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关于斑马鱼(短担尼鱼)神经嵴和神经管的形成

On the formation of the neural keel and neural tube in the zebrafishDanio (Brachydanio) rerio.

作者信息

Papan Cyrus, Campos-Ortega José A

机构信息

Institut für Entwicklungsbiologie Universität zu Köln, Gyrhofstrasse 17, D-50923, Köln, Germany.

出版信息

Rouxs Arch Dev Biol. 1994 Jan;203(4):178-186. doi: 10.1007/BF00636333.

Abstract

Morphogenetic movements accompanying formation of the neural keel and neural tube in the zebrafishDanino (Brachydanio) rerio were studied by labelling single neural plate cells with fluoresceinated dextran (FDA) during late gastrula stages (95-100% epiboly) and localizing their progeny with an anti-fluorescein antibody on histological sections throughout neurulation. The mediolateral extent of the neural plate correlates directly with the dorso-ventral extent of the neural tube. That is to say, the progeny of cells located medially in the neural plate come to lie ventrally in the neural tube; cells located laterally in the neural plate give rise to progeny that populate dorsal levels in the neural tube. Fixation of labelled cells at various stages reveals that neural keel and nerve rod are organized as monostratified epithelia and that they maintain this organization during neurulation. These observations strongly suggest that the neural keel in the zebrafish forms by way of infolding of the neural plate and, therefore, utilizes a mechanism similar to primary neurulation in other vertebrates. The folding process juxtaposes the apical surfaces of both flanks of the neural plate at the midline. Mitoses occur preferentially in this zone, leading very frequently to formation of bilaterally symmetrical clones of progeny cells. The size of the clones that develop from injected cells suggests that neural plate cells divide an 1.5 times on average between late gastrula and the end of neurulation.

摘要

通过在原肠胚晚期(95%-100%外包)用荧光素标记的葡聚糖(FDA)标记单个神经板细胞,并在整个神经胚形成过程中,利用抗荧光素抗体在组织切片上定位其后代,对斑马鱼(短盖巨脂鲤)神经嵴和神经管形成过程中的形态发生运动进行了研究。神经板的中外侧范围与神经管的背腹范围直接相关。也就是说,位于神经板内侧的细胞后代位于神经管的腹侧;位于神经板外侧的细胞产生的后代则分布在神经管的背侧。在不同阶段对标记细胞进行固定显示,神经嵴和神经棒组织为单层上皮,并且在神经胚形成过程中保持这种组织形式。这些观察结果强烈表明,斑马鱼的神经嵴是通过神经板内折形成的,因此,利用了一种与其他脊椎动物原肠神经胚形成类似的机制。折叠过程使神经板两侧的顶端表面在中线处并列。有丝分裂优先发生在这个区域,经常导致形成后代细胞的双侧对称克隆。从注射细胞发育而来的克隆大小表明,神经板细胞在原肠胚晚期到神经胚形成结束之间平均分裂1.5次。

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