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首页> 外文期刊>Cell Reports >Formation of Neuronal Circuits by Interactions between Neuronal Populations Derived from Different Origins in the Drosophila Visual Center
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Formation of Neuronal Circuits by Interactions between Neuronal Populations Derived from Different Origins in the Drosophila Visual Center

机译:通过果蝇视觉中心中不同来源的神经元种群之间的相互作用形成神经回路。

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摘要

A wide variety of neurons, including populations derived from different origins, are precisely arranged and correctly connected with their partner to establish a functional neural circuit during brain development. The molecular mechanisms that orchestrate the production and arrangement of these neurons have been obscure. Here, we demonstrate that cell-cell interactions play an important role in establishing the arrangement of neurons of different origins in the Drosophila visual center. Specific types of neurons born outside the medulla primordium migrate tangentially into the developing medulla cortex. During their tangential migration, these neurons express the repellent ligand Slit, and the two layers that the neurons intercalate between express the receptors Robo2 and Robo3. Genetic analysis suggests that Slit-Robo signaling may control the positioning of the layer cells or their processes to form a path for migration. Our results suggest that conserved axon guidance signaling is involved in the interactions between neurons of different origins during brain development.
机译:各种各样的神经元,包括来自不同起源的种群,都经过精确排列,并与其伴侣正确连接,从而在大脑发育过程中建立了功能性神经回路。协调这些神经元的生产和安排的分子机制是模糊的。在这里,我们证明细胞之间的相互作用在果蝇视觉中心建立不同来源的神经元的排列中起着重要作用。髓质原基外产生的特定类型的神经元切向迁移到发育中的髓质皮层。在它们的切向迁移过程中,这些神经元表达驱避性配体Slit,神经元插入的两层表达受体Robo2和Robo3。遗传分析表明,Slit-Robo信号传导可能控制层细胞的位置或其过程,从而形成迁移路径。我们的结果表明,在大脑发育过程中,保守的轴突导向信号传导参与了不同起源的神经元之间的相互作用。

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