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果蝇蘑菇体缺陷基因的正常功能对于神经母细胞数量和增殖的调控是必需的。

Normal function of the mushroom body defect gene of Drosophila is required for the regulation of the number and proliferation of neuroblasts.

作者信息

Prokop A, Technau G M

机构信息

Universität Mainz, Institut für Genetik-Zellbiologie, Germany.

出版信息

Dev Biol. 1994 Feb;161(2):321-37. doi: 10.1006/dbio.1994.1034.

Abstract

In the developing central nervous system of Drosophila, proliferation follows a reproducible and well-described spatial and temporal pattern. This pattern involves a defined number and distribution of neural stem cells (neuroblasts), as well as a precisely regulated time course of division of these neuroblasts. We show that mutations in the mushroom body defect (mud) gene interfere with the regulation of this pattern in a rather specific manner. In the abdominal neuromeres a subset of neuroblasts prolongs the period of proliferation. Additional daughter cells persist into the imago. Similar defects are expressed in the anterior ventral nerve cord and in the lateral central brain region. In the mushroom body cortex, however, mutations in mud affect the proliferation pattern by increasing the number of neuroblasts. These additional neuroblasts behave like normal mushroom body neuroblasts according to their time course of proliferation and the specification of their progeny.

摘要

在果蝇发育中的中枢神经系统中,细胞增殖遵循可重复且描述详尽的时空模式。这种模式涉及特定数量和分布的神经干细胞(神经母细胞),以及这些神经母细胞精确调控的分裂时间进程。我们发现,蘑菇体缺陷(mud)基因的突变以一种相当特殊的方式干扰了这种模式的调控。在腹部神经节中,一部分神经母细胞延长了增殖期。额外的子细胞持续存在到成虫期。类似的缺陷也表现在前腹神经索和侧脑中央区域。然而,在蘑菇体皮质中,mud基因的突变通过增加神经母细胞的数量来影响增殖模式。这些额外的神经母细胞根据其增殖时间进程及其后代的特化情况,表现得如同正常的蘑菇体神经母细胞。

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