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    Zhang M, Liu S, Wang S S, et al. Microplastic-antibiotic complex pollutants on intestinal microbial community structure of zebrafish J. Acta Hydrobiologica Sinica, 2026, 50(7): 072608. DOI: 10.3724/1000-3207.2026.2025.0435
    Citation: Zhang M, Liu S, Wang S S, et al. Microplastic-antibiotic complex pollutants on intestinal microbial community structure of zebrafish J. Acta Hydrobiologica Sinica, 2026, 50(7): 072608. DOI: 10.3724/1000-3207.2026.2025.0435

    MICROPLASTIC-ANTIBIOTIC COMPLEX POLLUTANTS ON INTESTINAL MICROBIAL COMMUNITY STRUCTURE OF ZEBRAFISH

    • This study investigated the adsorption of chloramphenicol by microplastics in water and examined the effects of the combined pollutant on zebrafish gut microbiota using high-throughput 16S rRNA sequencing. The results demonstrated that the equilibrium adsorption capacity of chloramphenicol by microplastics was 2.27 mg/g, consistent with a quasi-first-order kinetic model, while the saturated adsorption capacity was 14.60 mg/g, aligning with the Langmuir adsorption model. Gut microbiota analysis revealed that in the experimental group exposed to the microplastic-antibiotic composite pollutant, the abundance of Bacteroidota and Firmicutes increased progressively, whereas the abundance of Proteobacteria and Fusobacteriota showed minimal changes. Additionally, microbial beta-diversity was significantly reduced. This study confirms that microplastics can act as carriers of chloramphenicol, enter aquatic organisms, and alter the structure of the intestinal microbial community.
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