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Global morphogenetic flow is accurately predicted by the spatial distribution of myosin motors

机译:肌球蛋白运动的空间分布可准确预测整体形态发生流

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摘要

During embryogenesis tissue layers undergo morphogenetic flow rearranging and folding into specific shapes. While developmental biology has identified key genes and local cellular processes, global coordination of tissue remodeling at the organ scale remains unclear. Here, we combine in toto light-sheet microscopy of the Drosophila embryo with quantitative analysis and physical modeling to relate cellular flow with the patterns of force generation during the gastrulation process. We find that the complex spatio-temporal flow pattern can be predicted from the measured meso-scale myosin density and anisotropy using a simple, effective viscous model of the tissue, achieving close to 90% accuracy with one time dependent and two constant parameters. Our analysis uncovers the importance of a) spatial modulation of myosin distribution on the scale of the embryo and b) the non-locality of its effect due to mechanical interaction of cells, demonstrating the need for the global perspective in the study of morphogenetic flow.
机译:在胚胎发生期间,组织层经历形态发生流重排并折叠成特定形状。尽管发育生物学已经确定了关键基因和局部细胞过程,但在器官规模上组织重塑的整体协调性仍不清楚。在这里,我们结合在果蝇胚胎的光片显微镜与定量分析和物理建模,以将细胞流动与胃形成过程中的力产生模式相关联。我们发现,可以使用简单,有效的组织粘性模型,通过测量的中尺度肌球蛋白密度和各向异性来预测复杂的时空流动模式,该模型具有接近90%的准确度,且具有时间依赖性和两个恒定参数。我们的分析揭示了a)肌球蛋白分布在胚胎大小上的空间调节和b)由于细胞机械相互作用而产生的非局部作用的重要性,这表明在形态发生流研究中需要全局视野。

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