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Multimodal Integration of Carbon Dioxide and Other Sensory Cues Drives Mosquito Attraction to Humans

机译:二氧化碳和其他感官提示的多峰整合驱动蚊子吸引人类

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摘要

Multiple sensory cues emanating from humans are thought to guide blood-feeding female mosquitoes to a host. To determine the relative contribution of carbon dioxide (CO_2) detection to mosquito hostseeking behavior, we mutated the AaegGr3 gene, a subunit of the heteromeric CO_2 receptor in Aedes aegypti mosquitoes. Gr3 mutants lack electrophysiological and behavioral responses to CO_2. These mutants also fail to show CO_2-evoked responses to heat and lactic acid, a human-derived attractant, suggesting that CO_2 can gate responses to other sensory stimuli. Whereas attraction of Gr3 mutants to live humans in a large semi-field environment was only slightly impaired, responses to an animal host were greatly reduced in a spatial-scale-dependent manner. Synergistic integration of heat and odor cues likely drive host-seeking behavior in the absence of CO_2 detection. We reveal a networked series of interactions by which multimodal integration of CO_2, human odor, and heat orchestrates mosquito attraction to humans.
机译:人类发出的多种感官线索被认为可以将吸血的雌性蚊子引导至宿主。为了确定二氧化碳(CO_2)检测对蚊子宿主行为的相对贡献,我们突变了埃及伊蚊(Aedes aegypti)蚊中异源CO_2受体的亚基AaegGr3基因。 Gr3突变体缺乏对CO_2的电生理和行为响应。这些突变体也未能显示出CO_2诱发的对热和乳酸(一种人类来源的引诱剂)的响应,表明CO_2可以控制对其他感觉刺激的响应。尽管在轻微的半田野环境中,Gr3突变体对活人的吸引力仅受到轻微损害,但对动物宿主的反应却以空间尺度依赖的方式大大降低了。在没有CO_2检测的情况下,热量和气味提示的协同整合可能会推动寻找宿主的行为。我们揭示了一系列相互作用的网络关系,通过这些相互作用,CO_2,人的气味和热量多模式整合,从而诱使蚊子吸引人。

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