The extra-embryonic space and the local contour are crucial geometric constraints regulating cell arrangement

S. Seirin-Lee, Kazunori Yamamoto, A. Kimura
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引用次数: 4

Abstract

ABSTRACT In multicellular systems, cells communicate with adjacent cells to determine their positions and fates, an arrangement important for cellular development. Orientation of cell division, cell-cell interactions (i.e. attraction and repulsion) and geometric constraints are three major factors that define cell arrangement. In particular, geometric constraints are difficult to reveal in experiments, and the contribution of the local contour of the boundary has remained elusive. In this study, we developed a multicellular morphology model based on the phase-field method so that precise geometric constraints can be incorporated. Our application of the model to nematode embryos predicted that the amount of extra-embryonic space, the empty space within the eggshell that is not occupied by embryonic cells, affects cell arrangement in a manner dependent on the local contour and other factors. The prediction was validated experimentally by increasing the extra-embryonic space in the Caenorhabditis elegans embryo. Overall, our analyses characterized the roles of geometrical contributors, specifically the amount of extra-embryonic space and the local contour, on cell arrangements. These factors should be considered for multicellular systems.
胚外空间和局部轮廓是调节细胞排列的重要几何约束
在多细胞系统中,细胞通过与相邻细胞的沟通来决定它们的位置和命运,这种安排对细胞的发育非常重要。细胞分裂方向、细胞间相互作用(即吸引和排斥)和几何约束是决定细胞排列的三个主要因素。特别是几何约束在实验中难以揭示,边界局部轮廓的贡献仍然难以捉摸。在这项研究中,我们开发了一个基于相场法的多细胞形态学模型,以便可以纳入精确的几何约束。我们将该模型应用于线虫胚胎,预测胚胎外空间的数量,即蛋壳内未被胚胎细胞占据的空白空间,以依赖于局部轮廓和其他因素的方式影响细胞排列。通过增加秀丽隐杆线虫胚胎的胚外空间,验证了这一预测。总的来说,我们的分析描述了几何因素的作用,特别是胚胎外空间和局部轮廓的数量,对细胞排列。对于多细胞系统,应该考虑这些因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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