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J Hazard Mater. 2024 Jul 15;473:134621. doi: 10.1016/j.jhazmat.2024.134621. Epub 2024 May 14.
2
Editorial: The side effects of insecticides on insects and the adaptation mechanisms of insects to insecticides.社论:杀虫剂对昆虫的副作用及昆虫对杀虫剂的适应机制
Front Physiol. 2023 Sep 22;14:1287219. doi: 10.3389/fphys.2023.1287219. eCollection 2023.
3
Monitoring resistance to methomyl and synergism in the non-target Musca domestica from cotton fields of Punjab and Sindh provinces, Pakistan.监测巴基斯坦旁遮普省和信德省棉田中非靶标家蝇对灭多威的抗性和增效作用。
Sci Rep. 2023 May 1;13(1):7074. doi: 10.1038/s41598-023-34331-4.
4
Insights into insecticide-resistance mechanisms in invasive species: Challenges and control strategies.入侵物种抗杀虫剂机制的见解:挑战与控制策略
Front Physiol. 2023 Jan 9;13:1112278. doi: 10.3389/fphys.2022.1112278. eCollection 2022.
5
Selection for resistance to pirimiphos-methyl, permethrin and spinosad in a field strain of Sitophilus oryzae: resistance risk assessment, cross-resistance potential and synergism of insecticides.米象田间品系对甲基嘧啶磷、氯菊酯和多杀菌素的抗性选育:抗性风险评估、交互抗性潜力及杀虫剂增效作用
Environ Sci Pollut Res Int. 2023 Mar;30(11):29921-29928. doi: 10.1007/s11356-022-24325-6. Epub 2022 Nov 23.
6
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Spatio-temporal variations and ecological risks of organochlorine pesticides in surface waters of a plateau lake in China.中国高原湖泊地表水中有机氯农药的时空变化及生态风险。
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埃弗茨田间和实验室菌株对甲基嘧啶磷、高效氯氰菊酯和多杀霉素的敏感性及抗性谱。

Susceptibility and resistance profiles of field and laboratory strains of Everts to pirimiphos-methyl, alpha-cypermethrin and spinetoram.

作者信息

Bukhari Muhammad, Khan Hafiz Azhar Ali

机构信息

Department of Entomology, University of the Punjab, Lahore, Punjab, Pakistan.

出版信息

PeerJ. 2025 May 13;13:e19423. doi: 10.7717/peerj.19423. eCollection 2025.

DOI:10.7717/peerj.19423
PMID:40386236
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12083465/
Abstract

The khapra beetle, Everts, 1898, is a significant pest of stored commodities worldwide. Insecticides are heavily relied upon to manage . However, the long-term usage of insecticides has led to the development of resistance to insecticides, reducing their effectiveness against . This study investigated variations in susceptibility to pirimiphos-methyl, alpha-cypermethrin and spinetoram in a laboratory and seven field strains of , using dose-mortality bioassays. Metabolic resistance mechanisms were investigated through synergism studies using piperonyl butoxide (PBO) and -tributyl phosphorotrithioate (DEF). Susceptibility of the laboratory strain was the highest to all insecticides compared to the field strains. For field strains, the LD values ranged from 25.9 to 49.6 mg/kg grain for pirimiphos-methyl, 15.0 to 40.5 mg/kg grain for alpha-cypermethrin, and 2.2 to 6.0 mg/kg grain for spinetoram. Compared to the laboratory strain, field strains of exhibited significant resistance ratios ranging from: 19.9 to 38.1 fold against pirimiphos-methyl, 12.3 to 45.0 fold against alpha-cypermethrin, and 7.3 to 20.0 against spinetoram. In synergism bioassays, there was a significant effect of enzyme inhibitors on enhancing suceptibility to pirimiphos-methyl only in field strains, suggesting P450 monooxygenase and esterases may contribute to pirimiphos-methyl resistance. In conclusion, variable susceptibility to insecticides was observed across different strains of . Reduced susceptibility to insecticides in field strains compared to the laboratory strain poses challenges for effective control of .

摘要

谷斑皮蠹(Everts,1898年)是全球储存商品的一种重要害虫。杀虫剂在害虫防治中被大量依赖。然而,杀虫剂的长期使用导致了害虫对其产生抗性,降低了它们对害虫的防治效果。本研究使用剂量-死亡率生物测定法,调查了谷斑皮蠹实验室菌株和七个田间菌株对甲基嘧啶磷、高效氯氰菊酯和多杀菌素的敏感性差异。通过使用胡椒基丁醚(PBO)和三丁基磷酸三硫酯(DEF)的增效研究,研究了代谢抗性机制。与田间菌株相比,实验室菌株对所有杀虫剂的敏感性最高。对于田间菌株,甲基嘧啶磷的LD值范围为25.9至49.6毫克/千克谷物,高效氯氰菊酯为15.0至40.5毫克/千克谷物,多杀菌素为2.2至6.0毫克/千克谷物。与实验室菌株相比,谷斑皮蠹田间菌株对甲基嘧啶磷的抗性倍数为19.9至38.1倍,对高效氯氰菊酯为12.3至45.0倍,对多杀菌素为7.3至20.0倍。在增效生物测定中,酶抑制剂仅在田间菌株中对增强甲基嘧啶磷的敏感性有显著影响,表明P450单加氧酶和酯酶可能导致对甲基嘧啶磷的抗性。总之,在不同的谷斑皮蠹菌株中观察到了对杀虫剂的敏感性差异。与实验室菌株相比,田间菌株对杀虫剂的敏感性降低,这给谷斑皮蠹的有效防治带来了挑战。