Otsuna Hideo, Ito Kei
Institute of Molecular and Cellular Biosciences, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.
J Comp Neurol. 2006 Aug 20;497(6):928-58. doi: 10.1002/cne.21015.
In insects, visual information is processed in the optic lobe and conveyed to the central brain. Although neural circuits within the optic lobe have been studied extensively, relatively little is known about the connection between the optic lobe and the central brain. To understand how visual information is read by the neurons of the central brain, and what kind of centrifugal neurons send the control signal from the central brain to the optic lobe, we performed a systematic analysis of the visual projection neurons that connect the optic lobe and the central brain of Drosophila melanogaster. By screening approximately 4,000 GAL4 enhancer-trap strains we identified 44 pathways. The overall morphology and the direction of information of each pathway were investigated by expressing cytoplasmic and presynapsis-targeted fluorescent reporters. A canonical nomenclature system was introduced to describe the area of projection in the central brain. As the first part of a series of articles, we here describe 14 visual projection neurons arising specifically from the lobula. Eight pathways form columnar arborization in the lobula, whereas the remaining six form tangential or tree-like arborization. Eleven are centripetal pathways, among which nine terminate in the ventrolateral protocerebrum. Terminals of each columnar pathway form glomerulus-like structures in different areas of the ventrolateral protocerebrum. The posterior lateral protocerebrum and the optic tubercle were each contributed by a single centripetal pathway. Another pathway connects the lobula on each side of the brain. Two centrifugal pathways convey signals from the posterior lateral protocerebrum to the lobula.
在昆虫中,视觉信息在视叶中进行处理并传递至中枢脑。尽管对视叶内的神经回路已进行了广泛研究,但对视叶与中枢脑之间的连接却知之甚少。为了了解中枢脑的神经元如何读取视觉信息,以及何种离心神经元从中枢脑向视叶发送控制信号,我们对连接黑腹果蝇视叶与中枢脑的视觉投射神经元进行了系统分析。通过筛选约4000个GAL4增强子陷阱菌株,我们确定了44条通路。通过表达细胞质和突触前靶向荧光报告基因,研究了每条通路的整体形态和信息传递方向。引入了一个规范的命名系统来描述中枢脑中的投射区域。作为系列文章的第一篇,我们在此描述了14个特别起源于小叶的视觉投射神经元。其中8条通路在小叶中形成柱状分支,而其余6条形成切向或树状分支。11条是向心通路,其中9条终止于腹外侧原脑。每条柱状通路的终末在腹外侧原脑的不同区域形成类似小球的结构。后外侧原脑和视结节分别由一条向心通路支配。另一条通路连接脑两侧的小叶。两条离心通路将信号从后外侧原脑传递至小叶。