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Temporal and spatial patterning of axial myotome fibers in Xenopus laevis.

机译:Xenopus Laevis轴向肌肉纤维的时间和空间图案化。

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摘要

Somites give rise to the vertebral column and segmented musculature of adult vertebrates. The cell movements that position cells within somites along the anteroposterior and dorsoventral axes are not well understood. Using a fate mapping approach, we show that at the onset of Xenopus laevis gastrulation, mesoderm cells undergo distinct cell movements to form myotome fibers positioned in discrete locations within somites and along the anteroposterior axis. We show that the distribution of presomitic cells along the anteroposterior axis is influenced by convergent and extension movements of the notochord. Heterochronic and heterotopic transplantations between presomitic gastrula and early tail bud stages show that these cells are interchangeable and can form myotome fibers in locations determined by the host embryo. However, additional transplantation experiments revealed differences in the competency of presomitic cells to form myotome fibers, suggesting that maturation within the tail bud presomitic mesoderm is required for myotome fiber differentiation.
机译:有些人会产生椎体柱和成人脊椎动物的细分肌肉组织。在沿着前后轴和多叶轴轴线内的一人体内的细胞的电池运动尚不清楚。使用命运映射方法,我们表明,在Xenopus Laevis胃的开始,中胚层细胞经历了不同的细胞运动,以形成位于有些子节内的离散位置和沿着前后轴线的肌肌瘤纤维。我们表明,沿着前后轴的预调度细胞分布受到脊索的会聚和延伸运动的影响。 PRESAMICATION胃肠和早期尾芽阶段之间的异位和异位移植表明,这些细胞是可互换的,并且可以在主体胚胎测定的位置中形成肌肉组纤维。然而,额外的移植实验揭示了预先形成肌肉细胞纤维的培养能力的差异,表明近芽纤维分化需要尾芽预报Mesoderm的成熟。

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