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March 3, 20262 citationsOpen Access

Plastisphere Microbial Community and Functional Differences with Risk of Antibiotic Resistance Gene Transmission Throughout Wastewater Treatment

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JZJinxu ZhangHLHong LiuJYJianfeng Ye

Key Points

  • The central aim is to investigate how microplastics affect microbial communities and the spread of antibiotic resistance genes in wastewater treatment.
  • Utilized metagenomics and qPCR to analyze microorganisms and ARGs.
  • Examined microbial community structure and functional expression in plastisphere and wastewater.
  • Compared microbial abundance and diversity before and after disinfection in wastewater.
  • Significant differences were found in microbial community structure between plastisphere and wastewater.
  • Microbial communities in plastisphere exhibited higher diffusion rates and stability.
  • Disinfection reduced microbial abundance and diversity in wastewater but minimally affected plastisphere.

Abstract

Wastewater treatment plants (WWTPs), which serve as a bridge between wastewater and aquatic environment, may inadvertently introduce microplastics and antibiotic resistance genes (ARGs) into receiving water. Microplastics in wastewater can accumulate microorganisms to form plastispheres, potentially increasing the risk of ARGs in WWTP effluent. To better understand this phenomenon, this study utilized metagenomics and qPCR to investigate the characteristics of microorganisms and ARGs in plastisphere and wastewater throughout the wastewater treatment process. The results showed that there were significant differences in the microbial community structure and functional expression in plastisphere and wastewater. The microbial communities in plastisphere also exhibited superior diffusion rates and greater stability. Consequently, the disinfection unit significantly reduced microbial abundance, diversity, and Human Diseases-related metabolic pathways in wastewater, yet having minimal impact on plastisphere. Additionally, the increased microbial diversity and enhanced function associated with ARG proliferation in the plastisphere elevated the relative abundance of ARGs. The presence of microplastics in WWTP protected ARGs from elimination, thereby increasing the risk of ARG being carried in effluent, and this may pose serious threats to aquatic ecosystems. These findings provide insights into the ecological risks associated with microplastics in WWTPs and emphasize the importance of comprehensively controlling microplastics entry into wastewater and enhancing microplastic removal from WWTPs.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a67f06f353c071a6f0ad16https://doi.org/10.3390/w18050593
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Plastispheres as reservoirs of antimicrobial resistance: Insights from metagenomic analyses across aquatic environments2025
  2. 2Taxonomic variation, plastic degradation, and antibiotic resistance traits of plastisphere communities in the maturation pond of a wastewater treatment plant2024 · 7 citations
  3. 3Fragmented Microplastics Synergize with Biological Treatment To Potentiate Antibiotic Resistance Dissemination during Sewage Treatment2026 · 8 citations
  4. 4Research progress on the origin, fate, impacts and harm of microplastics and antibiotic resistance genes in wastewater treatment plants2024 · 31 citations
  5. 5A comparative, multi-study analysis of plastisphere resistomes, plasmid dynamics, and antibiotic resistance genes2026