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商业杀虫剂配方对不同发育阶段抗杀虫剂热带床虱(半翅目:臭虫科)的效果。

Performance of Commercial Insecticide Formulations Against Different Developmental Stages of Insecticide-Resistant Tropical Bed Bugs (Hemiptera: Cimicidae).

机构信息

Urban Entomology Laboratory, Vector Control Research Unit, School of Biological Sciences, Universiti Sains Malaysia, Penang, Malaysia.

Ecolab Australia, Macquarie Park, NSW, Australia.

出版信息

J Econ Entomol. 2020 Feb 8;113(1):353-366. doi: 10.1093/jee/toz266.

Abstract

This study examined the presence of insecticide resistance in different developmental stages (adults, first instars, and eggs) of the tropical bed bug, Cimex hemipterus (F.) using several insecticide formulations. Adults and first instars of five strains (Queensland, Kuala Lumpur, Bukit Mertajam, Saujana, and Krystal Point) were evaluated using the surface contact method and compared with a susceptible strain (Monheim) of the common bed bug Cimex lectularius L. The insecticide formulations were used at their label rates in this study: Tandem (thiamethoxam [11.6%], lambda-cyhalothrin [3.5%]) at 183.96 mg/m2; Temprid SC (imidacloprid [21%], beta-cyfluthrin [10.5%]) at 106.13 mg/m2; Sumithion 20CS (fenitrothion [20%]) at 250 mg/m2; Pesguard FG161 (d-tetramethrin [4.4%], cyphenothrin [13.2%]) at 110 mg/m2; and Sumithrin 10SEC (d-phenothrin [10%]) at 100 mg/m2. Results showed a very high level of resistance to Pesguard FG161 (388.3 to >605.0 times) and Sumithrin (302.9 to >365.5 times) in all adults of the strains tested, whereas low to high levels of resistance were registered for Tandem (1.4-4.7 times), Temprid (7.3-16.7 times), and Sumithion (1.2-14.6 times) for adults of all bed bug strains. For first instars, resistance to the former two formulations were high to very high (31.4-118.1 times). In contrast, they showed lower resistance to Tandem, Temprid, and Sumithion (1.0-10.2 times). An immersion method used to test on bed bug eggs found high to very high resistance toward all tested formulations. Results demonstrate that the resistance level varies between bed bug developmental stages.

摘要

本研究使用几种杀虫剂配方,检测了不同发育阶段(成虫、第一龄幼虫和卵)的热带臭虫(Cimex hemipterus)(F.)的杀虫剂抗药性。使用表面接触法评估了五个品系(昆士兰州、吉隆坡、武吉美拉、Saujana 和 Krystal Point)的成虫和第一龄幼虫,并与常见臭虫 Cimex lectularius L 的敏感品系(Monheim)进行了比较。本研究中以标签推荐剂量使用了杀虫剂配方:Tandem(噻虫嗪[11.6%],氯氟氰菊酯[3.5%])183.96mg/m2;Temprid SC(吡虫啉[21%],高效氯氟氰菊酯[10.5%])106.13mg/m2;Sumithion 20CS(杀螟松[20%])250mg/m2;Pesguard FG161(d-四氟苯菊酯[4.4%],氯菊酯[13.2%])110mg/m2;Sumithrin 10SEC(d-氯苯醚菊酯[10%])100mg/m2。结果表明,在所测试的所有品系成虫中,对 Pesguard FG161(388.3 至>605.0 倍)和 Sumithrin(302.9 至>365.5 倍)表现出极高的抗药性,而对 Tandem(1.4-4.7 倍)、Temprid(7.3-16.7 倍)和 Sumithion(1.2-14.6 倍)的抗药性则较低。对于第一龄幼虫,对前两种制剂的抗药性为高至高(31.4-118.1 倍)。相比之下,它们对 Tandem、Temprid 和 Sumithion 的抗药性较低(1.0-10.2 倍)。用于测试臭虫卵的浸泡法发现,对所有测试制剂均表现出高至非常高的抗药性。结果表明,臭虫发育阶段之间的抗药性水平存在差异。

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