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Cell rearrangement induced by filopodial tension accounts for the late phase of convergent extension in the sea urchin archenteron

机译:丝虫张力引起的细胞重排是海胆原肠趋同延伸的晚期阶段

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摘要

George Oster was a pioneer in using mechanical models to interrogate morphogenesis in animal embryos. Convergent extension is a particularly important morphogenetic process to which George Oster gave significant attention. Late elongation of the sea urchin archenteron is a classic example of convergent extension in a monolayered tube, which has been proposed to be driven by extrinsic axial tension due to the activity of secondary mesenchyme cells. Using a vertex-based mechanical model, we show that key features of archenteron elongation can be accounted for by passive cell rearrangement due to applied tension. The model mimics the cell elongation and the Poisson effect (necking) that occur in actual archenterons. We also show that, as predicted by the model, ablation of secondary mesenchyme cells late in archenteron elongation does not result in extensive elastic recoil. Moreover, blocking the addition of cells to the base of the archenteron late in archenteron elongation leads to excessive cell rearrangement consistent with tension-induced rearrangement of a smaller cohort of cells. Our mechanical simulation suggests that responsive rearrangement can account for key features of archenteron elongation and provides a useful starting point for designing future experiments to examine the mechanical properties of the archenteron.
机译:乔治·奥斯特(George Oster)是使用机械模型询问动物胚胎形态的先驱。收敛扩展是乔治·奥斯特(George Oster)十分关注的一个特别重要的形态发生过程。海胆原肠的晚期伸长是单层管中会聚伸长的经典例子,由于次级间充质细胞的活动,这种伸长被认为是由外在轴向张力驱动的。使用基于顶点的机械模型,我们表明,由于施加的张力,被动细胞重排可以解释弓形虫伸长的关键特征。该模型模拟实际原型中发生的细胞伸长和泊松效应(颈缩)。我们还显示,正如该模型所预测的那样,在archenteron延伸后期,次级间充质细胞的消融不会导致广泛的弹性反冲。此外,在原肠虫伸长后期阻止细胞向原肠虫基部的添加会导致过度的细胞重排,这与张力诱导的较小细胞群的重排一致。我们的机械模拟表明响应性重排可以解释原肠动物伸长的关键特征,并为设计未来的实验以检查原肠动物的机械特性提供了有用的起点。

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