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Study on stereoselective bioactivity, acute toxicity, and degradation in cucurbits and soil of chiral fungicide famoxadone

机译:对甘蔗酰甘蔗酰基葫芦和土壤急性毒性,急性毒性,急性毒性和降解研究

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摘要

The chiral pesticide famoxadone is mainly applied to control fungal diseases on fruiting vegetables. The fungicidal activity, ecotoxicological effects, and degradation behavior of famoxadone enantiomers are less well known. In this study, a systemic assessment of the stereoselectivity of famoxadone was performed in cucurbits and soil. Famoxadone enantiomers presented distinct inhibitory activities among different fungal species. The bioactivities of R-(-)-famoxadone were 2.7-178 times higher than S-(+)-famoxadone toward five phytopathogens. Based on the obtained LC50 values, famoxadone was super toxic to Eisenia foetida (E. foetida). Moreover, the acute toxicity of R-(-)-famoxadone presented 167 times greater to E. foetida than that of S-(+)-famoxadone, indicating that R-(-)-famoxadone showed higher bioactivity toward target organisms and non-target organisms than S-(+)-famoxadone. In addition, a simple high-performance liquid chromatography (HPLC) method was established to determine the stereoselective degradation of famoxadone in two species of cucurbits (cucumber and chieh-qua) and in field soil. The half-life values of famoxadone degradation were from 5.4 to 14.1 days, indicating that famoxadone was easily degraded. Additionally, no stereoselective degradation was found in cucurbits and soil. The results may provide promising implications for comprehensive environmental and ecological risk assessments of famoxadone.
机译:手性农药法莫沙酮主要用于果蔬真菌病害的防治。法莫沙酮对映体的杀菌活性、生态毒理学效应和降解行为尚不清楚。本研究对法莫沙酮在葫芦和土壤中的立体选择性进行了系统评价。法莫沙酮对映体在不同真菌种类中表现出不同的抑制活性。R-(-)-法莫沙酮对五种植物病原菌的生物活性是S-(+)-法莫沙酮的2.7-178倍。根据获得的LC50值,法莫沙酮对赤子爱胜蚓(E.foetida)具有超毒性。此外,R-(-)-法莫沙酮对E.foetida的急性毒性是S-(+)-法莫沙酮的167倍,表明R-(-)-法莫沙酮对靶生物和非靶生物的生物活性高于S-(+)-法莫沙酮。此外,建立了一种简单的高效液相色谱法(HPLC)来测定法莫沙酮在两种南瓜(黄瓜和节瓜)和田间土壤中的立体选择性降解。法莫沙酮降解的半衰期为5.4至14.1天,表明法莫沙酮很容易降解。此外,在南瓜和土壤中未发现立体选择性降解。研究结果可能为法莫沙酮的综合环境和生态风险评估提供有希望的启示。

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