Doniach T, Musci T J
Department of Obstetrics, Gynecology and Reproductive Sciences, University of California, San Francisco 94143-0556, USA.
Mech Dev. 1995 Nov;53(3):403-13. doi: 10.1016/0925-4773(95)00457-2.
The developing vertebrate nervous system arises from ectoderm in response to inductive signals from the dorsal mesoderm, or Spemann organizer. It displays pronounced anteroposterior (AP) pattern, but the mechanism that generates this pattern is poorly understood. We demonstrate that the inducing ability of dorsal mesoderm is regionalized along the AP axis at the early gastrula stage, using the homeodomain-encoding genes Xanf-2 and en-2 as markers of anterior and mid-neural pattern, respectively. In addition, we show that changing the size ratio of posterior dorsal mesoderm to responding ectoderm affects the type of AP pattern induced. A low ratio leads to induction of anterior neural pattern, while a high ratio leads to expression of only mid-neural pattern. These and other results indicate that a quantitative mechanism specifies AP neural pattern.
发育中的脊椎动物神经系统起源于外胚层,以响应来自背侧中胚层或施佩曼组织者的诱导信号。它呈现出明显的前后(AP)模式,但产生这种模式的机制却知之甚少。我们证明,在原肠胚早期,背侧中胚层的诱导能力沿AP轴呈区域化分布,分别使用编码同源结构域的基因Xanf-2和en-2作为前神经模式和中神经模式的标记。此外,我们表明,改变后背部中胚层与反应性外胚层的大小比会影响诱导的AP模式类型。低比例导致前神经模式的诱导,而高比例则导致仅中神经模式的表达。这些以及其他结果表明,一种定量机制决定了AP神经模式。