废水
流出物
污水处理
抗生素
头孢菌素类抗生素
流出
头孢菌素
生物
抗性(生态学)
抗生素耐药性
生物技术
基因组
环境工程
微生物学
生态学
环境科学
基因
生物化学
遗传学
作者
Chifei Dong,Zishu Liu,Lin Zhu,Baofeng Zhang,Taolve Chi,Zhendi Yu,Meng Zhou,Lingtao Sun,Yuxiang Zhao,Lizhong Zhu,Baolan Hu
出处
期刊:Water Research
[Elsevier BV]
日期:2024-06-21
卷期号:261: 121983-121983
被引量:16
标识
DOI:10.1016/j.watres.2024.121983
摘要
The migration and dissemination of antibiotics and their corresponding antibiotic resistance genes (ARGs) from pharmaceutical plants through wastewater treatment to the environment introduce exogenous ARGs, increasing the risk of antibiotic resistance. Cephalosporin antibiotics (Ceps) are among the most widely used antibiotics with the largest market scale today, and the issue of resistance is becoming increasingly severe. In this study, a cephalosporin pharmaceutical plant was selected and metagenomic analysis was employed to investigate the dissemination patterns of cephalosporin antibiotics (Ceps) and their ARGs (CepARGs) from the pharmaceutical plant through the wastewater treatment plant to tidal flats sediments. The findings revealed a significant reduction in the total concentration of Ceps by 90.32% from the pharmaceutical plant's Pioneer Bio Reactor (PBR) to the effluent of the wastewater treatment plant, and a notable surge of 172.13% in the relative abundance of CepARGs. It was observed that CepARGs originating from the PBR could migrate along the dissemination chain, contributing to 60% of the CepARGs composition in tidal flats sediments. Microorganisms play a crucial role in the migration of CepARGs, with efflux-mediated CepARGs, as an intrinsic resistance mechanism, exhibiting a higher prospensity for migration due to their presence in multiple hosts. While Class I risk CepARGs are present at the pharmaceutical and wastewater plant stages, Class I ina-CepARGs are completely removed during wastewater treatment and do not migrate to the environment. This study reveals the dynamic migration characteristics and potential risk changes regarding Ceps and CepARGs in real dissemination chains, providing new theoretical evidence for the mitigation, control, and risk prevention of CepARGs.
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