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果蝇蘑菇体的早期发育,即用于联想学习和记忆的脑中枢。

Early development of the Drosophila mushroom bodies, brain centres for associative learning and memory.

作者信息

Tettamanti Marco, Armstrong J Douglas, Endo Keita, Yang Ming Yao, Furukubo-Tokunaga Katsuo, Kaiser K, Reichert H

机构信息

Institute of Zoology, University of Basel, CH-4051 Basel, Switzerland, , , , , , CH.

Division of Molecular Genetics, University of Glasgow, Glasgow G11 6NU, UK, , , , , , GB.

出版信息

Dev Genes Evol. 1997 Oct;207(4):242-252. doi: 10.1007/s004270050112.

Abstract

We have studied the formation of Drosophila mushroom bodies using enhancer detector techniques to visualize specific components of these complex intrinsic brain structures. During embryogenesis, neuronal proliferation begins in four mushroom body neuroblasts and the major axonal pathways of the mushroom bodies are pioneered. During larval development, neuronal proliferation continues and further axonal projections in the pedunculus and lobes are formed in a highly structured manner characterized by spatial heterogeneity of reporter gene expression. Enhancer detector analysis identifies many genomic locations that are specifically activated in mushroom body intrinsic neurons (Kenyon cells) during the transition from embryonic to postembryonic development and during metamorphosis.

摘要

我们利用增强子检测技术研究了果蝇蘑菇体的形成,以可视化这些复杂的脑内固有结构的特定组成部分。在胚胎发生过程中,神经元增殖始于四个蘑菇体神经母细胞,蘑菇体的主要轴突通路率先形成。在幼虫发育期间,神经元增殖持续进行,并且在柄部和叶中进一步形成轴突投射,其方式高度结构化,其特征是报告基因表达的空间异质性。增强子检测分析确定了许多基因组位置,这些位置在从胚胎发育到胚后发育以及变态过程中在蘑菇体固有神经元(肯扬细胞)中被特异性激活。

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