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首页> 外文期刊>Aquatic Toxicology >Mechanisms of resistance and cross-resistance to agrochemicals in the fairy shrimp Thamnocephalus platyurus (Crustacea: Anostraca)
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Mechanisms of resistance and cross-resistance to agrochemicals in the fairy shrimp Thamnocephalus platyurus (Crustacea: Anostraca)

机译:仙虾对虾(Thamnocephalus platyurus)(甲壳纲:Anostraca)对农用化学品的抗性和交叉抗性机制

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摘要

Extensive pesticide usage in the Southern High Plains has led to the development of resistance in many pest species, as well as some non-target organisms. Thamnocephalus platyurus derived from agriculturally impacted watersheds are between two and three times less sensitive to commonly applied agrochemicals than T. platyurus from native grassland watersheds. Biological mechanisms that convey such resistance are currently unknown. This study identified the contribution of metabolic enzymes to T. platyurus pesticide resistance using the synergists piperonyl butoxide (PBO) and S,S,S-tributyl phosphorotrithioate (DEF) to inhibit cytochrome P450s or hydrolases, respectively. Inhibition of cytochrome P450s and hydrolases partially restored cyfluthrin and DDT sensitivity in T. platyurus, suggesting other resistance inferring mechanism(s) were also involved. However, inhibition of hydrolases with DEF completely restored methyl parathion sensitivity in pesticide resistant T. platyurus. DDT resistance paralleled cyfluthrin resistance, but did not for methyl parathion resistance. These data suggest that the primary mechanism for the development of resistance to agrochemicals in T. platyurus is due to increased metabolic detoxification.
机译:南部高平原地区广泛使用农药已导致许多害虫物种以及一些非目标生物产生抗药性。受到农业影响的流域的Thamnocephalus platyurus对常用农用化学品的敏感性比天然草原流域的T. platyurus低2-3倍。传递这种抗性的生物学机制目前未知。这项研究使用增效剂胡椒基丁醚(PBO)和S,S,S-三丁基磷酸三硫代酸酯(DEF)分别抑制细胞色素P450或水解酶,从而确定了代谢酶对桔小球菌农药抗性的贡献。抑制细胞色素P450和水解酶部分恢复了桔梗的cyfluthrin和DDT敏感性,表明还涉及其他抗性推断机制。但是,用DEF抑制水解酶可完全恢复对杀虫剂抗药性南美白对虾的甲基对硫磷敏感性。滴滴涕的抗药性与氟氟氰菊酯的抗药性相似,但对甲基对硫磷的抗性却没有。这些数据表明,桔梗对农用化学品产生抗性的主要机制是由于代谢排毒增加。

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