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不同蚊虫附器的化感反应调查。

A Survey of Chemoreceptive Responses on Different Mosquito Appendages.

机构信息

Neurotoxicology Laboratory, Department of Entomology and Nematology, Emerging Pathogens Institute, University of Florida, Gainesville, FL.

USDA, ARS, Center for Medical, Agricultural and Veterinary Entomology, Gainesville, FL.

出版信息

J Med Entomol. 2021 Jan 12;58(1):475-479. doi: 10.1093/jme/tjaa154.

Abstract

Research on the functions of insect chemoreceptors have primarily focused on antennae (olfactory receptors) and mouthparts (gustatory receptors). However, chemoreceptive sensilla are also present on other appendages, such as the leg tarsi and the anterior wing margin, and their specific roles in chemoreception and mosquito behavior remain largely unknown. In this study, electrophysiological analyses in an electroantennogram recording format were performed on Aedes aegypti (L., Diptera: Culicidae) antennae, mouthparts, tarsi, and wings during exposure to a variety of insect repellent and attractant compounds. The results provide evidence that the tarsi and wings can sense chemicals in a gaseous form, and that the odors produce differing responses on different appendages. The most consistent and strongest response occurred when exposed to triethylamine (TEA). Antennae and mouthparts showed nearly identical responses pattern to all tested compounds, and their rank orders of effectiveness were similar to those of fore- and mid-leg tarsi. Hindleg tarsi only responded to TEA, indicating that the hind legs are not as chemoreceptive. Wings responded to a range of odorants, but with a different rank order and voltage amplitude. Insights gleaned into the function of these appendages in insect chemoreception are discussed.

摘要

昆虫化感器功能的研究主要集中在触角(嗅觉感受器)和口器(味觉感受器)上。然而,触须上也存在化学感受器,如跗节和前翅缘,它们在化学感受和蚊子行为中的特定作用在很大程度上仍然未知。在这项研究中,我们在电生理记录模式下对埃及伊蚊(L.,双翅目:蚊科)的触角、口器、跗节和翅膀进行了电生理学分析,以研究它们对各种昆虫驱避剂和引诱剂化合物的反应。结果表明,跗节和翅膀可以感知气态化学物质,而且不同的气味在不同的附肢上产生不同的反应。当暴露于三乙胺(TEA)时,跗节和翅膀产生了最一致和最强的反应。触角和口器对所有测试化合物的反应模式几乎相同,它们的有效程度排序与前、中跗节相似。后跗节只对 TEA 有反应,这表明后腿的化学感受能力较差。翅膀对一系列气味有反应,但反应顺序和电压幅度不同。本文讨论了这些附肢在昆虫化学感受中的功能。

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