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磷化氢敏感和抗性米象(鞘翅目:象甲科)和赤拟谷盗(鞘翅目:拟步甲科)在接触现有和新型活性成分的控释材料后的移动性。

Mobility of Phosphine-Susceptible and -Resistant Rhyzopertha dominica (Coleoptera: Bostrichidae) and Tribolium castaneum (Coleoptera: Tenebrionidae) After Exposure to Controlled Release Materials With Existing and Novel Active Ingredients.

机构信息

Department of Entomology, Kansas State University, 1603 Old Claflin Place, Manhattan, KS, USA.

USDA, Agricultural Research Service, Center for Grain and Animal Health Research, 1515 College Avenue, Manhattan, KS, USA.

出版信息

J Econ Entomol. 2022 Jun 8;115(3):888-903. doi: 10.1093/jee/toac033.

Abstract

There is interest in developing controlled release materials (CRMs) with novel modes of action to improve resistance management. Long-lasting insecticide-incorporated netting (LLIN) with deltamethrin has been effectively used against stored-product pests. Here, we evaluated the efficacy of different CRMs (LLIN or packaging) with each of four active ingredients (AI) (deltamethrin, permethrin, indoxacarb, and dinotefuran) and compared them to control CRMs in reducing movement and increasing mortality of phosphine-susceptible and -resistant Rhyzopertha dominica and Tribolium castaneum. Adults were exposed for 0.5, 2, or 60 min, and movement was assessed immediately or after 24, or 168 h using video-tracking and Ethovision software. We recorded total distance and velocity traveled by adults. Finally, we tested higher rates of each AI on surrogate netting material (e.g., standardized-sized cheesecloth) and varied exposure time to obtain median lethal time (LT50) for each compound and susceptibility. Exposure to LLIN with deltamethrin significantly reduced the movement of both species compared to the other CRMs regardless of their susceptibility to phosphine. Deltamethrin was the most effective AI for both species, while dinotefuran and indoxacarb were the least effective for R. dominica and T. castaneum adults, respectively. Most AIs resulted in appreciable and approximately equivalent mortality at higher concentrations among phosphine-susceptible and -resistant strains. Our results demonstrate that CRMs can be an additional approach to combat phosphine-resistant populations of stored product insects around food facilities. Other compounds such as permethrin, dinotefuran, and indoxacarb are also effective against phosphine-resistant populations of these key stored product insects except indoxacarb for T. castaneum.

摘要

人们对开发具有新型作用模式的控释材料 (CRMs) 以提高抗药性管理感兴趣。含氯菊酯的长效防虫网 (LLIN) 已被有效用于防治仓储害虫。在这里,我们评估了不同的控释材料(LLIN 或包装)与四种活性成分(AI)(氯菊酯、氯菊酯、茚虫威和呋虫胺)中的每一种的功效,并将其与对照控释材料进行了比较,以减少磷化氢敏感和抗性谷蠹和赤拟谷盗的运动并增加其死亡率。成虫暴露 0.5、2 或 60 分钟,使用视频跟踪和 Ethovision 软件立即或暴露后 24 或 168 小时评估运动,并记录成虫的总距离和速度。最后,我们测试了每种 AI 在替代防虫网材料(例如,标准大小的粗棉布)上的更高剂量,并改变暴露时间,以获得每种化合物的致死时间 (LT50) 和敏感性。与其他控释材料相比,含氯菊酯的 LLIN 显著降低了两种物种的运动,无论它们对磷化氢的敏感性如何。氯菊酯对两种物种都是最有效的 AI,而呋虫胺和茚虫威对谷蠹和赤拟谷盗成虫的效果最差。在对磷化氢敏感和抗性菌株的较高浓度下,大多数 AI 导致明显且大致相当的死亡率。我们的结果表明,控释材料可以作为对抗粮食设施周围磷化氢抗性仓储害虫种群的另一种方法。其他化合物,如氯菊酯、呋虫胺和茚虫威,对这些关键仓储害虫的磷化氢抗性种群也有效,除了茚虫威对赤拟谷盗无效。

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