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Detection and perception of generic host volatiles by mosquitoes: responses to CO2 constrains host-seeking behaviour

机译:蚊子的普通宿主挥发物检测和感知:对CO2的响应约束寻找宿主的行为

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Natural selection has favoured specialization in anthropophilic mosquito host choice, yet in the absence of human hosts, females feed on a selected range of vertebrates. For host recognition, we hypothesize that mosquitoes primarily rely on generic host volatiles. Detection and perception of such compounds would provide the mosquito with a flexible, yet constrained, odour coding system that could delineate host preference. In this study, we show that the quintessential generic volatile for host-seeking, carbon dioxide, activates and attracts the malaria mosquito, Anopheles coluzzii , and the arbovirus vectors, Aedes aegypti and Culex quinquefasciatus , within boundaries set by the dynamic range and coding capacity of the CO2-sensitive olfactory receptor neurons. These boundaries are sufficiently broad to elicit behavioural responses to various hosts within their preferred host range. This study highlights the significance of the sensitivity of the carbon dioxide detection system and its regulation of host seeking and recognition.
机译:自然选择有利于人体蚊子宿主选择的专业化,但在没有人体宿主的情况下,女性饲料在选定的脊椎动物范围内。对于主机认可,我们假设蚊子主要依赖通用宿主挥发物。检测和对这些化合物的感知将提供蚊子,其具有柔性但受约束的气味编码系统,可以描绘宿主偏好。在这项研究中,我们表明,寻求宿主的典型通用挥发性,激活和吸引疟疾蚊子,鼻咽溃疡和腹腔病毒载体,Aedes Aegypti和Culex Quinquefascasciatus,在由动态范围和编码容量设定的界限内CO 2 - 密贴嗅受体神经元。这些边界足够广泛地引发对其优选的主机范围内各种宿主的行为响应。本研究突出了二氧化碳检测系统敏感性及其对宿主寻求和识别的调节的重要性。

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