Chen Weidong, Wei Jie, Su Zhiguo, Wu Linwei, Liu Min, Huang Xiaoxuan, Yao Pengcheng, Wen Donghui
College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China.
College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China; School of Environment, Tsinghua University, Beijing 100084, China.
Environ Int. 2022 Oct;168:107486. doi: 10.1016/j.envint.2022.107486. Epub 2022 Aug 23.
Microbial communities are responsible for biological treatment of many industrial wastewater, but our knowledge of their diversity, assembly patterns, and function is still poor. Here, we analyzed the bacterial communities of wastewater and activated sludge samples taken from 11 full-scale industrial wastewater treatment plants (IWWTPs) characterized by the same process design but different wastewater types and WWTP compartments. We found significantly different diversity and compositions of bacterial assemblages among distinct wastewater types and IWWTPs compartments. IWWTPs bacterial communities exhibited a clear species abundance distribution. The dispersal-driven process was weak in shaping IWWTP communities. Meanwhile, environmental and operating conditions were important factors in regulating the structure of the activated sludge community and pollutants removal, indicating that bacterial community was largely driven by deterministic mechanisms. The core microbial community in IWWTPs was different from that in municipal wastewater treatment plants (MWWTPs), and many taxa (e.g. the genus Citreitalea) rarely were detected before, indicating IWWTPs harbored unique core bacterial communities. Furthermore, we found that bacterial community compositions were strongly linked to activated sludge function. These findings are important to both microbial ecologists and environmental engineers, who may optimize the operation strategies jointly for maintaining biodiversity, which in turn may promote a more stable performance of the IWWTP. Overall, our study enhances the mechanistic understanding of the IWWTP microbial community diversity, assembly patterns, and function, and provides important implications for microbial ecology and wastewater treatment processes.
微生物群落负责许多工业废水的生物处理,但我们对其多样性、组装模式和功能的了解仍然不足。在此,我们分析了从11个全规模工业废水处理厂(IWWTPs)采集的废水和活性污泥样本中的细菌群落,这些处理厂具有相同的工艺设计,但废水类型和污水处理厂隔室不同。我们发现不同废水类型和IWWTPs隔室之间细菌组合的多样性和组成存在显著差异。IWWTPs细菌群落呈现出明显的物种丰度分布。扩散驱动过程在塑造IWWTP群落方面作用较弱。同时,环境和运行条件是调节活性污泥群落结构和污染物去除的重要因素,这表明细菌群落很大程度上受确定性机制驱动。IWWTPs中的核心微生物群落与城市污水处理厂(MWWTPs)中的不同,许多分类群(如柠檬酸菌属)以前很少被检测到,这表明IWWTPs拥有独特的核心细菌群落。此外,我们发现细菌群落组成与活性污泥功能密切相关。这些发现对微生物生态学家和环境工程师都很重要,他们可以共同优化运行策略以维持生物多样性,进而可能促进IWWTP更稳定的性能。总体而言,我们的研究增强了对IWWTP微生物群落多样性、组装模式和功能的机理理解,并为微生物生态学和废水处理过程提供了重要启示。