Hunan Province Key Laboratory of Pollution Control and Resources Reuse Technology, University of South China, Hengyang 421001, China.
State Key Laboratory of Urban Water Resources and Environment, Harbin Institute of Technology, Harbin 150090, China.
Int J Environ Res Public Health. 2022 May 27;19(11):6529. doi: 10.3390/ijerph19116529.
Water pollution caused by heavy metals (HMs) poses a serious risk to human health and the environment and can increase the risk of diabetes, cancer, and hypertension in particular. In this study, two full-scale wastewater treatment plants (WWTPs) in industrial zones in southern China were selected to analyze the microbial community structure, diversity, similarity, and differentiation in the anoxic/oxic (AO) and anoxic/oxic membrane bioreactor (AO-MBR) units under the stress of HMs. High-throughput sequencing showed that microbial diversity and abundance were higher in the AO process than in the AO-MBR process. In the two WWTPs, the common dominant phyla were Proteobacteria and Bacteroidetes, while the common dominant genera were Gemmatimonadaceae, Anaerolineaceae, Saprospiraceae, and Terrimonas. Manganese (Mn) and zinc (Zn) positively correlated with Saccharimonadales, Nakamurella, Micrococcales, and Microtrichales, whereas copper (Cu) and iron (Fe) positively correlated with Longilinea and Ferruginibacter. Additionally, the relative abundances of Chloroflexi, Patescibacteria, and Firmicutes differed significantly (p < 0.05) between the two processes. These results may provide comprehensive outlooks on the characterization of microbial communities in WWTPs, which could also help to reduce the potential environmental risks of the effluent from WWTPs located in industrial zones.
重金属(HMs)造成的水污染对人类健康和环境构成严重威胁,特别是会增加糖尿病、癌症和高血压的风险。本研究选取了中国南方工业区的两座全规模污水处理厂(WWTP),分析了在 HMs 胁迫下缺氧/好氧(AO)和缺氧/好氧膜生物反应器(AO-MBR)单元中微生物群落结构、多样性、相似性和分化。高通量测序表明,AO 工艺中的微生物多样性和丰度高于 AO-MBR 工艺。在两座 WWTP 中,常见的优势菌门为变形菌门和拟杆菌门,常见的优势菌属为芽单胞菌科、厌氧绳菌科、螺旋体科和地杆菌属。锰(Mn)和锌(Zn)与 Saccharimonadales、Nakamurella、微球菌科和微毛单胞菌科呈正相关,而铜(Cu)和铁(Fe)与长杆菌属和 Ferruginibacter 呈正相关。此外,Chloroflexi、Patescibacteria 和Firmicutes 在两个过程中的相对丰度差异显著(p < 0.05)。这些结果可能为 WWTP 中微生物群落的特征提供全面的认识,也有助于降低工业区 WWTP 出水的潜在环境风险。