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家蝇(Musca domestica L.)田间品系对环丙氨嗪的抗性:抗性风险评估及生化机制

Cyromazine resistance in a field strain of house flies, Musca domestica L.: Resistance risk assessment and bio-chemical mechanism.

作者信息

Khan Hafiz Azhar Ali, Akram Waseem

机构信息

Institute of Agricultural Sciences, University of the Punjab, Lahore, Pakistan.

Department of Entomology, University of Agriculture, Faisalabad, Pakistan.

出版信息

Chemosphere. 2017 Jan;167:308-313. doi: 10.1016/j.chemosphere.2016.10.018. Epub 2016 Oct 11.

Abstract

Developing resistance management strategies for eco-friendly insecticides is essential for the management of insect pests without harming the environment. Cyromazine is a biorational insecticide with very low mammalian toxicity. Resistance to cyromazine has recently been reported in house flies from Punjab, Pakistan. In order to propose a resistance management strategy for cyromazine, experiments were planned to study risk for resistance development, possibility of cross-resistance and bio-chemical mechanisms. A field strain of house flies with 8.78 fold resistance ratio (RR) to cyromazine was re-selected under laboratory conditions. After seven rounds of selection (G1-G7), the RR values rapidly increased from 8.8 to 211 fold. However, these values declined to 81fold when the cyromazine selected (CYR-SEL) strain was reared without selection pressure, suggesting an unstable nature of resistance. The CYR-SEL strain showed lack of cross-resistance to pyriproxyfen, diflubenzuron, and methoxyfenozide. Synergism bioassays using enzyme inhibitors: piperonyl butoxide (PBO) and S,S,S-tributylphosphorotrithioate (DEF), and metabolic enzyme analyses revealed increased activity of carboxylesterase (CarE) and mixed-function oxidase (MFO) in the CYR-SEL strain compared to the laboratory susceptible (Lab-susceptible) strain, suggesting the metabolic resistance mechanism responsible for cyromazine resistance in the CYR-SEL strain. In conclusion, risk of rapid development of cyromazine resistance under consistent selection pressure discourages the sole reliance on cyromazine for controlling house flies in the field. The unstable nature of cyromazine resistance provides window for restoring cyromazine susceptibility by uplifting selection pressure in the field. Moreover, lack of cross-resistance between cyromazine and pyriproxyfen, diflubenzuron, or methoxyfenozide in the CYR-SEL strain suggest that cyromazine could be rotated with these insecticides whenever resistance crisis occur in the field.

摘要

制定环保型杀虫剂的抗性管理策略对于在不损害环境的情况下防治害虫至关重要。环丙氨嗪是一种对哺乳动物毒性极低的生物合理杀虫剂。最近在巴基斯坦旁遮普省的家蝇中报道了对环丙氨嗪的抗性。为了提出环丙氨嗪的抗性管理策略,计划进行实验以研究抗性发展风险、交叉抗性可能性和生化机制。在实验室条件下对具有8.78倍抗性比(RR)的家蝇田间品系进行重新选择。经过七轮选择(G1 - G7),RR值从8.8迅速增加到211倍。然而,当在没有选择压力的情况下饲养环丙氨嗪选择(CYR - SEL)品系时,这些值降至81倍,表明抗性具有不稳定性。CYR - SEL品系对吡丙醚、除虫脲和甲氧虫酰肼没有交叉抗性。使用酶抑制剂:胡椒基丁醚(PBO)和三丁基三硫代磷酸酯(DEF)的增效生物测定以及代谢酶分析表明,与实验室敏感(Lab - susceptible)品系相比,CYR - SEL品系中的羧酸酯酶(CarE)和多功能氧化酶(MFO)活性增加,表明代谢抗性机制是CYR - SEL品系中环丙氨嗪抗性的原因。总之,在持续选择压力下环丙氨嗪抗性快速发展的风险不鼓励在田间仅依靠环丙氨嗪来控制家蝇。环丙氨嗪抗性的不稳定性为通过提高田间选择压力来恢复环丙氨嗪敏感性提供了机会。此外,CYR - SEL品系中环丙氨嗪与吡丙醚、除虫脲或甲氧虫酰肼之间缺乏交叉抗性表明,每当田间出现抗性危机时,环丙氨嗪可以与这些杀虫剂轮换使用。

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