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Olfactory Coding in Antennal Neurons of the Malaria Mosquito,Anopheles gambiae

机译:冈比亚按蚊疟蚊触角神经元的嗅觉编码

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Olfactory receptor neurons (ORNs) in the antenna of insects serve to encode odors in action potential activity conducted to the olfactory lobe of the deuterocerebrum.We performed an analysis of the electrophysiological responses of olfactory neurons in the antennae of the female malaria mosquito Anopheles gambiae s.s.and investigated the effect of blood feeding on responsiveness.Forty-four chemicals that are known to be present in human volatile emanations were used as odor stimuli.We identified 6 functional types of trichoid sensilla and 5 functional types of grooved-peg sensilla (GP) based on a hierarchical cluster analysis.Generalist ORNs,tuned to a broad range of odors,moderate specialist ORNs and 2 ORNs tuned to only one odor were identified in different sensilla types.Neurons in GP were tuned to more polar compounds including the important behavioral attractant ammonia and its synergist L-lactic acid,responses to which were found only in GP.Combinatorial coding is the most plausible principle operating in the olfactory system of this mosquito species.We document for the first time both up-and downregulation of ORN responsiveness after blood feeding.Modulation of host-seeking and oviposition behavior is associated with both qualitative and quantitative changes in the peripheral sensory system.
机译:昆虫触角中的嗅觉受体神经元(ORNs)用于编码对氘代大脑的嗅叶进行动作电位活动时的气味。并研究了供血对反应性的影响。使用已知存在于人类挥发性物质中的44种化学物质作为气味刺激物。我们确定了6种功能性的三脉虫感官和5种功能性的沟纹感官(GP)基于层次聚类分析,将通用ORN调节至广泛的气味,在不同的感官类型中鉴定出中等专业的ORN和仅调节至一种气味的2个ORN.GP中的神经元被调节为更多的极性化合物,包括重要的行为引诱剂氨及其协同增效剂L-乳酸,仅在GP中才发现。这项原理在这种蚊子的嗅觉系统中起作用。我们首次记录了采血后ORN反应性的上调和下调。寻求宿主和产卵行为的调节与周围感觉的定性和定量变化有关系统。

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