Department of Biological Information, Tokyo Institute of Technology, Midori-ku, Yokohama 226-8501, Japan.
Development. 2010 Jun;137(11):1807-13. doi: 10.1242/dev.051540.
The floor plate is a key organizer that controls the specification of neurons in the central nervous system. Here, we show a new role of the floor plate: segmental pattern formation of the vertebral column. Analysis of a spontaneous medaka mutant, fused centrum (fsc), which exhibits fused centra and the absence of the intervertebral ligaments, revealed that fsc encodes wnt4b, which was expressed exclusively in the floor plate. In fsc mutants, we found that wnt4b expression was completely lost in the floor plate and that abnormal conversion of the intervertebral ligament cells into osteoblasts appeared to cause a defect of the intervertebral ligaments. The establishment of the transgenic rescue lines and mosaic analyses allowed the conclusion to be drawn that production of wnt4b by floor plate cells is essential for the segmental patterning of the vertebral column. Our findings provide a novel perspective on the mechanism of vertebrate development.
基板是中央神经系统中控制神经元特化的关键组织者。在这里,我们展示了基板的一个新功能:脊椎的分段模式形成。对自发性斑马鱼突变体融合椎体(fused centrum,fsc)的分析表明,fsc 编码 wnt4b,该基因仅在基板中表达。在 fsc 突变体中,我们发现基板中 wnt4b 的表达完全缺失,并且椎间韧带细胞异常转化为成骨细胞,似乎导致了椎间韧带的缺陷。转基因拯救系的建立和嵌合体分析表明,基板细胞产生 wnt4b 对于脊椎的分段模式形成是必不可少的。我们的研究结果为脊椎动物发育的机制提供了新的视角。