Co-exposure to boscalid and amoxicillin inhibited the degradation of boscalid and aggravated the threat to the earthworm

IF 4.2 1区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Pesticide Biochemistry and Physiology Pub Date : 2024-07-14 DOI:10.1016/j.pestbp.2024.106022
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Abstract

The extensive application of pesticides and antibiotics in agricultural production makes it possible for them to coexist in farmland, and the interaction of the two pollutants can lead to changes in environmental behavior and toxicity, creating uncertainty risks to soil and soil organisms. In this study, we explored the environmental behavior and the effects of earthworms under co-exposure to amoxicillin and boscalid and further explored the accumulation and toxic effects on earthworms. The results showed that amoxicillin increased the adsorption of boscalid in soil and inhibited its degradation. In addition, we noticed that the co-exposure of amoxicillin and boscalid caused intestinal barrier damage, which increased the bioaccumulation of earthworms for boscalid and led to more severe oxidative stress and metabolic disorders in earthworms. In summary, our findings indicate that amoxicillin can increase the ecological risk of boscalid in the environment and imply that the encounter between antibiotics and pesticides in the environment can amplify the toxic effects of pesticides, which provides new insights into the ecological risks of antibiotics.

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同时接触啶虫脒和阿莫西林会抑制啶虫脒的降解,加剧对蚯蚓的威胁
农药和抗生素在农业生产中的广泛应用使其在农田中共存成为可能,两种污染物的相互作用会导致环境行为和毒性的变化,给土壤和土壤生物带来不确定的风险。本研究探讨了阿莫西林和啶虫脒共同暴露下的环境行为和对蚯蚓的影响,并进一步探讨了阿莫西林和啶虫脒对蚯蚓的积累和毒性作用。结果表明,阿莫西林增加了啶虫脒在土壤中的吸附,并抑制了其降解。此外,我们还注意到,阿莫西林和啶虫脒同时接触会造成肠道屏障损伤,从而增加蚯蚓对啶虫脒的生物蓄积,导致蚯蚓出现更严重的氧化应激和代谢紊乱。总之,我们的研究结果表明,阿莫西林会增加环境中氨噻菌胺的生态风险,并意味着抗生素和农药在环境中的相遇会放大农药的毒性效应,这为抗生素的生态风险提供了新的见解。
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来源期刊
CiteScore
7.00
自引率
8.50%
发文量
238
审稿时长
4.2 months
期刊介绍: Pesticide Biochemistry and Physiology publishes original scientific articles pertaining to the mode of action of plant protection agents such as insecticides, fungicides, herbicides, and similar compounds, including nonlethal pest control agents, biosynthesis of pheromones, hormones, and plant resistance agents. Manuscripts may include a biochemical, physiological, or molecular study for an understanding of comparative toxicology or selective toxicity of both target and nontarget organisms. Particular interest will be given to studies on the molecular biology of pest control, toxicology, and pesticide resistance. Research Areas Emphasized Include the Biochemistry and Physiology of: • Comparative toxicity • Mode of action • Pathophysiology • Plant growth regulators • Resistance • Other effects of pesticides on both parasites and hosts.
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