Phthalates Promote Dissemination of Antibiotic Resistance Genes: An Overlooked Environmental Risk

Фталаты способствуют распространению генов антибиотикорезистентности: недооцененный экологический риск
Wen‐Wei Li, Jing Wu, Zhou Jun-hua, Dong‐Feng Liu, Jie Wu, Ru‐Li He, Zhou‐Hua Cheng, Huihui Li
2023-04-21

antibiotic resistance genes (ARGs)dimethyl phthalate (DMP)membrane lipid fluidity and permeabilityphthalates (PAEs)plasmid-mediated conjugation
Plastics-microorganism interactions have aroused growing environmental and ecological concerns. However, previous studies concentrated mainly on the direct interactions and paid little attention to the ecotoxicology effects of phthalates (PAEs), a common plastic additive that is continuously released and accumulates in the environment. Here, we provide insights into the impacts of PAEs on the dissemination of antibiotic resistance genes (ARGs) among environmental microorganisms. Dimethyl phthalate (DMP, a model PAE) at environmentally relevant concentrations (2-50 μg/L) significantly boosted the plasmid-mediated conjugation transfer of ARGs among intrageneric, intergeneric, and wastewater microbiota by up to 3.82, 4.96, and 4.77 times, respectively. The experimental and molecular dynamics simulation results unveil a strong interaction between the DMP molecules and phosphatidylcholine bilayer of the cell membrane, which lowers the membrane lipid fluidity and increases the membrane permeability to favor transfer of ARGs. In addition, the increased reactive oxygen species generation and conjugation-associated gene overexpression under DMP stress also contribute to the increased gene transfer. This study provides fundamental knowledge of the PAE-bacteria interactions to broaden our understanding of the environmental and ecological risks of plastics, especially in niches with colonized microbes, and to guide the control of ARG environmental spreading.
1
DMP boosted ARG transfer by up to 3.82 times for intrageneric, 4.96 times for intergeneric, and 4.77 times for wastewater microbiota.
2
DMP exposure increases reactive oxygen species generation and overexpression of conjugation-associated genes, which contribute to enhanced ARG transfer.
3
Dimethyl phthalate (DMP) at environmentally relevant concentrations (2–50 μg/L) significantly increases plasmid-mediated conjugation transfer of antibiotic resistance genes (ARGs).
4
Findings indicate that phthalates are an overlooked environmental risk that can promote dissemination of ARGs in microbe-colonized niches and environmental settings.
5
Molecular dynamics simulations and experiments show strong interactions between DMP and phosphatidylcholine bilayers, lowering membrane lipid fluidity and increasing membrane permeability.

Dimethyl phthalate (DMP) exposure of environmental/wastewater microbial communities and bacterial cells

Promotion of plasmid-mediated dissemination of antibiotic resistance genes (ARGs) via increased conjugation frequency driven by DMP-induced membrane interactions (reduced lipid fluidity, increased permeability), elevated ROS generation, and overexpression of conjugation-associated genes

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Publication Date
2023-04-21
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Authors
Wen‐Wei Li
Jing Wu
Zhou Jun-hua
Dong‐Feng Liu
Jie Wu
Ru‐Li He
Zhou‐Hua Cheng
Huihui Li
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