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Resistance to Permethrin β-cyfluthrin and Diazinon in Florida Horn Fly Populations

机译:佛罗里达角蝇种群对氯菊酯β-氟氰菊酯和二嗪农的抗性

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摘要

Horn flies, Haematobia irritans, a major cattle pest in the USA, cause substantial economic losses and current control methods rely heavily on insecticides. Three horn fly populations were evaluated for insecticide susceptibility to permethrin, β-cyfluthrin, and diazinon. Susceptibility was variable by population, with the greatest resistance exhibited by a 66-fold resistance ratio (RR) to permethrin and >14-fold RR to diazinon. Mechanisms of resistance were determined using molecular techniques and enzymatic assays. The knockdown resistance (kdr) genotype (L150F) associated with pyrethroid resistance, and a G262A mutation in acetylcholinesterase, previously associated with organophosphate resistance, were found in all field populations evaluated. Insensitivity of diazoxon at the acetylcholinesterase (AChE) target site was significantly different in horn flies from one of the field sites. For metabolic detoxifying enzymes, cytochrome P450 nor general esterases showed a significant difference between field strains and a laboratory susceptible strain. Pyrethroid resistance was likely due to the presence of the L150F mutation in the population. In vitro studies targeting the AChE enzyme did not support the notion that the G262A mutation was the sole cause of resistance to organophosphates, and, therefore, the exact resistance mechanism to diazinon was not able to be confirmed.
机译:角蝇(Hematobia irritans)是美国的一种主要牛害虫,造成了巨大的经济损失,目前的防治方法严重依赖于杀虫剂。评价了三个角蝇种群对氯菊酯,β-氟氰菊酯和二嗪农的杀虫剂敏感性。易感性因种群而异,对苄氯菊酯的抗药性比(RR)为66倍,对二嗪农的抗药性> 14倍,显示出最大的抗药性。使用分子技术和酶法测定抗性机制。在所有评估的田间种群中均发现了与拟除虫菊酯抗性相关的基因敲除抗性(kdr)基因型(L150F),以及先前与有机磷酸酯抗性相关的乙酰胆碱酯酶G262A突变。重氮x对乙酰胆碱酯酶(AChE)靶位点的不敏感性在角蝇中与田间位点之一显着不同。对于代谢解毒酶,细胞色素P450或普通酯酶在野外菌株和实验室易感菌株之间显示出显着差异。拟除虫菊酯类抗药性可能是由于人群中存在L150F突变。针对AChE酶的体外研究不支持G262A突变是对有机磷酸酯耐药的唯一原因,因此无法确定对二嗪农的确切耐药机制。

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