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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >A computational model of the effect of symplastic growth on cell mechanics in a linear leaf blade
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A computational model of the effect of symplastic growth on cell mechanics in a linear leaf blade

机译:线性叶片共生生长对细胞力学影响的计算模型

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The epidermis of a linear leaf, as in Poaceae, is established by parallel files of cells originating from the leaf base. Their feature is symplastic growth where neighboring cell walls adhere and do not slide along each other. We developed a simple mechanical cell-based model for symplastic growth of linear leaf blade. The challenge is to determine what restrictions on cell size symplastic growth creates compared to the free growing cells. We assume an unidirectional growing cell ensemble starting from a meristem-like layer of generative cells and then generating parallel cell rows from every cell of the initial layer. Each cell is characterized by its growth function, and growth of the whole leaf blade is accompanied by mutual adjustment between all the cells. Cells divide once they have reached a threshold area. A mathematical model and its implementation are proposed for computational simulation of 1D symplastic growth of tissues. The question analyzed is how a cell grows in a plant tissue if there is a mechanism for regulating the growth of an isolated growing cell and the behavior of the cell wall matter is elastoplastic. The results of the simulation of linear leaf blade growth are compared to those for a free-growing cell population.
机译:如禾本科,线性叶的表皮是由来自叶基的细胞的平行文件建立的。它们的特征是增生性生长,其中相邻的细胞壁粘附并且彼此不滑动。我们开发了一个简单的基于机械细胞的线性叶片共生生长模型。面临的挑战是确定与自由生长的细胞相比,共生生长对细胞大小产生的限制。我们假设一个单向生长的细胞集合,从生成细胞的分生组织状层开始,然后从初始层的每个细胞中生成平行的细胞行。每个细胞的特征在于其生长功能,整个叶片的生长伴随着所有细胞之间的相互调节。一旦细胞达到阈值区域,它们就会分裂。提出了一种数学模型及其实现方法,用于组织的一维共生性生长的计算仿真。分析的问题是,如果存在调节分离的正在生长的细胞生长的机制并且细胞壁物质的行为是弹塑性的,那么细胞如何在植物组织中生长。将线性叶片生长的模拟结果与自由生长的细胞群体的结果进行比较。

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