Stachel S E, Grunwald D J, Myers P Z
Department of Human Genetics, University of Utah, Salt Lake City 84112.
Development. 1993 Apr;117(4):1261-74. doi: 10.1242/dev.117.4.1261.
The zebrafish dorsoventral axis can first be distinguished at gastrulation, upon formation of the embryonic shield, the site of the organizer. We have asked whether the shield is specified before gastrulation. First, we show that brief exposure of premidblastula embryos to lithium, which is known to shut down the phospho-inositol signaling pathway, produces excessive shield formation and extreme hyper-dorsal development. Second, we show that the zebrafish goosecoid homeobox gene is activated at or just after the midblastula in a localized domain of cells that subsequently populate the most anterior region of the incipient shield and axial hypoblast, goosecoid expression is elevated and radialized by early lithium treatment, suggesting that goosecoid plays a role in establishing the organizer and shield. Our results demonstrate that the zebrafish dorsal axis is signaled by a pathway initiated in the cleavage-stage embryo. Furthermore, they provide novel insights into anterior morphogenesis.
斑马鱼的背腹轴在原肠胚形成期,即胚胎盾(组织者所在部位)形成时首次得以区分。我们探究了胚胎盾在原肠胚形成之前是否就已特化。首先,我们发现,将囊胚中期前的胚胎短暂暴露于锂(已知锂会阻断磷酸肌醇信号通路)中,会导致胚胎盾过度形成以及极度的背侧化发育。其次,我们发现斑马鱼的鹅膏蕈氨酸同源框基因在囊胚中期或之后,在一个局部细胞区域被激活,这些细胞随后聚集到初始胚胎盾和轴下胚层的最前端区域,早期锂处理会使鹅膏蕈氨酸表达升高并呈放射状分布,这表明鹅膏蕈氨酸在建立组织者和胚胎盾中发挥作用。我们的结果表明,斑马鱼的背轴是由卵裂期胚胎中启动的一条信号通路所决定的。此外,它们还为前部形态发生提供了新的见解。