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Toxicity and neurophysiological impacts of plant essential oil components on bed bugs (Cimicidae: Hemiptera)

机译:植物精油成分对臭虫的毒性和神经生理影响(蝉科:半翅目)

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摘要

Bed bugs (Cimex lectularius L.) are globally important human parasites. Integrated pest management (IPM) approaches, which include the use of essential oil-based insecticidal compounds, have been proposed for their control. This study aimed to define insecticidal activity and neurophysiological impacts of plant essential oil constituents. The topical and fumigant toxicity of 15 compounds was evaluated against adult male bed bugs. Neurological effects of the 6 most toxicologically active compounds were also determined. In both topical and fumigant bioassays, carvacrol and thymol were the most active compounds. The potency of bifenthrin (a pyrethroid insecticide) in topical bioassays was 72,000 times higher than carvacrol, while vapors of dichlorvos (an organophosphate insecticide) were 445 times more potent than thymol. Spontaneous electrical activity measurements of the bed bug nervous system demonstrated neuroinhibitory effects of carvacrol, thymol and eugenol, whereas linalool produced an excitatory effect. Although citronellic acid and (±)-camphor increased baseline activity of the nervous system their effects were not statistically significant. Bifenthrin also caused neuroexcitation, which is consistent with its known mode of action. These comparative toxicity and neurological impact findings provide new information for formulating effective essential oil-based insecticides for bed bug IPM and conducting mode-of-action studies on individual essential oil components.
机译:臭虫(Cimex lectularius L.)是全球重要的人类寄生虫。已经提出了综合虫害管理(IPM)方法,包括使用基于精油的杀虫化合物进行控制。这项研究旨在确定植物精油成分的杀虫活性和神经生理影响。评估了15种化合物对成年雄性臭虫的局部和熏蒸毒性。还确定了6种最具毒理学活性的化合物的神经学作用。在局部和熏蒸生物测定中,香芹酚和百里酚是最有效的化合物。联苯菊酯(一种拟除虫菊酯类杀虫剂)在局部生物测定中的效力是香芹酚的72,000倍,而敌敌畏(一种有机磷酸盐杀虫剂)的蒸气效力是百里酚的445倍。臭虫神经系统的自发电活动测量结果显示了香芹酚,百里酚和丁香酚的神经抑制作用,而芳樟醇则产生兴奋作用。尽管香茅酸和(±)樟脑可增加神经系统的基线活性,但其作用在统计学上并不显着。联苯菊酯还引起神经兴奋,这与其已知的作用方式是一致的。这些比较的毒性和神经学影响发现为制定用于臭虫IPM的有效的基于精油的杀虫剂以及对单个精油成分进行作用方式研究提供了新信息。

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