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Insect growth regulators as potential insecticides to control olive fruit fly (Bactrocera oleae Rossi): insect toxicity bioassays and molecular docking approach

机译:昆虫生长调节剂作为控制橄榄果蝇(Bactrocera oleae Rossi)的潜在杀虫剂:昆虫毒性生物测定和分子对接方法

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摘要

Olive fruit fly, Bactrocera oleae (Rossi), is a key pest in olive orchards, causing serious economic damage. To date, the pest has already developed resistance to the insecticides commonly applied to control it. Thus, in searching for new products for an accurate resistance management programme, targeting the ecdysone receptor (EcR)might provide alternative compounds for use in such programmes.udRESULTS: Residual contact and oral exposure in the laboratory of B. oleae adults to the dibenzoylhydrazine-based compounds methoxyfenozide, tebufenozide and RH-5849 showed different results. Methoxyfenozide and tebufenozide did not provoke anynegative effectsontheadults,but RH-5849 killed98-100%of the treated insects15 days after treatment. Theligand-binding domain (LBD) of the EcR of B. oleae (BoEcR-LBD) was sequenced, and a homology protein model was constructed. Owing to a restricted extent of the ligand-binding cavity of the BoEcR-LBD, docking experiments with the three tested insecticides showed a severe steric clash in the case of methoxyfenozide and tebufenozide, while this was not the case with RH-5849.udCONCLUSION: IGR molecules similar to the RH-5849 molecule, and different from methoxyfenozide and tebufenozide, mightud have potential in controlling this pest.
机译:橄榄果蝇Bactrocera oleae(Rossi)是橄榄果园中的主要害虫,对经济造成严重破坏。迄今为止,该害虫已经对通常用于控制它的杀虫剂产生了抗药性。因此,在寻找新产品以进行准确的抗药性管理计划时,针对蜕皮激素受体(EcR)的药物可能会提供用于此类计划的替代化合物。结果:在油菜双歧杆菌成虫的实验室中,二苯甲酰肼的残留接触和口腔暴露基化合物甲氧基苯乙肼,丁苯芬唑和RH-5849表现出不同的结果。甲氧芬尼和特布芬尼不会对头产生任何负面影响,但是RH-5849在处理15天后杀死了98-100%的被处理昆虫。对油菜芽孢杆菌EcR(BoEcR-LBD)的配体结合结构域(LBD)进行测序,并构建同源蛋白模型。由于BoEcR-LBD的配体结合腔有限,与三种被测杀虫剂的对接实验显示,在甲氧芬尼嗪和特布芬尼嗪的情况下,存在严重的空间冲突,而RH-5849则不是这种情况。 :IGR分子类似于RH-5849分子,但不同于甲氧基苯乙酰胺和戊丁苯乙酰胺,可能具有控制这种有害生物的潜力。

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