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Thiamethoxam acts as a target-site synergist of spinosad in resistant strains of Frankliniella occidentalis

机译:噻虫嗪在西方富兰克氏菌的抗性菌株中作为多杀菌素的目标位点增效剂

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BACKGROUND: Previous studies have suggested that the resistance mechanism towards spinosad in Frankliniella occidentalis (Pergande) is an altered target site. Like the neonicotinoids, the spinosyns act on nicotinic acetylcholine receptors (nAChRs) in insects, but at a distinct site. The changes in nAChRs related to spinosad resistance in thrips might involve interaction with neonicotinoids. In this study, the efficacy of spinosad and neonicotinoids, alone and in combination, was evaluated in susceptible and spinosad-resistant thrips strains. RESULTS: The neonicotinoids tested were imidacloprid, thiacloprid, acetamiprid, thiamethoxam and clothianidin. No cross-resistance was shown between spinosad and any of the neonicotinoids. However, an increased toxicity was observed when a mixture of spinosad with thiamethoxam or clothianidin was tested. No synergism was found in the susceptible strains. The more spinosad-resistant the thrips strain, the stronger was the synergism. CONCLUSION: Data suggest that spinosad and thiamethoxam may interact at the nAChRs in spinosad-resistant thrips, facilitating enhanced insecticidal action.
机译:背景:先前的研究表明,西方富兰克氏菌(Pergande)对多杀菌素的抗性机制是一个改变的靶位。像新烟碱类一样,多杀菌素作用于昆虫中的烟碱乙酰胆碱受体(nAChRs),但作用部位不同。与蓟马中的多杀菌素抗性有关的nAChRs的变化可能涉及与新烟碱的相互作用。在这项研究中,在易感性和抗多杀菌素性蓟马菌株中评估了多杀菌素和新烟碱类药物的功效,单独或组合使用。结果:所测试的新烟碱类药物为吡虫啉,噻虫啉,乙酰胺,噻虫嗪和可比尼丁。在多杀菌素和任何新烟碱之间均未发现交叉耐药性。然而,当测试多杀菌素与噻虫嗪或可比尼丁的混合物时,观察到毒性增加。在易感菌株中未发现协同作用。蓟马对蓟马的抵抗力越强,协同作用越强。结论:数据表明多杀菌素和噻虫嗪可能在抗多杀菌素的蓟马中的nAChRs处相互作用,从而促进杀虫作用。

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