Department of Physical, Earth and Environmental Sciences, University of Siena, Via Mattioli, 4, 53100, Siena, Italy.
Department of Economics and Statistics, University of Siena, Piazza S. Francesco, 7, 53100, Siena, Italia.
Environ Sci Pollut Res Int. 2024 May;31(24):35969-35978. doi: 10.1007/s11356-024-33511-7. Epub 2024 May 14.
Modern agriculture is mainly based on the use of pesticides to protect crops but their efficiency is very low, in fact, most of them reach water or soil ecosystems causing pollution and health hazards to non-target organisms. Fungicide triazoles and strobilurins based are the most widely used and require a specific effort to investigate toxicological effects on non-target species. This study evaluates the toxic effects of four commercial fungicides Prosaro® (tebuconazole and prothioconazole), Amistar®Xtra (azoxystrobin and cyproconazole), Mirador® (azoxystrobin) and Icarus® (Tebuconazole) on Eisenia fetida using several biomarkers: lipid peroxidation (LPO), catalase activity (CAT), glutathione S-transferase (GST), total glutathione (GSHt), DNA fragmentation (comet assay) and lysozyme activity tested for the first time in E. fetida. The exposure to Mirador® and AmistarXtra® caused an imbalance of ROS species, leading to the inhibition of the immune system. AmistarXtra® and Prosaro®, composed of two active ingredients, induced significant DNA alteration, indicating genotoxic effects. This study broadened our knowledge of the effects of pesticide product formulations on earthworms and showed the need for improvement in the evaluation of toxicological risk deriving from the changing of physicochemical and toxicological properties that occur when a commercial formulation contains more than one active ingredient and several unknown co-formulants.
现代农业主要依赖于使用农药来保护作物,但它们的效率非常低,事实上,大多数农药都会到达水或土壤生态系统,从而对非目标生物造成污染和健康危害。三唑类杀菌剂和 strobilurins 是应用最广泛的杀菌剂,需要特别努力研究它们对非目标物种的毒理学影响。本研究使用几种生物标志物评估了四种商业杀菌剂 Prosa ro®(戊唑醇和丙硫菌唑)、Amistar®Xtra(唑嘧菌胺和戊唑醇)、Mirador®(唑嘧菌胺)和 Icarus®(戊唑醇)对赤子爱胜蚓的毒性作用:脂质过氧化 (LPO)、过氧化氢酶活性 (CAT)、谷胱甘肽 S-转移酶 (GST)、总谷胱甘肽 (GSHt)、DNA 片段化(彗星试验)和溶菌酶活性(首次在赤子爱胜蚓中进行测试)。暴露于 Mirador®和 AmistarXtra®会导致活性氧物种失衡,从而抑制免疫系统。由两种活性成分组成的 AmistarXtra®和 Prosaro® 诱导了显著的 DNA 改变,表明存在遗传毒性作用。本研究拓宽了我们对农药产品配方对蚯蚓影响的认识,并表明需要改进对毒理学风险的评估,这种风险源于当一种商业配方含有一种以上的活性成分和几种未知的共配方成分时,会发生物理化学和毒理学性质的变化。