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Insect Pheromone Receptors – Key Elements in Sensing Intraspecific Chemical Signals

机译:昆虫信息素受体–感知种内化学信号的关键元素

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摘要

Pheromones are chemicals that serve intraspecific communication. In animals, the ability to detect and discriminate pheromones in a complex chemical environment substantially contributes to the survival of the species. Insects widely use pheromones to attract mating partners, to alarm conspecifics or to mark paths to rich food sources. The various functional roles of pheromones for insects are reflected by the chemical diversity of pheromonal compounds. The precise detection of the relevant intraspecific signals is accomplished by specialized chemosensory neurons housed in hair-like sensilla located on the surface of body appendages. Current data indicate that the extraordinary sensitivity and selectivity of the pheromone-responsive neurons (PRNs) is largely based on specific pheromone receptors (PRs) residing in their ciliary membrane. Besides these key elements, proper ligand-induced responses of PR-expressing neurons appear to generally require a putative co-receptor, the so-called “sensory neuron membrane protein 1” (SNMP1). Regarding the PR-mediated chemo-electrical signal transduction processes in insect PRNs, ionotropic as well as metabotropic mechanisms may be involved. In this review, we summarize and discuss current knowledge on the peripheral detection of pheromones in the olfactory system of insects with a focus on PRs and their specific role in the recognition and transduction of volatile intraspecific chemical signals.
机译:信息素是用于种内通讯的化学物质。在动物中,在复杂的化学环境中检测和区分信息素的能力实质上有助于该物种的生存。昆虫广泛使用信息素来吸引交配伙伴,警告物种或标记通往丰富食物来源的路径。信息素对昆虫的各种功能作用通过信息素化合物的化学多样性反映出来。相关种内信号的精确检测是通过位于身体附属物表面的类似头发的感觉器中的专门化学感应神经元来完成的。当前数据表明,信息素反应性神经元(PRN)的非凡敏感性和选择性在很大程度上是基于位于其睫状膜中的特定信息素受体(PRs)。除这些关键因素外,表达PR的神经元的适当配体诱导的反应似乎通常需要假定的共受体,即所谓的“感觉神经元膜蛋白1”(SNMP1)。关于昆虫PRN中PR介导的化学电信号转导过程,可能涉及离子型和代谢型机制。在这篇综述中,我们总结和讨论了昆虫嗅觉系统中信息素的周边检测的当前知识,重点是PR及其在识别和转导挥发性种内化学信号中的特定作用。

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