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野生型和缺乏底板细胞的突变型斑马鱼中GABA能脊髓神经元的轴突轨迹和分布

Axonal trajectories and distribution of GABAergic spinal neurons in wildtype and mutant zebrafish lacking floor plate cells.

作者信息

Bernhardt R R, Patel C K, Wilson S W, Kuwada J Y

机构信息

Department of Biology, University of Michigan, Ann Arbor 48109-1048.

出版信息

J Comp Neurol. 1992 Dec 8;326(2):263-72. doi: 10.1002/cne.903260208.

Abstract

The role of the midline floor plate cells in the neuronal differentiation of the spinal cord was examined by comparing putative GABAergic neurons in wildtype zebrafish embryos with those in cyc-1 mutant embryos. The mutation produces a pleiotropic recessive lethal phenotype and is severe in rostral brain regions, but its direct effect in the caudal hindbrain and the spinal cord is apparently restricted to the depletion of the midline floor plate cells. In wildtype embryos, an antibody against the neurotransmitter GABA labeled the cell bodies, axons, and growth cones of three classes of previously identified neurons; dorsal longitudinal neurons (DoLA), commissural secondary ascending neurons (CoSA), and ventral longitudinal neurons (VeLD). A novel ventral cell type, Kolmer-Agduhr (KA) neurons, was also labeled. In the cyc-1 mutant, abnormalities were observed in some, but not all, of the GABAreactive CoSA, VeLD, and KA axons, while the axonal trajectories of DoLA neurons were not affected. Furthermore, the number of KA cells was reduced in the mutant while the numbers of the other GABAreactive cells were unperturbed. These observations corroborate our earlier hypothesis that the floor plate cells are one of several guidance cues that direct axonal outgrowth near the ventral midline of the spinal cord. They also suggest that the floor plate cells may play a role in the cellular differentiation of the spinal cord of zebrafish embryos.

摘要

通过比较野生型斑马鱼胚胎和cyc-1突变体胚胎中的假定GABA能神经元,研究了脊髓中线底板细胞在神经元分化中的作用。该突变产生多效性隐性致死表型,在脑前部区域较为严重,但其在尾侧后脑和脊髓中的直接作用显然仅限于中线底板细胞的缺失。在野生型胚胎中,一种针对神经递质GABA的抗体标记了三类先前已鉴定神经元的细胞体、轴突和生长锥;背侧纵行神经元(DoLA)、连合二级上行神经元(CoSA)和腹侧纵行神经元(VeLD)。一种新的腹侧细胞类型,科尔默-阿格杜尔(KA)神经元,也被标记。在cyc-1突变体中,在部分但不是所有的GABA反应性CoSA、VeLD和KA轴突中观察到异常,而DoLA神经元的轴突轨迹未受影响。此外,突变体中KA细胞的数量减少,而其他GABA反应性细胞的数量未受干扰。这些观察结果证实了我们早期的假设,即底板细胞是指导脊髓腹侧中线附近轴突生长的几种引导线索之一。它们还表明,底板细胞可能在斑马鱼胚胎脊髓的细胞分化中发挥作用。

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