首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Antennal Olfactory Sensilla Responses to Insect Chemical Repellents in the Common Bed Bug, Cimex lectularius
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Antennal Olfactory Sensilla Responses to Insect Chemical Repellents in the Common Bed Bug, Cimex lectularius

机译:普通臭虫,Cimex lectularius对昆虫化学驱虫剂的嗅觉嗅觉反应。

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Populations of the common bed bug Cimex lectularius (Hemiptera; Cimicidae), a temporary ectoparasite on both humans and animals, have surged in many developed countries. Similar to other haematophagous arthropods, C. lectularius relies on its olfactory system to detect semiochemicals in the environment, including both attractants and repellents. To elucidate the olfactory responses of the common bed bug to commonly used insect chemical repellents, particularly haematophagous repellents, we investigated the neuronal responses of individual olfactory sensilla in C. lectularius' antennae to 52 insect chemical repellents, both synthetic and botanic. Different types of sensilla displayed highly distinctive response profiles. While C sensilla did not respond to any of the insect chemical repellents, D gamma sensilla proved to be the most sensitive in response to terpene-derived insect chemical repellents. Different chemical repellents elicited neuronal responses with differing temporal characteristics, and the responses of the olfactory sensilla to the insect chemical repellents were dose-dependent, with an olfactory response to the terpene-derived chemical repellent, but not to the non-terpene-derived chemical repellents. Overall, this study furnishes a comprehensive map of the olfactory response of bed bugs to commonly used insect chemical repellents, providing useful information for those developing new agents (attractants or repellents) for bed bug control.
机译:在许多发达国家,常见的臭虫Cimex lectularius(半翅目;蝉科)的种群是人和动物的临时外寄生虫。与其他食血节肢动物相似,lectlectius依靠其嗅觉系统来检测环境中的化学信息素,包括引诱剂和驱避剂。为了阐明普通臭虫对常用昆虫化学驱虫剂(尤其是食血性驱虫剂)的嗅觉响应,我们调查了C. lectularius触角中单个嗅觉感受器对52种合成和植物化学驱虫剂的神经反应。不同类型的感官表现出非常独特的反应特征。尽管C感官对任何昆虫化学防护剂均无反应,但Dγ感官被证明对源自萜烯的昆虫化学防护剂最为敏感。不同的化学驱避剂引起的神经元反应具有不同的时间特征,嗅觉感受器对昆虫化学驱避剂的反应是剂量依赖性的,对萜烯衍生的化学驱避剂的嗅觉响应,而不是非萜烯衍生的化学嗅觉。驱蚊剂。总的来说,这项研究提供了臭虫对常用的昆虫化学驱避剂的嗅觉反应的综合图,为那些开发新的臭虫控制剂(吸引剂或驱蚊剂)的人提供了有用的信息。

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