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Network analysis reveals significant joint effects of microplastics and tetracycline on the gut than the gill microbiome of marine medaka

Journal of Hazardous Materials 2022 58 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Xin Liao, Bob Adyari, Liyuan Hou, Peiqiang Zhao, Liyuan Hou, Elvis Genbo Xu Peiqiang Zhao, Peiqiang Zhao, Liyuan Hou, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Liyuan Hou, Liyuan Hou, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Qiansheng Huang, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Xin Liao, Peiqiang Zhao, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Xin Liao, Peiqiang Zhao, Bob Adyari, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Qiansheng Huang, Qiansheng Huang, Anyi Hu, Elvis Genbo Xu Qiansheng Huang, Qiansheng Huang, Elvis Genbo Xu Elvis Genbo Xu Liyuan Hou, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Qiansheng Huang, Elvis Genbo Xu Elvis Genbo Xu Qiansheng Huang, Anyi Hu, Qiansheng Huang, Anyi Hu, Qiansheng Huang, Elvis Genbo Xu Elvis Genbo Xu Anyi Hu, Qiansheng Huang, Qiansheng Huang, Anyi Hu, Elvis Genbo Xu Anyi Hu, Elvis Genbo Xu Elvis Genbo Xu Elvis Genbo Xu Qiansheng Huang, Elvis Genbo Xu

Summary

Researchers used network analysis to study the joint effects of polystyrene microplastics and the antibiotic tetracycline on the gut and gill microbiomes of marine medaka fish over 30 days. The study found that combined exposure had more profound effects on the gut than the gill microbiome, reducing the complexity and stability of gut microbial networks.

Polymers
Body Systems

Microplastics could accumulate and enrich antibiotics in the aquatic environment. Despite this, the joint effects of microplastics and antibiotics on aquatic organisms are not clear. Here, we investigated the changes of microbial interactions in both gill and gut of marine medaka exposed to polystyrene microbeads (PS) and/or tetracycline for 30 days by using co-occurrence network analysis based on 16S rRNA gene amplicon sequences. We found that the single and combined effects of PS and tetracycline were more profound on the gut than on the gill microbiome. SourceTracker analysis showed that the relative contributions from the gill microbiome to the gut microbiome increased under combined exposure. Moreover, the combined exposure reduced the complexity and stability of the gut microbial network more than those induced by any single exposure, suggesting the synergistic effects of PS and tetracycline on the gut microbiome. The PS and tetracycline combined exposure also caused a shift in the keystone taxa of the gut microbial network. However, no similar pattern was found for gill microbial networks. Furthermore, single and combined exposure to PS and/or tetracycline altered the associations between the gut network taxa and indicator liver metabolites. Altogether, these findings enhanced our understanding of the hazards of the co-occurring environmental microplastics and antibiotics to the fish commensal microbiome.

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