首页> 美国卫生研究院文献>Journal of Insect Science >Effects of Insecticides on the Fluidity of Mitochondrial Membranes of the Diamondback Moth Plutella xylostella Resistant and Susceptible to Avermectin
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Effects of Insecticides on the Fluidity of Mitochondrial Membranes of the Diamondback Moth Plutella xylostella Resistant and Susceptible to Avermectin

机译:杀虫剂对小菜蛾小菜蛾线粒体膜流动性的影响及对阿维菌素的敏感性和敏感性

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摘要

The effects of various insecticides on the fluidity of mitochondrial membranes and cross-resistance were investigated in the diamondback moth, Plutella xylostella (L.) (Lepidoptera: Plutellidae) using strains that were both resistant and susceptible to avermectin. The resistant strain of P. xylostella, AV-R, developed 1078-fold resistance to avermetins with a high level of cross-resistance to the analogs of avermectins, ivermectin and emamectin benzoate. It had more than 1000 times greater resistance when compared with the avermectin-susceptible strain, XH-S. Mitochondrial membrane fluidity was measured by detecting fluorescence polarization using DPH (1,6-Diphenyl -1,3,5-hexatriene) as the fluorescence probe. Abamectin, emamectin benzoate, ivermectin, cypermethrin and fenvalerate decreased the fluidity of mitochondrial membranes in the XH-S strain at 25°C. However, fipronil and acephate did not change the fluidity of mitochondrial membrane when the concentration of these insecticides was 1×10-4 mol/L. Membrane fluidity increased as the temperature increased. The thermotropic effect on the polarization value of DPH increased as the insecticide concentration was increased. There was a significant difference of mitochondrial membrane fluidity between both XH-S and AV-R when temperature was less than 25°C and no difference was observed when the temperature was more than 25°C. The low-dose abamectin (0.11 mg/L) in vivo treatment caused a significant change of membrane fluidity in the XH-S strain and no change in the AV-R strain. However, a high-dose abamectin (11.86 mg/L) resulted in 100% mortality of the XH-S strain. In vivo treatment may cause a significant change of membrane fluidity in the AV-R strain
机译:在小菜蛾小菜蛾(鳞翅目:Plutellidae)中研究了各种杀虫剂对线粒体膜的流动性和交叉抗性的影响,使用的菌株既对阿维菌素有抗性,又对阿维菌素敏感。小菜蛾的抗性菌株AV-R对阿维美汀产生了1078倍的耐药性,与阿维菌素,伊维菌素和苯甲酸酯阿米菌素的类似物具有高度的交叉耐药性。与抗阿维菌素的菌株XH-S相比,它的抵抗力高出1000倍以上。通过使用DPH(1,6-二苯基-1,3,5-己三烯)作为荧光探针检测荧光极化来测量线粒体膜的流动性。在25°C时,阿维菌素,苯甲酸酯类依维菌素,伊维菌素,氯氰菊酯和灭戊威降低了XH-S菌株中线粒体膜的流动性。然而,当这些杀虫剂的浓度为1×10 -4 mol / L时,氟虫腈和乙酰丙酮不会改变线粒体膜的流动性。膜流动性随温度升高而增加。随着杀虫剂浓度的增加,对DPH极化值的热致作用也增加。当温度低于25°C时,XH-S和AV-R之间的线粒体膜流动性存在显着差异,而当温度高于25°C时,则没有观察到差异。低剂量阿维菌素(0.11 mg / L)体内治疗引起XH-S菌株膜流动性的显着变化,而AV-R菌株则无变化。但是,大剂量阿维菌素(11.86 mg / L)导致XH-S菌株的死亡率为100%。体内治疗可能会导致AV-R菌株的膜流动性发生重大变化

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