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Cycloxaprid: a novel cis-nitromethylene neonicotinoid insecticide to control Bemisia tabaci

机译:Cycloxaprid:一种新型CIS-硝基亚甲基新烟碱杀虫剂,用于控制Bemisia Tabaci

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BACKGROUND Bemisia tabaci is a worldwide insect pest with high ability to develop resistance to many insecticides. Cycloxaprid is a novel cis-configuration neonicotinoid insecticide that is effective against a wide range of imidacloprid-resistant pests. RESULTS The lethal and sublethal effects of cycloxaprid on B. tabaci B were estimated. Cycloxaprid showed higher toxicity against adult, nymph and egg of B. tabaci B than imidacloprid. And cycloxaprid provided better efficacies against B. tabaci than imidacloprid in fields. Moreover, cycloxaprid was similarly toxic to the relatively susceptible and imidacloprid-resistant populations. The LC50 of cycloxaprid against the resistant adult, nymph and egg were 6.2, 11.5 and 111.3 mg L-1, respectively, while they were 5.7, 8.9 and 129.4 mg L-1 for the susceptible population. In addition, when resistant adult of B. tabaci B was treated with LC30 of cycloxaprid (3.2 mg L-1), the net reproductive rate and female ratio of F1 generation B. tabaci were reduced. Moreover, the age-specific fecundity demonstrated the highest fecundity sharply decreased in cycloxaprid (7.0 offspring/ day) treated group compared with the control (26.0 offspring/ day). CONCLUSIONS Our results indicated that cycloxaprid is a promising insecticide for the management of B. tabaci and insecticide-induced resurgence might not occur after exposure of B. tabaci to low sublethal concentrations of cycloxaprid. (c) 2019 Society of Chemical Industry
机译:背景Bemisia Tabaci是一个全球昆虫,具有高能力为许多杀虫剂产生抗性。 Cycloxaprid是一种新型的CIS-Configuration Neonicotinoid杀虫剂,可有效针对各种含吡虫啉抗害虫有效。结果估计环缩叶B. Tabaci B上环己醛的致命和亚致死作用。 Cycloxaprid对Babaci B的成人,若虫和蛋的毒性较高。环己醛和环脂蛋白在田间中的咪酰啉比胰蛋白酶提供更好的效果。此外,环己醛与相对易感和吡虫啉抗性群体类似地毒性。环己啶的LC50分别为抗性成人,若虫和蛋,分别为6.2,11.5和111.3mg L-1,而它们为易感群体为5.7,8.9和129.4mg L-1。此外,当用LC30的环己平(3.2mg L-1)处理B. tabaci B的抗性成人时,减少了F1代B. tabaci的净生殖率和雌性比。此外,与对照(26.0个后代/日)相比,该年龄特异性繁殖力证明了环己醛(7.0后代/日)治疗组中的最高繁殖力急剧下降。结论我们的结果表明,环己醛是对B.塔巴契和杀虫剂诱导的复兴的管理的有希望的杀虫剂,可能不会发生B. tabaci以低亚致苯甲酰浓度的环己醛浓度发生。 (c)2019年化学工业协会

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