Neuroscience Graduate Program, Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, CA 94720, USA.
J Neurophysiol. 2011 Apr;105(4):1711-21. doi: 10.1152/jn.00591.2010. Epub 2011 Feb 2.
Insect pheromonal glomeruli are thought to track the fine spatiotemporal features of one or a few odorants to aid conspecific localization. However, it is not clear whether they function differently from generalist glomeruli, which respond to many odorants. In this study, we test how DA1, a model pheromonal glomerulus in the fruit fly, represents the spatial and temporal properties of its input, compared with other glomeruli. We combine calcium imaging and electrical stimulation in an isolated brain preparation for a simultaneous, unbiased comparison of the functional organization of many glomeruli. In contrast to what is found in other glomeruli, we find that ipsilateral and contralateral stimuli elicit distinct spatial patterns of activity within DA1. DA1's output shows a greater preference for ipsilateral stimuli in males than in females. DA1 experiences greater and more rapid inhibition than other glomeruli, allowing it to report slight interantennal delays in stimulus onset in a "winner-take-all" manner. DA1's ability to encode spatiotemporal input features distinguishes it from other glomeruli in the fruit fly antennal lobe but relates it to pheromonal glomeruli in other insect species. We propose that DA1 is specialized to help the fly localize and orient with respect to pheromone sources.
昆虫信息素嗅小球被认为可以跟踪一个或几个气味的精细时空特征,以帮助同种定位。然而,目前尚不清楚它们是否与响应多种气味的通用嗅小球有不同的功能。在这项研究中,我们通过钙成像和电刺激在一个分离的脑标本中进行联合测试,以对许多嗅小球的功能组织进行同时、无偏的比较,从而检验模型信息素嗅小球 DA1 如何表示其输入的空间和时间特性。与其他嗅小球中发现的情况不同,我们发现同侧和对侧刺激在 DA1 内引发了不同的活动空间模式。在雄性中,DA1 的输出对同侧刺激表现出比雌性更强的偏好。与其他嗅小球相比,DA1 经历的抑制作用更大且更快,使其能够以“胜者通吃”的方式报告刺激起始时触角间轻微的延迟。DA1 编码时空输入特征的能力使其区别于果蝇触角叶中的其他嗅小球,但与其他昆虫物种中的信息素嗅小球相关。我们提出,DA1 专门用于帮助果蝇定位和定向气味源。