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在实施雨水储存管前后,城市航道中合流污水溢流的微生物群落组成和功能。

Microbial community composition and function in an urban waterway with combined sewer overflows before and after implementation of a stormwater storage pipe.

机构信息

Department of Civil and Environmental Engineering, Kindai University, Higashiosaka, Japan.

Faculty of Advanced Science and Technology, Ryukoku University, Otsu, Shiga, Japan.

出版信息

PeerJ. 2023 Jan 12;11:e14684. doi: 10.7717/peerj.14684. eCollection 2023.

Abstract

When the wastewater volume exceeds the sewer pipe capacity during extreme rainfall events, untreated sewage discharges directly into rivers as combined sewer overflow (CSO). To compare the impacts of CSOs and stormwater on urban waterways, we assessed physicochemical water quality, the 16S rRNA gene-based bacterial community structure, and EcoPlate-based microbial functions during rainfall periods in an urban waterway before and after a stormwater storage pipe was commissioned. A temporal variation analysis showed that CSOs have significant impacts on microbial function and bacterial community structure, while their contributions to physicochemical parameters, bacterial abundance, and chlorophyll a were not confirmed. Heat map analysis showed that the impact of CSO on the waterway bacterial community structure was temporal and the bacterial community composition in CSO is distinct from that in sewers. Hierarchical clustering analysis revealed that the waterway physicochemical water qualities, bacterial community composition, and microbial community function were distinguishable from the upper reach of the river, rather than between CSO and stormwater. Changes in the relative abundance of tetracycline resistance () genes-especially (M)-were observed after CSOs but did not coincide with changes in the microbial community composition, suggesting that the parameters affecting the microbial community composition and relative abundance of genes differ. After pipe implementation, however, stormwater did not contribute to the abundance of genes in the waterway. These results indicate that CSO-induced acute microbial disturbances in the urban waterway were alleviated by the implementation of a stormwater storage pipe and will support the efficiency of storage pipe operation for waterway management in urban areas.

摘要

在极端降雨事件中,当污水量超过污水管道容量时,未经处理的污水会作为合流污水溢流入河流。为了比较合流污水溢流和雨水对城市水道的影响,我们在一个城市水道的雨水期之前和之后,评估了在一个城市水道中,经过雨水存储管投入使用前后的理化水质、基于 16S rRNA 基因的细菌群落结构和基于 EcoPlate 的微生物功能。时间变化分析表明,合流污水溢流对微生物功能和细菌群落结构有显著影响,而它们对理化参数、细菌丰度和叶绿素 a 的贡献尚未得到证实。热图分析表明,合流污水溢流对水道细菌群落结构的影响是时间性的,合流污水溢流中的细菌群落组成与污水中的不同。层次聚类分析表明,水道的理化水质、细菌群落组成和微生物群落功能与河流上游有区别,而不是与合流污水溢流和雨水之间有区别。在合流污水溢流后,观察到四环素抗性基因()的相对丰度(特别是(M))发生变化,但与微生物群落组成的变化不一致,这表明影响微生物群落组成和基因相对丰度的参数不同。然而,在管道实施后,雨水并没有增加水道中基因的丰度。这些结果表明,通过实施雨水存储管,城市水道中由合流污水溢流引起的急性微生物干扰得到了缓解,这将支持城市地区水道管理中存储管运行的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c31b/9840855/ae0ccb6fc037/peerj-11-14684-g001.jpg

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