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微塑料和抗消毒剂基因会对水消毒过程造成可想象的威胁吗?

Can microplastics and disinfectant resistance genes pose conceivable threats to water disinfection process?

机构信息

School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.

School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.

出版信息

Sci Total Environ. 2023 Dec 20;905:167192. doi: 10.1016/j.scitotenv.2023.167192. Epub 2023 Sep 18.

Abstract

Microplastic pollution in the environment has aroused widespread concerns, however, the potential environmental risks caused by excessive use of disinfectants are still unknown. Disinfectants with doses below the threshold can enhance the communication of resistance genes in pathogenic microorganisms, promoting the development and spread of antimicrobial activity. Problematically, the intensification of microplastic pollution and the increase of disinfectant consumption will become a key driving force for the growth of disinfectant resistance bacteria (DRB) and disinfectant resistance genes (DRGs) in the environment. Disinfection plays a crucial role in ensuring water safety, however, the presence of microplastics and DRGs seriously disturb the water disinfection process. Microplastics can reduce the concentration of disinfectant in the local environment around microorganisms and improve their tolerance. Microorganisms can improve their resistance to disinfectants or generate resistance genes via phenotypic adaptation, gene mutations, and horizontal gene transfer. However, very limited information is available on the impact of DRB and DRGs on disinfection process. In this paper, the contribution of microplastics to the migration and transmission of DRGs was analyzed. The challenges posed by the presence of microplastics and DRGs on conventional disinfection were thoroughly discussed. The knowledge gaps faced by relevant current research and further research priorities have been proposed in order to provide a scientific basis in the future.

摘要

环境中的微塑料污染引起了广泛关注,然而,消毒剂过度使用所带来的潜在环境风险仍不为人知。低于阈值剂量的消毒剂可以增强病原微生物中抗性基因的交流,促进抗药性的发展和传播。有问题的是,微塑料污染的加剧和消毒剂消耗的增加将成为环境中消毒剂抗性细菌(DRB)和消毒剂抗性基因(DRGs)增长的关键驱动力。消毒在确保水安全方面起着至关重要的作用,然而,微塑料和 DRGs 的存在严重干扰了水消毒过程。微塑料可以降低微生物周围局部环境中消毒剂的浓度,并提高其耐受性。微生物可以通过表型适应、基因突变和水平基因转移来提高其对消毒剂的抗性或产生抗性基因。然而,关于 DRB 和 DRGs 对消毒过程影响的信息非常有限。本文分析了微塑料对抗生素抗性基因迁移和传播的贡献。深入讨论了微塑料和 DRGs 对常规消毒的挑战。针对相关当前研究面临的知识空白和进一步的研究重点提出了建议,以便为未来提供科学依据。

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