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Quantitative comparison of competing PDE models for Pomlp dynamics in fission yeast * * The authors acknowledge financial support from the Postdoctoral Fellowship Program (PFP) of the Helmholtz Zentrum Munchen.

机译:竞争性PDE模型在裂变酵母中Pomlp动力学的定量比较 * < ce:footnote id =“ fn1”> * 作者感谢博士后奖学金计划(PFP)的财政支持)。

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Abstract: Gradient formation of Poml is a key regulator of cell cycle and cell growth in fission yeast (Schizosaccharomyces pombe). A variety of models to explain Poml gradient formation have been proposed, a quantitative analysis and comparison of these models is, however, still missing. In this work we present four models from the literature and perform a quantitative comparison using published single-cell images of the gradient formation process. For the comparison of these partial differential equation (PDE) models we use state-of-the-art techniques for parameter estimation together with model selection. The model selection supports the hypothesis that buffering of the gradient is achieved via clustering. The selected model does, however, not ensure mass conservation, which might be considered as problematic.
机译:摘要:Poml的梯度形成是裂殖酵母(Schizosaccharomyces pombe)细胞周期和细胞生长的关键调节因子。已经提出了多种解释Poml梯度形成的模型,但是仍然缺少对这些模型的定量分析和比较。在这项工作中,我们介绍了来自文献的四个模型,并使用已发表的梯度形成过程的单细胞图像进行了定量比较。为了比较这些偏微分方程(PDE)模型,我们使用最先进的技术进行参数估计以及模型选择。模型选择支持通过聚类实现梯度缓冲的假设。但是,选定的模型不能确保大量保存,这可能被认为是有问题的。

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