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昆虫嗅觉:受体、信号转导与行为。

Insect olfaction: receptors, signal transduction, and behavior.

作者信息

Sato K, Touhara K

机构信息

Department of Integrated Biosciences, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba, 277-8562, Japan.

出版信息

Results Probl Cell Differ. 2009;47:121-38. doi: 10.1007/400_2008_10.

Abstract

The insect olfactory system is a suitable model for exploring molecular function of odorant receptors, axonal projection of olfactory receptor neurons onto secondary neurons, and the neural circuit for odor perception. Recent progress in the study of insect olfaction revealed that the heteromeric insect olfactory receptor complex forms a cation nonselective ion channel directly gated by odor or pheromone ligands independent of known G-protein signaling pathways. Despite fundamental differences in transduction machineries between insects and vertebrates, the anatomical and functional features of insect odor-coding strategy are similar and thus justify any consideration of mammalian olfaction in the study of insects. The understanding of the molecular mechanism of insect olfaction will help in the development of insect repellents for controlling insect pest and vector populations for a wide range of pathogens.

摘要

昆虫嗅觉系统是探索气味受体分子功能、嗅觉受体神经元向二级神经元的轴突投射以及气味感知神经回路的合适模型。昆虫嗅觉研究的最新进展表明,异源昆虫嗅觉受体复合物形成一种阳离子非选择性离子通道,该通道直接由气味或信息素配体门控,独立于已知的G蛋白信号通路。尽管昆虫和脊椎动物在转导机制上存在根本差异,但昆虫气味编码策略的解剖学和功能特征相似,因此在昆虫研究中考虑哺乳动物嗅觉是合理的。对昆虫嗅觉分子机制的理解将有助于开发昆虫驱避剂,以控制害虫和多种病原体载体的种群数量。

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