Brignall Alexandra C, Cloutier Jean-François
Montreal Neurological Institute, Centre for Neuronal Survival, 3801 University, Room MP105, Montréal, QC, H3A 2B4, Canada.
Department of Anatomy and Cell Biology, McGill University, Montréal, Canada.
Cell Mol Life Sci. 2015 Dec;72(24):4697-709. doi: 10.1007/s00018-015-2029-5. Epub 2015 Sep 2.
Sensory systems enable us to encode a clear representation of our environment in the nervous system by spatially organizing sensory stimuli being received. The organization of neural circuitry to form a map of sensory activation is critical for the interpretation of these sensory stimuli. In rodents, social communication relies strongly on the detection of chemosignals by the vomeronasal system, which regulates a wide array of behaviours, including mate recognition, reproduction, and aggression. The binding of these chemosignals to receptors on vomeronasal sensory neurons leads to activation of second-order neurons within glomeruli of the accessory olfactory bulb. Here, vomeronasal receptor activation by a stimulus is organized into maps of glomerular activation that represent phenotypic qualities of the stimuli detected. Genetic, electrophysiological and imaging studies have shed light on the principles underlying cell connectivity and sensory map formation in the vomeronasal system, and have revealed important differences in sensory coding between the vomeronasal and main olfactory system. In this review, we summarize the key factors and mechanisms that dictate circuit formation and sensory coding logic in the vomeronasal system, emphasizing differences with the main olfactory system. Furthermore, we discuss how detection of chemosignals by the vomeronasal system regulates social behaviour in mice, specifically aggression.
感觉系统使我们能够通过在空间上组织所接收的感觉刺激,在神经系统中对我们的环境形成清晰的表征。神经回路的组织形成感觉激活图谱对于解释这些感觉刺激至关重要。在啮齿动物中,社会交流强烈依赖犁鼻系统对化学信号的检测,犁鼻系统调节包括配偶识别、繁殖和攻击在内的一系列行为。这些化学信号与犁鼻感觉神经元上的受体结合,导致副嗅球小球内的二级神经元激活。在这里,刺激引起的犁鼻受体激活被组织成代表所检测刺激表型特征的小球激活图谱。遗传学、电生理学和成像研究揭示了犁鼻系统中细胞连接性和感觉图谱形成的潜在原理,并揭示了犁鼻系统和主嗅觉系统在感觉编码上的重要差异。在这篇综述中,我们总结了决定犁鼻系统中回路形成和感觉编码逻辑的关键因素和机制,强调了与主嗅觉系统的差异。此外,我们讨论了犁鼻系统对化学信号的检测如何调节小鼠的社会行为,特别是攻击行为。