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Physical modeling of the cellular arrangement in C. elegans early embryo: effect of rounding and stiffening of the cells.

机译:C.杆状杆菌早期胚胎细胞布置的物理建模:细胞圆角和加强的影响。

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The ultimate goal of bioinformatics is to reconstruct biological systems in a computer. Biological systems have a multi-scale and multi-level biological hierarchy. The cellular level of the hierarchy is appropriate and practicable for reconstructing biological systems by computer modeling. In our first application of computer modeling to development of the nematode C. elegans, we focus on the cellular arrangement in early embryos. This plays a very important role in cell fate determination by cell-cell interaction, which is largely restricted by physical conditions. We have already constructed a computer model of a C. elegans embryo, currently up to the 4-cell stage, using deformable and dividable geometric graphics. Modeling components of the embryo are based solely on cellular-level dynamics. Here, we modeled new physical phenomena of cell division, cell rounding and stiffening; we then combined them with already modeled phenomena, contractile ring contraction and cell elongation. We investigated effectiveness of the new model on cellular arrangement by computer simulations. We found that cell rounding and stiffening only during the period of cell division were effective to generate almost identical cellular arrangements to in real embryos. Since cells could be soft during the period between cell divisions, implementation of the new model resulted in cell shapes similar to real embryos. The nature of the model and its relationship to real embryos are discussed.
机译:生物信息学的最终目标是重建计算机中的生物系统。生物系统具有多尺度和多级生物层次结构。层次结构的细胞水平适当,可用于通过计算机建模重建生物系统的可行方法。在我们第一次应用计算机建模到线虫C.杆线虫的发展中,我们专注于早期胚胎的细胞布置。这在细胞 - 细胞相互作用的细胞命运测定中起着非常重要的作用,这在很大程度上受到物理条件的限制。我们已经构建了一款C.秀丽隐式胚胎的计算机模型,目前达到4个单元级,使用可变形和可分离的几何图形。胚胎的建模组分仅基于蜂窝水平动态。在这里,我们建模了细胞分裂,细胞圆形和加强的新物理现象;然后我们将它们与已经建模的现象,收缩圈收缩和细胞伸长组合。我们通过计算机仿真调查了新模型对蜂窝布置的有效性。我们发现,仅在细胞划分期间的细胞舍入和加强是有效地在真正的胚胎中产生几乎相同的细胞安排。由于细胞在细胞部门之间的时间段内可以软,因此新模型的实施导致细胞形状类似于真正的胚胎。讨论了模型的性质及其与真正胚胎的关系。

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