首页> 外文期刊>Developmental biology >Mechanisms underlying olfactory neuronal connectivity in Drosophila - The atonal lineage organizes the periphery while sensory neurons and glia pattern the olfactory lobe
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Mechanisms underlying olfactory neuronal connectivity in Drosophila - The atonal lineage organizes the periphery while sensory neurons and glia pattern the olfactory lobe

机译:果蝇嗅觉神经元连通性的潜在机制-无调性谱系组织外围,而感觉神经元和神经胶质形成嗅叶

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摘要

Patterning of the antennal lobe of adult Drosophila occurs through a complex interaction between sensory neurons, gla, and central neurons of larval and adult origin. Neurons from the olfactory sense organs are organized into distinct fascicles lined by glial cells. The glia originate from one of the three types of sensory lineages-specified by the proneural gene atonal. Gain-of-function as well as loss-of-function analysis validates a role for cells of the Atonal lineage in the ordered fasciculation of sensory neurons. Upon entry of the antennal nerve to central regions, sensory neurons at first remain closely associated with central glia which lie around the periphery of the lobe anlage. Coincident with the arrival of sensory neurons into the brain, glial precursors undergo mitosis and neural precursors expressing Dachshund appear around the lobe. Sensory neurons and glial cells project into the lobe at around the same time and are likely to coordinate the correct localization of different glomeruli. The influence of sensory neurons on the development of the olfactory lobe could serve to match and lock peripheral and central properties important for the generation of olfactory behavior. (C) 2000 Academic Press. [References: 69]
机译:成人果蝇触角叶的模式是通过幼虫和成年起源的感觉神经元,gla和中枢神经元之间的复杂相互作用而发生的。来自嗅觉器官的神经元被组织成由胶质细胞排列的独特束。胶质细胞起源于由前神经基因atonal指定的三种感觉谱系之一。功能获得和功能丧失分析验证了无性谱系细胞在感觉神经元有序束缚中的作用。当触角神经进入中枢区域时,感觉神经元起初仍然与位于叶突周围的中央神经胶质紧密相关。与感觉神经元到达大脑的同时,神经胶质前体经历有丝分裂,而表达腊肠犬的神经前体出现在叶周围。感觉神经元和神经胶质细胞大约在同一时间伸入肺叶,并可能协调不同肾小球的正确定位。感觉神经元对嗅叶发育的影响可以用来匹配和锁定对于嗅觉行为的产生很重要的外围和中央属性。 (C)2000学术出版社。 [参考:69]

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