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Thiamethoxam Resistance in the House Fly Musca domestica L.: Current Status Resistance Selection Cross-Resistance Potential and Possible Biochemical Mechanisms

机译:家蝇对噻虫嗪的抗性:当前状态抗性选择交叉抗性潜力和可能的生化机制

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摘要

The house fly, Musca domestica L., is an important ectoparasite with the ability to develop resistance to insecticides used for their control. Thiamethoxam, a neonicotinoid, is a relatively new insecticide and effectively used against house flies with a few reports of resistance around the globe. To understand the status of resistance to thiamethoxam, eight adult house fly strains were evaluated under laboratory conditions. In addition, to assess the risks of resistance development, cross-resistance potential and possible biochemical mechanisms, a field strain of house flies was selected with thiamethoxam in the laboratory. The results revealed that the field strains showed varying level of resistance to thiamethoxam with resistance ratios (RR) at LC50 ranged from 7.66-20.13 folds. Continuous selection of the field strain (Thia-SEL) for five generations increased the RR from initial 7.66 fold to 33.59 fold. However, resistance declined significantly when the Thia-SEL strain reared for the next five generations without exposure to thiamethoxam. Compared to the laboratory susceptible reference strain (Lab-susceptible), the Thia-SEL strain showed cross-resistance to imidacloprid. Synergism tests revealed that S,S,S-tributylphosphorotrithioate (DEF) and piperonyl butoxide (PBO) produced synergism of thiamethoxam effects in the Thia-SEL strain (2.94 and 5.00 fold, respectively). In addition, biochemical analyses revealed that the activities of carboxylesterase (CarE) and mixed function oxidase (MFO) in the Thia-SEL strain were significantly higher than the Lab-susceptible strain. It seems that metabolic detoxification by CarE and MFO was a major mechanism for thiamethoxam resistance in the Thia-SEL strain of house flies. The results could be helpful in the future to develop an improved control strategy against house flies.
机译:家蝇Musca domestica L.是一种重要的外寄生虫,具有对用于其控制的杀虫剂产生抗性的能力。噻虫嗪是一种新烟碱类杀虫剂,是一种相对较新的杀虫剂,可有效防治家蝇,在全球范围内也有一些耐药性报道。为了了解对噻虫嗪的抗性状态,在实验室条件下评估了八种成年家蝇菌株。另外,为了评估耐药性发展,交叉耐药潜力和可能的生化机制的风险,在实验室中用噻虫嗪选择了家蝇的田间菌株。结果表明,田间菌株对噻虫嗪的抗性水平不同,LC50的抗性比(RR)为7.66-20.13倍。连续选择5代场应变(Thia-SEL),使RR从最初的7.66倍增加到33.59倍。但是,当Thia-SEL菌株在不暴露于噻虫嗪的情况下繁殖了五个世代时,抗药性显着下降。与实验室敏感参考菌株(实验室敏感)相比,Thia-SEL菌株对吡虫啉显示出交叉耐药性。协同作用测试显示,S,S,S-三丁基三硫代磷酸三乙酯(DEF)和胡椒基丁醚(PBO)在Thia-SEL菌株中产生了噻虫嗪效果的协同作用(分别为2.94和5.00倍)。此外,生化分析表明,Thia-SEL菌株中的羧酸酯酶(CarE)和混合功能氧化酶(MFO)的活性显着高于Lab易感菌株。看来,CarE和MFO进行的代谢解毒是家蝇Thia-SEL菌株对噻虫嗪抗药性的主要机制。该结果可能对将来开发改进的对家蝇的控制策略很有帮助。

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