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聚乙烯微塑料和多菌灵联合作用对赤子爱胜蚓的影响:一项综合生态毒理学研究。

Combined effects of polyethylene microplastics and carbendazim on Eisenia fetida: A comprehensive ecotoxicological study.

机构信息

Ecotoxicology Laboratory, REACT Division, CSIR-Indian Institute of Toxicology Research, C.R. Krishnamurti (CRK) Campus, Lucknow, 226 008, Uttar Pradesh, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

Ecotoxicology Laboratory, REACT Division, CSIR-Indian Institute of Toxicology Research, C.R. Krishnamurti (CRK) Campus, Lucknow, 226 008, Uttar Pradesh, India.

出版信息

Environ Pollut. 2024 May 1;348:123854. doi: 10.1016/j.envpol.2024.123854. Epub 2024 Mar 23.

Abstract

Microplastic (MP) pollution is becoming an emerging environmental concern across aquatic and terrestrial ecosystems. Plastic mulching and the use of pesticides in agriculture can lead to microplastics and agrochemicals in soil, which can result in unintended exposure to non-target organisms. The combined toxicity of multiple stressors represents a significant paradigm shift within the field of ecotoxicology, and its exploration within terrestrial ecosystems involving microplastics is still relatively limited. The present study investigated the combined effects of polyethylene MP (PE-MP) and the agrochemical carbendazim (CBZ) on the earthworm Eisenia fetida at different biological levels of organization. While E. fetida survival and reproduction did not exhibit significant effects following PE-MP treatment, there was a reduction in cocoon and hatchling numbers. Notably, prolonged exposure revealed delayed toxicity, leading to substantial growth impairment. Exposure to CBZ led to significant alterations in the endpoints mentioned above. While there was a decrease in cocoon and hatchling numbers, the combined treatment did not yield significant effects on earthworm reproduction except at higher concentrations. However, lower concentrations of PE-MP alongside CBZ induced a noteworthy decline in biomass content, signifying a form of potentiation interaction. In addition, concurrent exposure led to synergistic effects, from oxidative stress to modifications in vital organs such as the body wall, intestines, and reproductive structures (spermathecae, seminal vesicles, and ovarian follicles). The comparison of multiple endpoints revealed that seminal vesicles and ovarian follicles were the primary targets during the combined exposure. The research findings suggest that there are variable and complex responses to microplastic toxicity in terrestrial ecosystems, especially when combined with other chemical stressors like agrochemicals. Despite these difficulties, the study implies that microplastics can alter earthworms' responses to agrochemical exposure, posing potential ecotoxicological risks to soil fauna.

摘要

微塑料(MP)污染正在成为水生和陆地生态系统中一个新出现的环境问题。农业中的塑料覆盖和农药使用会导致土壤中的微塑料和农用化学品,这可能导致非目标生物意外暴露。多种胁迫因素的联合毒性代表了生态毒理学领域的一个重大范式转变,而其在涉及微塑料的陆地生态系统中的探索仍然相对有限。本研究调查了聚乙烯 MP(PE-MP)和农用化学品多菌灵(CBZ)在不同组织水平上对赤子爱胜蚓(Eisenia fetida)的联合效应。虽然 PE-MP 处理后赤子爱胜蚓的存活率和繁殖力没有显著影响,但茧和幼蚓的数量减少了。值得注意的是,长期暴露会导致延迟毒性,从而导致严重的生长受损。暴露于 CBZ 导致上述终点发生显著变化。虽然茧和幼蚓的数量减少了,但联合处理除了在较高浓度外,对蚯蚓繁殖没有显著影响。然而,较低浓度的 PE-MP 与 CBZ 一起会导致生物量含量显著下降,表明存在增效相互作用。此外,同时暴露会导致协同作用,从氧化应激到身体壁、肠道和生殖结构(精荚、精囊和卵巢滤泡)等重要器官的改变。对多个终点的比较表明,在联合暴露期间,精囊和卵巢滤泡是主要靶标。研究结果表明,陆地生态系统对微塑料毒性的反应存在多种复杂的变化,尤其是当与农用化学品等其他化学胁迫因素结合时。尽管存在这些困难,但该研究表明,微塑料可以改变蚯蚓对农用化学品暴露的反应,对土壤动物构成潜在的生态毒理学风险。

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