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Species-specific contribution of volumetric growth and tissue convergence to posterior body elongation in vertebrates

机译:物种的体积增长和组织收敛对脊椎动物后身伸长的特定贡献

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摘要

Posterior body elongation is a widespread mechanism propelling the generation of the metazoan body plan. The posterior growth model predicts that a posterior growth zone generates sufficient tissue volume to elongate the posterior body. However, there are energy supply-related differences between vertebrates in the degree to which growth occurs concomitantly with embryogenesis. By applying a multi-scalar morphometric analysis in zebrafish embryos, we show that posterior body elongation is generated by an influx of cells from lateral regions, by convergence-extension of cells as they exit the tailbud, and finally by a late volumetric growth in the spinal cord and notochord. Importantly, the unsegmented region does not generate additional tissue volume. Fibroblast growth factor inhibition blocks tissue convergence rather than volumetric growth, showing that a conserved molecular mechanism can control convergent morphogenesis through different cell behaviours. Finally, via a comparative morphometric analysis in lamprey, dogfish, zebrafish and mouse, we propose that elongation via posterior volumetric growth is linked to increased energy supply and is associated with an overall increase in volumetric growth and elongation.
机译:后体伸长是一种广泛的机制,可推动后生体计划的产生。后部生长模型预测后部生长区产生足够的组织体积以拉长后体。但是,脊椎动物之间在与胚胎发生同时发生生长的程度上存在与能量供应相关的差异。通过在斑马鱼胚胎中应用多标量形态分析,我们显示后躯体伸长是由细胞从侧向区域流入,细胞在离开尾巴时会聚延伸,最后在细胞中的后期体积生长而产生的。脊髓和脊索。重要的是,未分割的区域不会产生额外的组织体积。成纤维细胞生长因子抑制阻止组织收敛而不是体积增长,这表明保守的分子机制可以通过不同的细胞行为来控制收敛的形态发生。最后,通过在七lamp鳗,dog鱼,斑马鱼和小鼠中进行的比较形态计量学分析,我们提出通过后体积生长的伸长与增加的能量供应有关,并且与体积生长和伸长的总体增加有关。

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