甲基磺草酮
异丙甲草胺
化学
代谢物
毒性
杀虫剂
胡椒基丁醇
环境化学
乙草胺
磺酰脲
生物降解
阿特拉津
农学
有机化学
生物化学
生物技术
生物
胰岛素
作者
Louis Carles,Muriel Joly,Frédérique Bonnemoy,Martin Leremboure,Florence Donnadieu,Isabelle Batisson,Pascale Besse-Hoggan
标识
DOI:10.1016/j.jhazmat.2018.04.045
摘要
The prediction of chemical mixture toxicity is a major concern regarding unintentional mixture of pesticides from agricultural lands treated with various such compounds. We focused our work on a mixture of three herbicides commonly applied on maize crops within a fortnight, namely mesotrione (β-triketone), nicosulfuron (sulfonylurea) and S-metolachlor (chloroacetanilide). The metabolic pathways of mesotrione and nicosulfuron were qualitatively and quantitatively determined with a bacterial strain (Bacillus megaterium Mes11). This strain was isolated from an agricultural soil and able to biotransform both these herbicides. Although these pathways were unaffected in the case of binary or ternary herbicide mixtures, kinetics of nicosulfuron disappearance and also of mesotrione and nicosulfuron metabolite formation was strongly modulated. The toxicity of the parent compounds and metabolites was evaluated for individual compounds and mixtures with the standardized Microtox® test. Synergistic interactions were evidenced for all the parent compound mixtures. Synergistic, antagonistic or additive toxicity was obtained depending on the metabolite mixture. Overall, these results emphasize the need to take into account the active ingredient and metabolites all together for the determination of environmental fate and toxicity of pesticide mixtures.
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