首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Complementary function and integrated wiring of the evolutionarily distinct Drosophila olfactory subsystems.
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Complementary function and integrated wiring of the evolutionarily distinct Drosophila olfactory subsystems.

机译:进化上不同的果蝇嗅觉子系统的互补功能和综合布线。

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To sense myriad environmental odors, animals have evolved multiple, large families of divergent olfactory receptors. How and why distinct receptor repertoires and their associated circuits are functionally and anatomically integrated is essentially unknown. We have addressed these questions through comprehensive comparative analysis of the Drosophila olfactory subsystems that express the ionotropic receptors (IRs) and odorant receptors (ORs). We identify ligands for most IR neuron classes, revealing their specificity for select amines and acids, which complements the broader tuning of ORs for esters and alcohols. IR and OR sensory neurons exhibit glomerular convergence in segregated, although interconnected, zones of the primary olfactory center, but these circuits are extensively interdigitated in higher brain regions. Consistently, behavioral responses to odors arise from an interplay between IR- and OR-dependent pathways. We integrate knowledge on the different phylogenetic and developmental properties of these receptors and circuits to propose models for the functional contributions and evolution of these distinct olfactory subsystems.
机译:为了感觉到各种各样的环境气味,动物已经进化出多个大家族的不同的嗅觉受体。本质上还不清楚如何以及为什么不同的受体库及其相关回路在功能上和解剖学上整合在一起。我们已经通过对果蝇嗅觉子系统的综合比较分析解决了这些问题,果蝇嗅觉子系统表达了离子性受体(IRs)和加味剂受体(ORs)。我们确定了大多数IR神经元类别的配体,揭示了它们对选定的胺和酸的特异性,这补充了酯和醇类OR的更广泛调节。 IR和OR感觉神经元在初级嗅觉中心的分离区域(尽管相互连接)中表现出肾小球会聚,但这些电路在较高的大脑区域广泛地相互交叉。一致地,对气味的行为响应是由依赖IR和OR的途径之间的相互作用产生的。我们整合了有关这些受体和电路的不同系统发生和发育特性的知识,以为这些独特的嗅觉子系统的功能贡献和进化提出模型。

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