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The combination of polystyrene microplastics and di (2-ethylhexyl) phthalate promotes the conjugative transfer of antibiotic resistance genes between bacteria

Ecotoxicology and Environmental Safety 2025 4 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 48 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yu Li, Xiaomei Liu, Saisai Guo, Saisai Guo, Saisai Guo, Yu Li, Saisai Guo, Xiaomei Liu, Saisai Guo, Xiaomei Liu, Saisai Guo, Xiaomei Liu, Saisai Guo, Saisai Guo, Saisai Guo, Yu Li, Xiaomei Liu, Jingchun Tang Yu Li, Saisai Guo, Jingchun Tang Saisai Guo, Jingchun Tang Jingchun Tang Xiaomei Liu, Jingchun Tang Jingchun Tang Jingchun Tang Saisai Guo, Jingchun Tang Xiaomei Liu, Saisai Guo, Jingchun Tang Xiaomei Liu, Saisai Guo, Jingchun Tang Jingchun Tang Yu Li, Saisai Guo, Saisai Guo, Yu Li, Yu Li, Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Lan Wang, Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Yu Li, Yu Li, Saisai Guo, Yu Li, Saisai Guo, Saisai Guo, Saisai Guo, Yu Li, Jingchun Tang Lan Wang, Saisai Guo, Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Yu Li, Yu Li, Saisai Guo, Lan Wang, Jingchun Tang Jingchun Tang Yu Li, Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang Yu Li, Yu Li, Yu Li, Yu Li, Yu Li, Jingchun Tang Jingchun Tang Jingchun Tang Yu Li, Jingchun Tang Xiaomei Liu, Yu Li, Yu Li, Jingchun Tang Jingchun Tang Jingchun Tang Jingchun Tang

Summary

Combined exposure to polystyrene microplastics and the plasticizer DEHP increased conjugative transfer of antibiotic resistance genes between bacteria by increasing cell membrane permeability and upregulating related gene expression, suggesting that combined plastic pollution could accelerate the spread of antibiotic resistance in the environment.

Polymers

Plastic pollution has become a common phenomenon. The process of plastic degradation is accompanied by the release of microplastics and plasticizers. However, the coexistence of microplastics and plasticizers on the transfer of antibiotic resistance genes (ARGs) has not been reported until now. Here, polystyrene (PS) microplastics and plasticizer di (2-ethylhexyl) phthalate (DEHP) were used for combined treatment experiment and their effects and mechanisms on the transfer of ARGs between bacteria were explored. By increasing cell membrane permeability and the expression of correlated genes, the combined treatment group showed promoting effects on the transfer of ARGs than that of control, with the highest promoting effects observed at 1 mg/L PS and 0.1 mg/L DEHP, which was 3.0 times higher in ARGs transfer rate than that of control. It was found that PS and DEHP treatment alone also led to a higher conjugative transfer frequency, and the frequency of the combined treatment was lower than that of the corresponding single treatment group. This indicated that the effects of DEHP and microplastics on ARGs transfer might be antagonistic. Transcriptome analysis indicated that the transfer of ARGs affects bacterial ion binding, oxidative stress, and energy metabolism processes, while the expression of genes related to cell membrane permeability, DNA repair, bacterial drug resistance, and quorum sensing also increase. This study may provide new insights for explaining the combined effects of various pollutants in the environment on the spread of ARGs.

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