Co-exposure of Monensin Increased the Risks of Atrazine to Earthworms

莫能星 阿特拉津 生物利用度 蚯蚓 杀虫剂 微观世界 化学 环境化学 胎儿艾森氏菌 毒性 急性毒性 生物 农学 药理学 生物化学 有机化学
作者
Wenqi Jiang,Wangjing Zhai,Xueke Liu,Fang Wang,Donghui Liu,Xiangyang Yu,Peng Wang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (12): 7883-7894 被引量:61
标识
DOI:10.1021/acs.est.2c00226
摘要

Antibiotics could enter farmlands through sewage irrigation or manure application, causing combined pollution with pesticides. Antibiotics may affect the environmental fate of pesticides and even increase their bioavailability. In this study, the influence of monensin on the degradation, toxicity, and availability of atrazine in soil-earthworm microcosms was investigated. Monensin inhibited the degradation of atrazine, changed the metabolite patterns in soil, and increased the bioavailability of atrazine in earthworms. Atrazine and monensin had a significant synergistic effect on earthworms in the acute toxic test. In long-term toxicity tests, co-exposure of atrazine and monensin also led to worse effects on earthworms including oxidative stress, energy metabolism disruption, and cocoon production compared to single exposure. The expression of tight junction proteins was down-regulated significantly by monensin, indicating that the intestinal barrier of earthworms was weakened, possibly causing the increased bioavailability of atrazine. The expressions of heat shock protein 70 (Hsp70) and reproductive and ontogenetic factors (ANN, TCTP) were all downregulated in binary exposure, indicating that the resilience and cocoon production of earthworms were further weakened under combined pollution. Monensin disturbed the energy metabolism and weakened the intestinal barrier of earthworms. These results showed that monensin increased the risks of atrazine in agricultural areas.
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