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The stress response of tetracycline resistance genes and bacterial communities under the existence of microplastics in typical leachate biological treatment system. | LitMetric

AI Article Synopsis

  • Landfill leachate, which is the liquid that drains from landfills, contains small pieces of plastic called microplastics (MPs) and genes that make bacteria resistant to antibiotics (ARGs).
  • The presence of two types of microplastics (polystyrene and polyethylene) affects how well nitrogen and phosphorus are removed from the waste during treatment and influences the growth of bacteria that form a slimy layer (biofilm) on the microplastics.
  • Researchers found that these microplastics help bacteria accumulate more of the antibiotic-resistant genes, especially on polyethylene, and this discovery is important for understanding how pollution spreads in the environment.

Article Abstract

Landfill leachate is an important source of microplastics (MPs) and antibiotic-resistance genes (ARGs). Here, in the presence of polystyrene MPs (PS-MPs) and polyethylene MPs (PE-MPs), the nitrogen and phosphorus removal effect and sludge structure performance were affected in an anaerobic-anoxic-aerobic system, a typical biological leachate treatment process. The abundance of tetracycline-resistance genes (tet genes) in biofilms on the two types of MP was significantly higher than that in the leachate and sludge, and the load on PE-MPs was higher than that on PS-MPs because of the porous structure of PE-MPs. Aging of the MPs increased their surface roughness and abundance of oxygen-containing functional groups and shaped the profile of ARGs in the MP biofilms. The biofilm biomass and growth rate on the two types of MP increased with the incubation time in the first 30 days, and was affected by environmental factors. Structural equation models and co-occurrence network analysis demonstrated that the MPs indirectly affected the spectrum of ARGs by affecting biofilm formation, and, to a lesser extent, had a direct impact on the selective enrichment of ARGs. We discuss the mechanisms of the relationships between MPs and ARGs in the leachate treatment system, which will have guiding significance for future research. Our data on the colonization of microorganisms and tet genes in MPs biofilms provide new evidence concerning the accumulation and transmission of these ARGs, and are important for understanding the mechanisms of MPs in spreading pollution.

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Source
http://dx.doi.org/10.1016/j.jenvman.2024.121865DOI Listing

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