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Paraxial mesoderm specifies zebrafish primary motoneuron subtype identity.

机译:旁轴中胚层指定斑马鱼主要运动神经元亚型身份。

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We provide the first analysis of how a segmentally reiterated pattern of neurons is specified along the anteroposterior axis of the vertebrate spinal cord by investigating how zebrafish primary motoneurons are patterned. Two identified primary motoneuron subtypes, MiP and CaP, occupy distinct locations within the ventral neural tube relative to overlying somites, express different genes and innervate different muscle territories. In all vertebrates examined so far, paraxial mesoderm-derived signals specify distinct motoneuron subpopulations in specific anteroposterior regions of the spinal cord. We show that signals from paraxial mesoderm also control the much finer-grained segmental patterning of zebrafish primary motoneurons. We examined primary motoneuron specification in several zebrafish mutants that have distinct effects on paraxial mesoderm development. Our findings suggest that in the absence of signals from paraxial mesoderm, primary motoneurons have a hybrid identity with respect to gene expression, and that under these conditions the CaP axon trajectory may be dominant.
机译:我们通过研究斑马鱼初级运动神经元是如何被图案化的,提供了关于如何沿着脊椎动物脊髓的前后轴指定神经元的分段重复图案的第一个分析。相对于上覆的体节,两个已确定的主要运动神经元亚型MiP和CaP占据腹神经管内的不同位置,表达不同的基因并支配不同的肌肉区域。迄今为止,在所有接受检查的脊椎动物中,近轴中胚层来源的信号在脊髓的特定前后区域中指定了不同的运动神经元亚群。我们表明,从近轴中胚层的信号还控制斑马鱼初级运动神经元的更细粒度的分段模式。我们检查了几个对近轴中胚层发育有明显影响的斑马鱼突变体中的原始运动神经元规格。我们的发现表明,在不存在来自近轴中胚层的信号的情况下,初级运动神经元在基因表达方面具有混合身份,并且在这些条件下,CaP轴突轨迹可能占主导。

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