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Specification of the zebrafish nervous system by nonaxial signals

机译:斑马鱼神经系统的非轴向信号规范

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摘要

The organizer of the amphibian gastrula provides the neurectoderm with both neuralizing and posteriorizing (transforming) signals. In zebrafish, transplantations show that a spatially distinct transformer signal emanates from tissues other than the organizer. Cells of the germring (nonaxial mesendoderm) posteriorized forebrain progenitors when grafted nearby, resulting in an ectopic hindbrain-like structure; in contrast, cells of the organizer (axial mesendoderm) caused no posterior transformation. Local application of basic fibroblast growth factor, a candidate transformer in Xenopus, caused malformation but not hindbrain transformation in the forebrain. Thus, the zebrafish gastrula may integrate spatially distinct signals from the organizer and the germring to pattern the neural axis.
机译:两栖胃的组织者为神经胚层提供神经化和后发化(转化)信号。在斑马鱼中,移植表明,除了组织者以外,其他组织发出了空间上不同的变形信号。在附近移植时,胚芽(非中轴内胚层)的细胞使前脑祖细胞后部化,形成异位的后脑样结构。相反,组织者的细胞(中胚层的轴向)没有引起后变。碱性成纤维细胞生长因子(非洲爪蟾的候选变体)的局部应用引起前脑畸形但未引起后脑转化。因此,斑马鱼腹肌可以整合来自组织者和发芽的空间上不同的信号以图案化神经轴。

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