Jiang Di, Smith William C
Sars International Centre for Marine Molecular Biology, Bergen, Norway.
Dev Dyn. 2007 Jul;236(7):1748-57. doi: 10.1002/dvdy.21184.
The development of the notochord involves a complex set of cellular behaviors. While these morphogenic behaviors are common to all chordates, the ascidian provides a particularly attractive experimental model because of its relative simplicity. In particular, all notochord morphogenesis in ascidians takes place with only 40 cells, as opposed to the hundreds of cells in vertebrate model systems. Initial steps in ascidian notochord development convert a monolayer of epithelial-like cells in the pregastrula embryo to a cylindrical rod of single-cell diameter. Convergent extension is responsible for the intercalation of notochord cells and some degree of notochord elongation, while a second phase of elongation is observed as the notochord narrows medially and increases in volume. The mechanism by which the volume of the notochord increases differs between ascidian species. Some ascidians produce extracellular pockets that will eventually coalesce to form a lumen running the length of the notochord; whereas others do not. By either mechanism, the resulting notochord serves as a hydrostatic skeleton allowing for the locomotion of the swimming larva. Several basic cell behaviors, such as cell shape changes, cell rearrangement, establishment of cell polarity, and alteration of extracellular environment, are displayed in the process of notochord morphogenesis. Modern analysis of ascidian notochord morphogenesis promises to contribute to our understanding of these fundamental biological processes.
脊索的发育涉及一系列复杂的细胞行为。虽然这些形态发生行为在所有脊索动物中都很常见,但由于海鞘相对简单,它提供了一个特别有吸引力的实验模型。特别是,海鞘中所有的脊索形态发生仅由40个细胞完成,而脊椎动物模型系统中有数百个细胞。海鞘脊索发育的初始步骤将原肠胚前胚胎中的单层上皮样细胞转化为单细胞直径的圆柱形杆状结构。趋同延伸负责脊索细胞的插入和一定程度的脊索伸长,而当脊索向内侧变窄并体积增加时,会观察到第二个伸长阶段。不同海鞘物种中脊索体积增加的机制有所不同。一些海鞘会产生细胞外囊袋,这些囊袋最终会合并形成一个贯穿脊索长度的管腔;而其他海鞘则不会。无论通过哪种机制,最终形成的脊索都作为一个流体静力骨骼,使游泳幼虫能够运动。在脊索形态发生过程中会展现出几种基本的细胞行为,如细胞形状变化、细胞重排、细胞极性的建立以及细胞外环境的改变。对海鞘脊索形态发生的现代分析有望增进我们对这些基本生物学过程的理解。