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果蝇小叶板垂直和水平系统神经元的结构。

Structure of the vertical and horizontal system neurons of the lobula plate in Drosophila.

作者信息

Scott Ethan K, Raabe Thomas, Luo Liqun

机构信息

Department of Biological Sciences, Stanford University, Stanford, California 94305, USA.

出版信息

J Comp Neurol. 2002 Dec 23;454(4):470-81. doi: 10.1002/cne.10467.

Abstract

The lobula plate in the optic lobe of the fly brain is a high-order processing center for visual information. Within the lobula plate lie a small number of giant neurons that are responsible for the detection of wide field visual motion. Although the structure and motion sensitivity of these cells have been extensively described in large flies, the system has not been described systematically in Drosophila. Here, we use the mosaic analysis with a repressible cell marker (MARCM) system to analyze a subset of these cells, the horizontal and vertical systems. Our results suggest that the Drosophila horizontal system is similar to those described in larger flies, with three neurons fanning their dendrites over the lobula plate. We found that there are six neurons in the Drosophila vertical system, a figure that compares with 9-11 neurons in large flies. Even so, the Drosophila vertical system closely resembles the systems of larger flies, with each neuron in Drosophila having an approximate counterpart in large flies. This anatomical similarity implies that the inputs to the vertical system are similarly organized in these various fly species, and that it is likely that the Drosophila neurons respond to motions similar to those sensed by their specific structural counterparts in large flies. Additionally, the similar appearance of vertical system cells in multiple cell clones demonstrates that they share a common developmental lineage. Access to these cells in Drosophila should allow for the use of genetic tools in future studies of horizontal and vertical system function.

摘要

果蝇大脑视叶中的小叶板是视觉信息的高级处理中心。在小叶板内存在少数巨型神经元,它们负责检测广域视觉运动。尽管这些细胞的结构和运动敏感性在大型果蝇中已有广泛描述,但该系统在果蝇中尚未得到系统描述。在这里,我们使用带有可抑制细胞标记的镶嵌分析(MARCM)系统来分析这些细胞的一个子集,即水平和垂直系统。我们的结果表明,果蝇的水平系统与大型果蝇中描述的系统相似,有三个神经元在小叶板上展开它们的树突。我们发现果蝇垂直系统中有六个神经元,与大型果蝇中的9 - 11个神经元相比。即便如此,果蝇的垂直系统与大型果蝇的系统非常相似,果蝇中的每个神经元在大型果蝇中都有近似的对应物。这种解剖学上的相似性意味着垂直系统的输入在这些不同的果蝇物种中组织方式相似,并且果蝇神经元可能对与大型果蝇中其特定结构对应物所感知的类似运动做出反应。此外,多个细胞克隆中垂直系统细胞的相似外观表明它们共享共同的发育谱系。在果蝇中能够接触到这些细胞将有助于在未来水平和垂直系统功能研究中使用遗传工具。

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