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首页> 外文期刊>Journal of entomology >Monitoring the effect of insecticide selection on Culex pipiens (Diptera: Culicidae) larval susceptibility to malathion and lambda-cyhalothrin.
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Monitoring the effect of insecticide selection on Culex pipiens (Diptera: Culicidae) larval susceptibility to malathion and lambda-cyhalothrin.

机译:监测杀虫剂选择对淡色库蚊(Culexidae)幼虫对马拉硫磷和λ-氯氟氰菊酯敏感性的影响。

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The susceptibility of Culex pipiens collected from different localities of the Sharkia Governorate, Egypt, to malathion and lambda-cyhalothrin was investigated for 11 successive generations. Larval Cx. pipiens developed 57 and 305-fold resistance to malathion and lambda-cyhalothrin, respectively after 11 successive generations of selection pressure. The susceptibility of unselected generations, due to non-exposure to both insecticides for 11 generations, was increased to 1.1-fold in F11for malathion and to 1.5-fold in F11 for lambda-cyhalothrin. Acetylcholinestrase (AChE) activity increased gradually in both selected and unselected generations until the 11th generation. The activity of AChE in generations (F1-F7) selected with malathion was significantly lower than that of the lambda-cyhalothrin selected and unselected generations. General esterase activity increased 3.7 and 3.0-fold (malathion) and 4.2 and 3.6-fold (lambda-cyhalothrin) compared with the susceptible strain (LS-CP), when either alpha -napthyl acetate (NA) or beta -NA were used as general substrates in F11 selected generations, respectively. A significant increase in glutathione-S-transferase (GST) activity was noticed in the F11 generation recording 6400 and 8800 micro moL min-1 mg-1 protein for malathion-and lambda-cyhalothrin-selected generations, respectively. The ratios recorded in the 11th generations were 3.6 and 4.9 fold as compared with LS-CP for malathion and lambda-cyhalothrin selected generations, respectively. Our results indicate that the Cx. pipiens mosquito strain from Egypt can increase resistance to malathion and lambda-cyhalothrin if these insecticides are continuously or rotationally used to control this species. Increased resistance is likely to be associated with increased activity of target and metabolic enzyme systems.
机译:连续11代研究了从埃及Sharkia省不同地区收集的淡色库蚊对马拉硫磷和氟氯氰菊酯的敏感性。幼虫Cx。在连续11代选择压力后,pipiens对马拉硫磷和lamcyda cyhalothrin的抵抗力分别为57和305倍。由于未接触两种杀虫剂11代,未选定世代的易感性导致马拉硫磷在F 11 中增加到1.1倍,在F 11 对于λ-氟氯氰菊酯。乙酰胆碱酯酶(AChE)活性在选定和未选定的世代中都逐渐增加,直到第11代。马拉硫磷选择的几代(F 1 -F 7 )中的AChE活性显着低于选择的和未选择的λ-氟氯氰菊酯。当使用α-萘乙酸乙酸钠(NA)或β-NA作为敏感菌株时,与易感菌株(LS-CP)相比,一般酯酶活性增加了3.7倍和3.0倍(马拉硫磷)和4.2倍和3.6倍(λ-氟氯氰菊酯)。 F 11 代中的一般底物。 F 11 世代中记录了6400和8800 micro moL min -1 mg -1 <的谷胱甘肽S-转移酶(GST)活性显着增加。分别用于马拉硫磷和λ-氟氯氰菊酯选择的蛋白质。与LS-CP相比,在第11代中记录的马拉硫磷和lambda-cyhalothrin选择的几代分别为3.6倍和4.9倍。我们的结果表明Cx。如果将这些杀虫剂连续或轮换用于控制该物种,则来自埃及的pipiens蚊子菌株可以提高对马拉硫磷和lamcyda-cyhalothrin的抗性。抗药性增加可能与靶标和代谢酶系统的活性增加有关。

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