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首页> 外文期刊>Pest Management Science >Is attract-and-kill technology potent against insecticide-resistant Lepidoptera?
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Is attract-and-kill technology potent against insecticide-resistant Lepidoptera?

机译:诱杀技术对抗虫鳞翅目昆虫有效吗?

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Attract-and-kill techniques, associating an attractant and a contact insecticide in a sticky formulation, are a new way of controlling Lepidopteran pests. Insecticide resistance may, however, limit the effectiveness and even the attractiveness of such formulations where resistance pleiotropic effects influence pheromone perception. We have tested this hypothesis on resistant codling moths Cydia pomonella (L) using a commercial formulation containing (E,E)-8,10-dodecadien-1-ol (codlemone), the major component of the sex pheromone, as an attractant and permethrin as toxicant. We first compared the attractiveness of codlemone in a wind tunnel and the contact toxicity of pyrethroids on males of one susceptible and of three strains selected for resistance to diflubenzuron, deltamethrin and azinphos-methyl. The dose-response relationships of males of susceptible and resistant strains to codlemone did not differ significantly. The deltamethrin-selected strain was the most resistant to pyrethroids, exhibiting 138-, 25- and 18-fold resistance ratios to deltamethrin. cypermethrin and permethrin, respectively. The efficiency of the attracticide formulation, applied successively on filter paper support, glass support and wood support, was estimated by recording the mortality delay of males after natural contact with the formulation in the wind tunnel. The deltamethrin-and diflubenzuron-resistant strains were significantly less affected than the susceptible strain by contact with the attracticide on the wooden support, exhibiting 58- and 2.3-fold greater LT50 ratios, respectively. Mortality of deltamethrin-resistant moths did not exceed 40% after 48h. The LT50 value was significantly greater on filter paper support than on the two other supports. Surprisingly, the LT50 ratio of the deltamethrin-resistant strain was markedly higher on filter paper support (1021-fold), which was more absorbent, than on the glass support (31-fold). No sublethal effects in terms of pheromone response, mating or fecundity occurred in moths surviving contact with the attracticide. Choice of insecticides in attracticide formulations will be influenced by the resistance background of the target pests. Principles of insecticide resistance management may also be applied to attract-and-kill technology by alternating with other insecticides or control methods.
机译:以粘性配方结合引诱剂和接触性杀虫剂的诱杀技术是防治鳞翅目害虫的新方法。然而,在多效抗性影响信息素感知的情况下,抗杀虫剂可能会限制此类制剂的有效性甚至吸引力。我们使用含有性信息素主要成分(E,E)-8,10-dodecadien-1-ol(codlemone)作为引诱剂的商业配方对抗性苹果d蛾Cydia pomonella(L)进行了验证。氯菊酯作为有毒物质。我们首先比较了鳕鱼酮在风洞中的吸引力和拟除虫菊酯对一种易感者和三种对地氟苯隆,溴氰菊酯和对谷硫磷有抗性的菌株对男性的接触毒性。男性易感菌株和抗性菌株对鳕鱼精的剂量-反应关系没有显着差异。溴氰菊酯选择的菌株对拟除虫菊酯的抗性最高,对溴氰菊酯的抗性比为138、25和18倍。氯氰菊酯和氯菊酯分别。通过记录男性在风洞中自然接触制剂后的死亡率延迟来估计相继应用于滤纸载体,玻璃载体和木材载体上的杀菌剂制剂的效率。通过与木制支撑物上的杀真菌剂接触,对溴氰菊酯和双氟苯隆的抗性菌株比易感菌株受到的影响要小得多,其LT50比率分别高出58倍和2.3倍。 48h后耐溴氰菊酯的蛾的死亡率不超过40%。滤纸支架上的LT50值明显大于其他两个支架上的LT50值。令人惊讶地,耐溴氰菊酯的菌株的LT50比率在滤纸载体上(1021倍)显着更高,其比玻璃载体上(31倍)更具吸收性。与杀虫剂接触的飞蛾在信息素反应,交配或繁殖力方面没有亚致死作用。杀虫剂配方中杀虫剂的选择将受到目标害虫抗性本底的影响。通过与其他杀虫剂或控制方法交替使用,杀虫剂抗性管理原理也可以应用于吸引和杀死技术。

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