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Deciphering the distribution and microbial secretors of extracellular polymeric substances associated antibiotic resistance genes in tube wall biofilm

  • Ziyi Zhou
  • , Wencheng Ma
  • , Feiyu Li
  • , Dan Zhong*
  • , Wenxuan Zhang
  • , Luming Liu
  • , Jingna Zhang
  • , Yisong Zhu
  • , Peng Su
  • *Corresponding author for this work
  • School of Environment, Harbin Institute of Technology
  • Ltd.
  • Harbin Institute of Technology
  • Planning

Research output: Contribution to journalArticlepeer-review

Abstract

Antibiotics and disinfectants have both been proposed to exert selective pressures on the biofilm as well as affecting the emergence and spread of antibiotic resistance genes (ARGs). However, the transfer mechanism of ARGs in drinking water distribution system (DWDS) under the coupling effect of antibiotics and disinfectants has not been completely understood. In the current study, four lab-scale biological annular reactors (BARs) were constructed to evaluate the effects of sulfamethoxazole (SMX) and NaClO coupling in DWDS and reveal the related mechanisms of ARGs proliferation. TetM was abundant in both the liquid phase and the biofilm, and redundancy analysis showed that the total organic carbon (TOC) and temperature were significantly correlated with ARGs in the water phase. There was a significant correlation between the relative abundance of ARGs in the biofilm phase and extracellular polymeric substances (EPS). Additionally, the proliferation and spread of ARGs in water phase were related to microbial community structure. Partial least-squares path modeling showed that antibiotic concentration may influence ARGs by affecting MGEs. These findings help us to better understand the diffusion process of ARGs in drinking water and provide a theoretical support for technologies to control ARGs at the front of pipeline.

Original languageEnglish
Article number163218
JournalScience of the Total Environment
Volume881
DOIs
StatePublished - 10 Jul 2023
Externally publishedYes

Keywords

  • Antibiotic resistance genes
  • Biofilm
  • Disinfectant
  • Drinking water
  • Extracellular polymeric substances

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