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控制水蛭神经发生中细胞迁移的位置线索。

Positional cues governing cell migration in leech neurogenesis.

作者信息

Torrence S A

机构信息

Department of Cell and Molecular Biology, University of California, Berkeley 94720.

出版信息

Development. 1991 Apr;111(4):993-1005. doi: 10.1242/dev.111.4.993.

Abstract

The stereotyped distribution of identified neurons and glial cells in the leech nervous system is the product of stereotyped cell migrations and rearrangements during embryogenesis. To examine the dependence of long-distance cell migrations on positional cues provided by other tissues, embryos of Theromyzon rude were examined for the effects of selective ablation of various embryonic cell lines on the migration and final distribution of neural and glial precursor cells descended from the bilaterally paired ectodermal cell lines designated q bandlets. The results suggest that neither the commitment of q-bandlet cells to migrate nor the general lateral-to-medial direction of their migration depend on interactions with any other cell line. However, the ability of the migrating cells to follow their normal pathways and to find their normal destinations does depend on interactions with cells of the mesodermal cell line, which appears to provide positional cues that specify the migration pathways.

摘要

在水蛭神经系统中,已识别的神经元和神经胶质细胞的定型分布是胚胎发育过程中定型细胞迁移和重排的产物。为了研究长距离细胞迁移对其他组织提供的位置线索的依赖性,对粗石蛭胚胎进行了研究,以观察选择性消融各种胚胎细胞系对源自双侧配对的外胚层细胞系(称为q小带)的神经和神经胶质前体细胞迁移及最终分布的影响。结果表明,q小带细胞迁移的决定及其从外侧向内侧的一般迁移方向均不依赖于与任何其他细胞系的相互作用。然而,迁移细胞沿着其正常路径并找到其正常目的地的能力确实依赖于与中胚层细胞系细胞的相互作用,中胚层细胞系似乎提供了指定迁移路径的位置线索。

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