Mamiya Akira, Beshel Jennifer, Xu Chunsu, Zhong Yi
Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, USA.
PLoS One. 2008;3(12):e4063. doi: 10.1371/journal.pone.0004063. Epub 2008 Dec 30.
The Drosophila mushroom body (MB) is a higher olfactory center where olfactory and other sensory information are thought to be associated. However, how MB neurons of Drosophila respond to sensory stimuli other than odor is not known. Here, we characterized the responses of MB neurons to a change in airflow, a stimulus associated with odor perception. In vivo calcium imaging from MB neurons revealed surprisingly strong and dynamic responses to an airflow stimulus. This response was dependent on the movement of the 3(rd) antennal segment, suggesting that Johnston's organ may be detecting the airflow. The calyx, the input region of the MB, responded homogeneously to airflow on. However, in the output lobes of the MB, different types of MB neurons responded with different patterns of activity to airflow on and off. Furthermore, detailed spatial analysis of the responses revealed that even within a lobe that is composed of a single type of MB neuron, there are subdivisions that respond differently to airflow on and off. These subdivisions within a single lobe were organized in a stereotypic manner across flies. For the first time, we show that changes in airflow affect MB neurons significantly and these effects are spatially organized into divisions smaller than previously defined MB neuron types.
果蝇的蘑菇体(MB)是一个高级嗅觉中枢,人们认为嗅觉和其他感觉信息在此关联。然而,果蝇的蘑菇体神经元如何对气味以外的感觉刺激做出反应尚不清楚。在这里,我们描述了蘑菇体神经元对气流变化(一种与气味感知相关的刺激)的反应。对蘑菇体神经元进行的体内钙成像显示,它们对气流刺激有着惊人的强烈且动态的反应。这种反应依赖于第三触角节段的运动,这表明约翰斯顿器官可能在检测气流。蘑菇体的输入区域——萼,对气流开启的反应是均匀的。然而,在蘑菇体的输出叶中,不同类型的蘑菇体神经元对气流开启和关闭有着不同的活动模式反应。此外,对这些反应的详细空间分析表明,即使在由单一类型的蘑菇体神经元组成的叶内,也存在对气流开启和关闭反应不同的细分区域。单个叶内的这些细分区域在不同果蝇中以刻板的方式组织起来。我们首次表明,气流变化会显著影响蘑菇体神经元,并且这些影响在空间上被组织成比先前定义的蘑菇体神经元类型更小的分区。