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A Flight Sensory-Motor to Olfactory Processing Circuit in the Moth Manduca sexta

机译:飞蛾天蛾的嗅觉到嗅觉处理回路的飞行。

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摘要

Neural circuits projecting information from motor to sensory pathways are common across sensory domains. These circuits typically modify sensory function as a result of motor pattern activation; this is particularly so in cases where the resultant behavior affects the sensory experience or its processing. However, such circuits have not been observed projecting to an olfactory pathway in any species despite well characterized active sampling behaviors that produce reafferent mechanical stimuli, such as sniffing in mammals and wing beating in the moth Manduca sexta. In this study we characterize a circuit that connects a flight sensory-motor center to an olfactory center in Manduca. This circuit consists of a single pair of histamine immunoreactive (HA-ir) neurons that project from the mesothoracic ganglion to innervate a subset of ventral antennal lobe (AL) glomeruli. Furthermore, within the AL we show that the M. sexta histamine B receptor (MsHisClB) is exclusively expressed by a subset of GABAergic and peptidergic LNs, which broadly project to all olfactory glomeruli. Finally, the HA-ir cell pair is present in fifth stage instar larvae; however, the absence of MsHisClB-ir in the larval antennal center indicates that the circuit is incomplete prior to metamorphosis and importantly prior to the expression of flight behavior. Although the functional consequences of this circuit remain unknown, these results provide the first detailed description of a circuit that interconnects an olfactory system with motor centers driving flight behaviors including odor-guided flight.
机译:神经回路将信息从运动路径传递到感觉路径在整个感觉域中很常见。这些电路通常会由于马达模式的激活而改变感觉功能。在最终行为影响感官体验或其处理的情况下尤其如此。但是,尽管具有充分特征的主动采样行为会产生反作用力的机械刺激,例如在哺乳动物中嗅探和在蛾天蛾的翅中跳动,但尚未观察到此类电路在任何物种中都指向嗅觉途径。在这项研究中,我们描述了一个将飞行感觉运动中心与嗅觉中心相连的电路。该回路由一对单组胺免疫反应(HA-ir)神经元组成,它们从中胸神经节突出以支配腹侧触角小叶(AL)肾小球。此外,在AL内,我们显示了M. sexta组胺B受体(MsHisClB)仅由GABA能和肽能LN的一个子集表达,后者广泛投射到所有嗅觉肾小球。最后,HA-ir细胞对存在于五龄幼虫中。然而,在幼虫触角中心不存在MsHisClB-ir,这表明该电路在变态之前,特别是在飞行行为表达之前是不完整的。尽管该电路的功能后果仍然未知,但是这些结果提供了将嗅觉系统与驱动飞行中心(包括气味引导飞行)的汽车中心互连的电路的第一个详细说明。

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