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描述两个活性污泥系统中的群落动态和探索细菌组合。

Characterizing community dynamics and exploring bacterial assemblages in two activated sludge systems.

机构信息

College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, Guangdong, China.

Key Laboratory of Drinking Water Science and Technology, Research Centre for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.

出版信息

Appl Microbiol Biotechnol. 2020 Feb;104(4):1795-1808. doi: 10.1007/s00253-019-10279-2. Epub 2020 Jan 3.

Abstract

Bacterial communities in the activated sludge (AS) determine the wastewater treatment performance in the municipal wastewater treatment plants (WWTPs). Aiming at identifying the affecting factors and the variation patterns of the bacterial assemblages in AS, a 2-year time-series AS samples were collected from two separated WWTPs and metagenomic sequencing was conducted. Obvious seasonal shift and succession of the bacterial community were observed in both WWTPs on the genus and species levels, especially for the persistent taxa, implying that temperature was a decisive factor for maintaining bacterial assemblage patterns in long-term period. Taxa abundance distribution (TAD) concerning occurrence frequency and average abundance were found fitting for exponential formulations, and the approximately equal total abundance of persistent taxa suggested that stable and high abundance (~ 90%) of core functional bacterial groups would help to maintain wastewater treatment performance. Drastic changes of environmental factors were found causing temporally significant bacterial structure variation, while the innate correlations between bacterial species could recover the community gradually and maintain relative stability of the AS system. Delayed correlations between environmental factors and abundant (persistent or intermittent) bacterial species were observed widely, while synchronous biotic interactions were identified more frequently. Besides, bacterial species with similar functions were prone to cluster together and shared the same seasonal variation pattern, implicating that the cooperation of functional correlated taxa played the most dominant role in shaping the bacterial assemblages. Furthermore, rare bacterial groups were to be explored for removing emerging pollutants with lower concentrations. The results of this study would assist dealing with operational defect and optimize the treatment system in WWTPs.

摘要

活性污泥(AS)中的细菌群落决定了城市污水处理厂(WWTP)的污水处理性能。为了确定 AS 中细菌组合的影响因素和变化模式,从两个独立的 WWTP 中采集了为期 2 年的时间序列 AS 样本,并进行了宏基因组测序。在属和种水平上,两个 WWTP 中均观察到细菌群落明显的季节性转移和演替,尤其是持久性分类群,这表明温度是维持细菌组合模式的长期决定性因素。关于出现频率和平均丰度的分类群丰度分布(TAD)符合指数公式,并且稳定且高丰度(~90%)的核心功能细菌组的大约相等的总丰度有助于维持废水处理性能。发现环境因素的剧烈变化导致了暂时的细菌结构变化,而细菌种间的固有相关性可以逐渐恢复群落的稳定性,并维持 AS 系统的相对稳定性。广泛观察到环境因素与丰富(持久性或间歇性)细菌种之间存在延迟相关性,而同步的生物相互作用则更为频繁。此外,具有相似功能的细菌种往往聚集在一起,具有相同的季节性变化模式,这表明功能相关分类群的合作在塑造细菌组合方面起着最主要的作用。此外,还需要探索稀有细菌群来去除浓度较低的新兴污染物。本研究的结果将有助于处理 WWTP 中的运行缺陷并优化处理系统。

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