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Programming strategy for efficient modeling of dynamics in a population of heterogeneous cells

机译:有效编程异质细胞群体中动力学的编程策略

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Motivation: Heterogeneity is a ubiquitous property of biological systems. Even in a genetically identical population of a single cell type, cell-to-cell differences are observed. Although the functional behavior of a given population is generally robust, the consequences of heterogeneity are fairly unpredictable. In heterogeneous populations, synchronization of events becomes a cardinal problem—particularly for phase coherence in oscillating systems. Results: The present article presents a novel strategy for construction of large-scale simulation programs of heterogeneous biological entities. The strategy is designed to be tractable, to handle heterogeneity and to handle computational cost issues simultaneously, primarily by writing a generator ofthe ‘model to be simulated’. We apply the strategy to model glycolytic oscillations among thousands of yeast cells coupled through the extracellular medium. The usefulness is illustrated through (i) benchmarking, showing an almost linear relationship between model size and run time, and (ii) analysis of the resulting simulations, showing that contrary to the experimental situation, synchronous oscillations are surprisingly hard to achieve, underpinning the need for tools to study heterogeneity. Thus,we present an efficient strategy to model the biological heterogeneity, neglected by ordinary mean-field models. This tool is well posed to facilitate the elucidation of the physiologically vital problem of synchronization. Availability: The complete python code is available as Supplementary Information.
机译:动机:异质性是生物系统的普遍特性。即使在单一细胞类型的基因相同种群中,也观察到细胞间差异。尽管给定总体的功能行为通常很健壮,但是异质性的后果却是不可预测的。在异类种群中,事件的同步成为一个主要问题,尤其是对于振荡系统中的相位相干而言。结果:本文提出了一种新的策略,用于构建异构生物实体的大规模仿真程序。该策略旨在易于处理,同时处理异构性和同时处理计算成本问题,主要是通过编写“要模拟的模型”的生成器。我们应用该策略来模拟通过细胞外培养基偶联的数千个酵母细胞之间的糖酵解振荡。通过(i)基准测试,表明模型大小与运行时间之间几乎呈线性关系,以及(ii)对所得仿真的分析,表明了有用性,表明与实验情况相反,同步振荡出乎意料地难以实现,这是有用的。需要研究异质性的工具。因此,我们提出了一种有效的策略来建模生物学异质性,而普通均值场模型却忽略了这一点。该工具非常适合于帮助阐明生理上至关重要的同步问题。可用性:完整的python代码可作为补充信息获得。

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