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杜比亚蜚蠊(Ommatissus lybicus de Bergevin)对溴氰菊酯和杀螟松的抗性及可能的生化机制(同翅目:猎蝽科)。

Resistance to deltamethrin and fenitrothion in dubas bug, Ommatissus lybicus de Bergevin (Homoptera: Tropiduchidae) and possible biochemical mechanisms.

机构信息

Plant Protection Research Center, Directorate General of Agriculture and Livestock Research, Ministry of Agriculture and Fisheries, Muscat, 121, Oman.

Department of Entomology, University of Agriculture, Faisalabad, 38000, Pakistan.

出版信息

Sci Rep. 2020 Aug 6;10(1):13220. doi: 10.1038/s41598-020-70150-7.

Abstract

Environmental pollution, ill-effects on human health, insecticide resistance development and insect pest resurgence are some serious problems that may arise due to excessive chemical spraying for pest control. Despite of heavy aerial and surface insecticide spraying, incomplete control of Ommatissus lybicus de Bergevin 1930 (Homoptera: Tropiduchidae) is reported in Oman every year, which requires investigation of insecticides resistance in pest. Fifteen populations of O. lybicus, collected from diverse vicinities were exposed along with a deltamethrin-selected (DEL-SEL) and lab-susceptible (LAB-SUS) strain to deltamethrin and fenitrothion insecticides in bioassay tests for estimation of their resistance status. All the field populations of O. lybicus, exhibited minor (RR = 3-5-folds) to low (RR = 5-10-folds) levels of resistance to deltamethrin, however, two out fifteen populations collected from Al-Hajir and Sint were found susceptible against fenitrothion (RR < 3-folds). Enzyme assays were conducted to detect the activities of cytochrome p-450-reductase (CPR), glutathione s-transferase (GST) and acetylcholinesterase (AChE) in the field collected, DEL-SEL and LAB-SUS strains of O. lybicus. Results revealed significantly increased activities of all enzymes in the field collected as well as DEL-SEL strains of O. lybicus when compared with LAB-SUS strains.

摘要

由于过度喷洒化学农药进行虫害防治,可能会出现环境污染、对人类健康的不良影响、杀虫剂抗性发展以及虫害卷土重来等严重问题。尽管在阿曼进行了大量的空中和地面杀虫剂喷洒,但每年仍报告 Ommatissus lybicus de Bergevin 1930(同翅目:Tropiduchidae)控制不完全,这需要对害虫的杀虫剂抗性进行调查。从不同地区采集的 15 个 O. lybicus 种群与经过选择的(DEL-SEL)和实验室敏感(LAB-SUS)品系一起暴露在拟除虫菊酯和 Fenitrothion 杀虫剂的生物测定试验中,以评估它们的抗性状况。所有野外种群对氯菊酯的抗性水平均较低(RR=3-5 倍)至中等(RR=5-10 倍),但从 Al-Hajir 和 Sint 采集的 15 个种群中的两个对 Fenitrothion 敏感(RR<3 倍)。进行酶测定以检测 O. lybicus 野外采集、DEL-SEL 和 LAB-SUS 品系中的细胞色素 p-450-还原酶(CPR)、谷胱甘肽 S-转移酶(GST)和乙酰胆碱酯酶(AChE)的活性。结果表明,与 LAB-SUS 品系相比,野外采集和 DEL-SEL 品系的 O. lybicus 中所有酶的活性均显著增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af5d/7411060/bd5002c73f76/41598_2020_70150_Fig1_HTML.jpg

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