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Acute olfactory response of Culex mosquitoes to a human- and bird-derived attractant

机译:库蚊蚊对人和鸟源引诱剂的急性嗅觉反应

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摘要

West Nile virus, which is transmitted by Culex mosquitoes while feeding on birds and humans, has emerged as the dominant vector borne disease in North America. We have identified natural compounds from humans and birds, which are detected with extreme sensitivity by olfactory receptor neurons (ORNs) on the antennae of Culex pipiens quinquefasciatus (Cx. quinquefasciatus). One of these semiochemicals, nonanal, dominates the odorant spectrum of pigeons, chickens, and humans from various ethnic backgrounds. We determined the specificity and sensitivity of all ORN types housed in different sensilla types on Cx. quinquefasciatus antennae. Here, we present a comprehensive map of all antennal ORNs coding natural ligands and their dose-response functions. Nonanal is detected by a large array of sensilla and is by far the most potent stimulus; thus, supporting the assumption that Cx. quinquefasciatus can smell humans and birds. Nonanal and CO_2 synergize, thus, leading to significantly higher catches of Culex mosquitoes in traps baited with binary than in those with individual lures.
机译:西尼罗河病毒是库蚊蚊子以鸟类和人类为食时传播的,已成为北美地区主要的媒介传播疾病。我们已经从人和鸟中鉴定出天然化合物,这些化合物可以通过淡色库蚊(Clex。piqueens quinquefasciatus)触角上的嗅觉受体神经元(ORN)极其灵敏地检测到。这些化学信息素中的一种,壬醛,占据着来自不同种族背景的鸽子,鸡和人类的气味谱。我们确定了Cx上不同感官类型中容纳的所有ORN类型的特异性和敏感性。 quinquefasciatus触角。在这里,我们提出了编码天然配体及其剂量反应功能的所有触角ORN的综合图。大量的感官可以检测到壬醛,它是迄今为止最有效的刺激。因此,支持Cx的假设。 quinquefasciatus可以闻到人类和鸟类的气味。因此,壬醛和CO_2协同作用,导致诱捕用二元诱饵诱捕的库克斯蚊子的捕获量明显高于单独诱饵。

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