Department of Anatomy, Howard University College of Medicine, 520 W St., N.W., Washington, DC, 20059, USA,
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2013 Nov;199(11):929-46. doi: 10.1007/s00359-013-0842-6. Epub 2013 Jul 28.
An open question in olfactory coding is the extent of interglomerular connectivity: do olfactory glomeruli and their neurons regulate the odorant responses of neurons innervating other glomeruli? In the olfactory system of the moth Manduca sexta, the response properties of different types of antennal olfactory receptor cells are known. Likewise, a subset of antennal lobe glomeruli has been functionally characterized and the olfactory tuning of their innervating neurons identified. This provides a unique opportunity to determine functional interactions between glomeruli of known input, specifically, (1) glomeruli processing plant odors and (2) glomeruli activated by antennal stimulation with pheromone components of conspecific females. Several studies describe reciprocal inhibitory effects between different types of pheromone-responsive projection neurons suggesting lateral inhibitory interactions between pheromone component-selective glomerular neural circuits. Furthermore, antennal lobe projection neurons that respond to host plant volatiles and innervate single, ordinary glomeruli are inhibited during antennal stimulation with the female's sex pheromone. The studies demonstrate the existence of lateral inhibitory effects in response to behaviorally significant odorant stimuli and irrespective of glomerular location in the antennal lobe. Inhibitory interactions are present within and between olfactory subsystems (pheromonal and non-pheromonal subsystems), potentially to enhance contrast and strengthen odorant discrimination.
嗅球及其神经元是否调节支配其他嗅球神经元的气味反应?在鳞翅目昆虫烟夜蛾的嗅觉系统中,不同类型的触角嗅觉受体细胞的反应特性是已知的。同样,已经对一部分触角叶嗅球进行了功能表征,并确定了其支配神经元的嗅觉调谐。这为确定已知输入的嗅球之间的功能相互作用提供了独特的机会,特别是(1)处理植物气味的嗅球,和(2)由同种雌性信息素成分刺激触角而激活的嗅球。几项研究描述了不同类型的信息素反应性投射神经元之间的相互抑制作用,这表明信息素成分选择性嗅球神经回路之间存在侧向抑制相互作用。此外,对寄主植物挥发物有反应并支配单个普通嗅球的触角叶投射神经元在受到雌性性信息素刺激时会受到抑制。这些研究表明,在对行为相关的有意义气味刺激的反应中存在侧向抑制作用,而与触角叶中嗅球的位置无关。抑制性相互作用存在于嗅觉子系统(信息素和非信息素子系统)内和之间,可能增强对比并加强对气味的辨别。