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首页> 外文期刊>The Journal of Experimental Biology >Evolution, developmental expression and function of odorant receptors in insects
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Evolution, developmental expression and function of odorant receptors in insects

机译:昆虫中气味受体的进化,发育表达和功能

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摘要

Animals rely on their chemosensory system to discriminate among a very large number of attractive or repulsive chemical cues in the environment, which is essential to respond with proper action. The olfactory sensory systems in insects share significant similarities with those of vertebrates, although they also exhibit dramatic differences, such as the molecular nature of the odorant receptors (ORs): insect ORs function as heteromeric ion channelswith a commonOrco subunit, unlike the G-protein-coupled olfactory receptors found in vertebrates. Remarkable progress has recently been made in understanding the evolution, development and function of insect odorant receptor neurons (ORNs). These studies have uncovered the diversity of olfactory sensory systems among insect species, including in eusocial insects that rely extensively on olfactory sensing of pheromones for social communication. However, further studies, notably functional analyses, are needed to improve our understanding of the origins of the Orco-OR system, the mechanisms of ORN fate determination, and the extraordinary diversity of behavioral responses to chemical cues.
机译:动物依赖于他们的化学感受系统,以歧视环境中的大量吸引力或令人厌恶的化学线索,这对于以适当的行动做出反应至关重要。昆虫中的嗅觉感觉系统与脊椎动物的嗅觉感觉系统共享显着的相似性,尽管它们也表现出剧烈差异,例如气味受体(或者)的分子性质:昆虫或作为甲蛋白的甲蛋白亚单位的异统离子通道。 - 在脊椎动物中发现的偶联嗅觉受体。最近在理解昆虫气味受体神经元(ORN)的演变,开发和功能方面取得了显着进展。这些研究发现昆虫物种中的嗅觉感官系统的多样性,包括在挑剔昆虫中依赖于广泛的信息素对社会沟通的嗅觉感应。然而,需要进一步的研究,特别是功能分析,以改善我们对矿石或系统的起源的理解,orn命运决定的机制以及对化学提示的行为反应的非凡多样性。

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