首页> 外文期刊>Journal of Economic Entomology >Baseline susceptibility of the diamondback moth (Lepidoptera: Plutellidae) to Chlorantraniliprole in China
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Baseline susceptibility of the diamondback moth (Lepidoptera: Plutellidae) to Chlorantraniliprole in China

机译:中国小菜蛾(鳞翅目:P科)对氯吡虫啉的基线敏感性

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Diamondback moth, Plutella xylostella (L.) (Lepidoptera: Plutellidae), has evolved resistance to various kinds of insecticides in the field. Chlorantraniliprole, which is a new pesticide of the anthranilic diamide group, provides potent and broad-spectrum activity within the insect order Lepidoptera. This insecticide provides a new option for control of P. xylostella populations resistant to other chemicals. The susceptibility of 16 field populations and seven laboratory maintained strains of P. xylostella to chlorantraniliprole were determined through leaf dip bioassay. The susceptibility variation among 16 field populations was low (five-fold), with median lethal concentrations (LC50 values) varying from 0.221 to 1.104 mg/liter. However, wider ranges of variation in LC50 values (10-fold) were observed among seven laboratory strains. Low level tolerance (six- to 10-fold) was detected in two laboratory-selected strains and three field-collected populations when compared with the susceptible Roth strain. A discriminating concentration (15 mg/liter) was calibrated from pooled toxicological data of the 16 field populations, as an important first step in resistance management, for the routine monitoring of resistance in the future. When assessed at the established discriminating dose 15 mg/liter, seven laboratory strains and five field populations showed an average mortality of 99.75% (from 98 to100%). Synergism assays showed metabolic enzymes might be involved in chlorantraniliprole detoxification in the susceptible Roth strain, but not in the additional observed tolerance of strains selected for resistance with other insecticides.
机译:小菜蛾(Plutella xylostella(L.)(鳞翅目:Plutellidae))在该领域已发展出对各种杀虫剂的抗性。邻苯二酰胺类新农药氯吡虫啉在鳞翅目昆虫体内具有强力和广谱活性。这种杀虫剂为控制对其他化学物质有抗性的小菜蛾种群提供了新的选择。通过浸叶生物测定法确定了16个田间种群和7个实验室维持的小菜蛾对毒死ant的敏感性。 16个田间种群的敏感性变化很低(五倍),中位致死浓度(LC50值)从0.221到1.104 mg / L不等。但是,在七个实验室菌株中观察到LC50值的变化范围更广(10倍)。与易感的罗斯菌株相比,在两个实验室选择的菌株和三个现场采集的种群中检测到低水平的耐受性(六至十倍)。从16个田间种群的毒理学数据汇总中,确定了区分浓度(15 mg / L),这是耐药性管理的重要第一步,用于将来的常规耐药性监测。以确定的15毫克/升的区分剂量进行评估时,七种实验室菌株和五个野外种群的平均死亡率为99.75%(从98%至100%)。协同作用试验显示,在易感的罗斯菌株中,代谢酶可能参与了氯虫腈的解毒作用,但与其他对其他杀虫剂具有抗性的菌株所观察到的其他耐受性无关。

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