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Laboratory studies on the mechanisms of resistance to permethrin in a field‐selected strain of house flies

机译:田间选择的家蝇菌株对氯菊酯耐药机制的实验室研究

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AbstractEnhanced oxidative metabolism appeared to be a major factor involved in resistance to permethrin in a field strain of house flies, selected with permethrin over 4 years. This was shown in the 7.8‐fold synergism by piperonyl butoxide which reduced the resistance ratio from 97 to 15. The rate of permethrin detoxication was significantly higher (P=0.05) in the resistant flies compared with a susceptible strain or resistant flies pretreated with piperonyl butoxide. The esterase inhibitorS,S,S‐tributyl phosphorotrithioate did not reduce the level of resistance to permethrin in the resistant strain, although some hydrolytic metabolism was apparent. Rates of penetration were similar in susceptible and resistant flies and in resistant flies pre‐treated with piperonyl butoxide. A minor unidentified resistance factor, possibly reduced sensitivity of the nervous system, may also have been present in the resistant s
机译:摘要增强的氧化代谢似乎是家蝇田间菌株对氯菊酯耐药性的主要因素,使用氯菊酯选择超过4年。这体现在胡椒基丁醇的 7.8 倍协同作用中,将电阻比从 97 降低到 15。与用胡椒基丁醇预处理的易感菌株或耐药果蝇相比,耐药果蝇的氯菊酯解毒率显著更高(P=0.05)。酯酶抑制剂S,S,S-三丁基硫代磷酸酯并未降低耐药菌株对氯菊酯的耐药性水平,尽管有一些明显的水解代谢。易感和耐药苍蝇与用胡椒酰丁醇预处理的耐药苍蝇的渗透率相似。一个轻微的不明阻力因素,可能降低神经系统的敏感性,也可能存在于抵抗中

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