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(微)纳米塑料促进生物除磷系统中抗生素抗性基因传播的风险。

(Micro) nanoplastics promote the risk of antibiotic resistance gene propagation in biological phosphorus removal system.

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, China.

出版信息

J Hazard Mater. 2022 Jun 5;431:128547. doi: 10.1016/j.jhazmat.2022.128547. Epub 2022 Feb 23.

Abstract

Microplastics (MPs), nanoplastics (NPs) and antibiotic resistance genes (ARGs), as emerging pollutants, have been frequently detected in wastewater treatment plants. However, the behavior of phosphorus and ARGs under MP and NP (MP/NP) pressure in biological phosphorus removal (BPR) system is still unknown. This study investigated the effects of MP/NPs on phosphorus removal and ARGs propagation in BPR system. Results showed that MP/NPs had no influence on phosphorus removal, but significantly promoted the amplification of tetracycline resistance genes (TRGs). Moreover, the TRG abundance were more facilitated by MPs than NPs, and the TRGs of efflux pump and enzymatic modification mechanism were mainly enriched. Meanwhile, MP/NPs increased the transmission risk of multiple resistance genes and mobile gene elements (MGEs). Microbial communities demonstrated the main polyphosphate accumulating organisms shifted from Acinetobacter to unclassified_Gammaproteobacteria, which explained why phosphorus removal efficiency was unaffected with MP/NP addition. Correlation analysis revealed there was no significant correlation between ARGs and MGEs (intI1 and intI2), but the abundances of potential hosts of ARGs were significantly increased with MP/NP addition, implying microbial community structure changes rather than gene horizontal transfer was the main factor promoting ARG propagation under MP/NP pressure.

摘要

微塑料 (MPs)、纳米塑料 (NPs) 和抗生素抗性基因 (ARGs) 作为新兴污染物,已在污水处理厂中频繁检出。然而,在生物除磷 (BPR) 系统中,MP 和 NP (MP/NP) 压力下磷和 ARGs 的行为仍不清楚。本研究考察了 MP/NPs 对 BPR 系统中磷去除和 ARGs 传播的影响。结果表明,MP/NPs 对磷去除没有影响,但显著促进了四环素抗性基因 (TRGs) 的扩增。此外, MPs 比 NPs 更有利于 TRGs 的富集,并且主要富集了外排泵和酶修饰机制的 TRGs。同时,MP/NPs 增加了多种抗性基因和移动基因元件 (MGEs) 的传播风险。微生物群落表明,主要的聚磷菌从不动杆菌属转变为未分类的γ变形菌属,这解释了为什么添加 MP/NP 后磷去除效率不受影响。相关性分析表明,ARGs 与 MGEs (intI1 和 intI2) 之间没有显著相关性,但随着 MP/NP 的添加,ARGs 的潜在宿主丰度显著增加,这意味着在 MP/NP 压力下,微生物群落结构的变化而不是基因水平转移是促进 ARG 传播的主要因素。

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