small proportion of total Accumulibacter. The abundance of Clade-IIC as the most dominant clade reached 2.59×10 cells/g MLSS and accounted for 87.3% of total Accumulibacter. Clade IIC mainly contributed to denitrifying P removal. Clades IIA, IIC and IID were found in all processes, while clade-IIF was only found in oxidation ditch process through phylogenetic analysis. High proportion of clade IID to total Accumulibacter led to poor performance of aerobic P-uptake in inverted AO process. Therefore, Accumulibacter clades in WWTPs were diverse, and EBPR performance was closely related to the clade-level community structures and abundances of Accumulibacter.
钙磷累积菌(Candidatus Accumulibacter)已被鉴定为强化生物除磷(EBPR)过程中聚磷酸盐积累菌(PAOs)的优势菌。本研究以 ppk1 基因为分子标记,揭示了中国污水厂处理工艺运行过程中,Candidatus Accumulibacter 的群落结构、丰度和季节种群动态与污水厂运行的相关性。所有污泥样品均具有以硝酸盐作为电子受体进行反硝化除磷的特性。厌氧-缺氧-好氧(AO)工艺中 Accumulibacter 的丰度最高(占总细菌的 26%),且冬季高于夏季,具有更好的 EBPR 性能。所有过程中均以 Accumulibacter Ⅱ型为主导,而Ⅰ型仅占总 Accumulibacter 的一小部分。最主要的 Clade-IIC 丰度达到 2.59×10 cells/g MLSS,占总 Accumulibacter 的 87.3%。Clade IIC 主要贡献反硝化除磷。通过系统发育分析发现,Clade IIC、IIA 和 IID 存在于所有过程中,而 Clade-IIF 仅存在于氧化沟工艺中。Clade IID 占总 Accumulibacter 的比例较高,导致倒置 AO 工艺中好氧吸磷性能较差。因此,污水厂中的 Accumulibacter 具有多样性,EBPR 性能与 Accumulibacter 的群落结构和丰度密切相关。