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Neuroarchitecture of the Drosophila central complex: A catalog of nodulus and asymmetrical body neurons and a revision of the protocerebral bridge catalog

机译:果蝇中央复合体的神经体系结构:结节和不对称身体神经元的目录和前脑桥目录的修订

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摘要

The central complex, a set of neuropils in the center of the insect brain, plays a crucial role in spatial aspects of sensory integration and motor control. Stereotyped neurons interconnect these neuropils with one another and with accessory structures. We screened over 5,000 Drosophila melanogaster GAL4 lines for expression in two neuropils, the noduli (NO) of the central complex and the asymmetrical body (AB), and used multicolor stochastic labeling to analyze the morphology, polarity, and organization of individual cells in a subset of the GAL4 lines that showed expression in these neuropils. We identified nine NO and three AB cell types and describe them here. The morphology of the NO neurons suggests that they receive input primarily in the lateral accessory lobe and send output to each of the six paired noduli. We demonstrate that the AB is a bilateral structure which exhibits asymmetry in size between the left and right bodies. We show that the AB neurons directly connect the AB to the central complex and accessory neuropils, that they target both the left and right ABs, and that one cell type preferentially innervates the right AB. We propose that the AB be considered a central complex neuropil in Drosophila. Finally, we present highly restricted GAL4 lines for most identified protocerebral bridge, NO, and AB cell types. These lines, generated using the split‐GAL4 method, will facilitate anatomical studies, behavioral assays, and physiological experiments.
机译:中央复合体是位于昆虫脑中央的一组神经纤维,在感觉整合和运动控制的空间方面起着至关重要的作用。刻板印象的神经元将这些神经柱相互连接并与辅助结构相互连接。我们筛选了超过5,000个果蝇GAL4系,以在两个神经纤维团,中央复合体的结节(NO)和不对称体(AB)中表达,并使用多色随机标记分析单个细胞中单个细胞的形态,极性和组织在这些神经纤维中表达的GAL4系的一个子集。我们确定了9种NO和3种AB细胞类型,并在此处进行描述。 NO神经元的形态表明它们主要在外侧副叶中接收输入,并将输出发送到六对结节中的每一个。我们证明了AB是一种双边结构,在左右身体之间大小不对称。我们显示,AB神经元直接将AB连接到中央复合神经和附属神经纤维,它们既针对左AB又针对右AB,并且一种细胞类型优先支配右AB。我们建议AB被认为是果蝇中枢复杂神经。最后,我们针对大多数已确定的脑桥,NO和AB细胞类型提出了高度受限的GAL4细胞系。这些使用split-GAL4方法生成的谱线将有助于进行解剖学研究,行为分析和生理学实验。

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