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2020 年至 2023 年中国褐飞虱(Nilaparvata lugens (Stål))的大面积调查和杀虫剂抗性监测。

Area-wide survey and monitoring of insecticide resistance in the brown planthopper, Nilaparvata lugens (Stål), from 2020 to 2023 in China.

机构信息

College of Plant Protection, Nanjing Agricultural University / State & Local Joint Engineering Research Center of Green Pesticide-Invention and Application, Nanjing 210095, Jiangsu, China.

College of Plant Protection, Nanjing Agricultural University / State & Local Joint Engineering Research Center of Green Pesticide-Invention and Application, Nanjing 210095, Jiangsu, China.

出版信息

Pestic Biochem Physiol. 2024 Nov;205:106173. doi: 10.1016/j.pestbp.2024.106173. Epub 2024 Oct 16.

DOI:10.1016/j.pestbp.2024.106173
PMID:39477626
Abstract

The brown planthopper (BPH), Nilaparvata lugens (Stål), is a notorious pest affecting Asian rice crops. The evolution of insecticide resistance in BPH has emerged as a significant challenge in effectively managing this pest. This study revealed the resistance status of BPH to nine insecticides in ten provinces and Shanghai City in China from 2020 to 2023. Monitoring results showed that the resistance of BPH to triflumezopyrim, nitenpyram, and dinotefuran increased rapidly. The average resistance ratio of BPH to triflumezopyrim increased from 2.5 to 7.1 fold, nitenpyram from 18.3 to 37.7 fold, and dinotefuran from 119.5 to 268.1 fold. All populations remained extremely high resistance to imidacloprid, thiamethoxam, and buprofezin. Most field populations of BPH maintained moderate resistance to chlorpyrifos and sulfoxaflor, and high resistance to pymetrozine by rice stem dipping method. However, considering the reproduction-inhibiting character of pymetrozine, susceptible to low resistance levels to pymetrozine were monitored by Insecticide Resistance Action Committee (IRAC) NO.005 method. This result indicated that pymetrozine might lose efficacy in the control of application generation, but it could significantly inhibit the reproduction of field populations of BPH. Additionally, we compared the expression levels of 11 nicotinic acetylcholine receptor (nAChR) genes, the targets of nAChR competitive modulators, in four field populations (FY23, YH23, LJ23, LP23) and susceptible strain. The expression level of nAChR α4 was significantly reduced in all field populations, while α1, α2, α6, and α7 were significantly reduced in some field populations. Our findings provide valuable information for resistance management strategies in N. lugens and offer new insights into the resistance mechanisms of nAChR competitive modulators.

摘要

褐飞虱(BPH),Nilaparvata lugens(Stål),是一种影响亚洲水稻作物的臭名昭著的害虫。BPH 对杀虫剂的抗药性进化已成为有效管理这种害虫的重大挑战。本研究揭示了 2020 年至 2023 年中国十个省和上海市褐飞虱对九种杀虫剂的抗性状况。监测结果表明,褐飞虱对三氟苯嘧啶、吡虫啉和呋虫胺的抗性迅速增加。褐飞虱对三氟苯嘧啶的平均抗性比从 2.5 倍增加到 7.1 倍,吡虫啉从 18.3 倍增加到 37.7 倍,呋虫胺从 119.5 倍增加到 268.1 倍。所有种群对吡虫啉、噻虫嗪和噻虫胺仍然保持极高的抗性。褐飞虱的大多数田间种群对氯菊酯和三氟甲吡醚保持中度抗性,而用稻茎浸渍法对吡丙醚保持高抗性。然而,考虑到吡丙醚的抑制繁殖特性,用杀虫剂抗性行动委员会(IRAC)NO.005 方法监测对吡丙醚的低抗性敏感种群。这一结果表明,吡丙醚在防治应用世代时可能会失效,但它可以显著抑制田间褐飞虱种群的繁殖。此外,我们比较了四个田间种群(FY23、YH23、LJ23、LP23)和敏感株系中 11 个烟碱型乙酰胆碱受体(nAChR)基因的表达水平,这些基因是 nAChR 竞争性调节剂的靶标。所有田间种群的 nAChRα4 表达水平均显著降低,而某些田间种群的α1、α2、α6 和α7 表达水平也显著降低。我们的研究结果为褐飞虱的抗药性管理策略提供了有价值的信息,并为 nAChR 竞争性调节剂的抗药性机制提供了新的见解。

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