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首页> 外文期刊>Journal of Theoretical Biology >Cell cycle regulation of oscillations yields coupling of growth and form in a computational model of the presomitic mesoderm
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Cell cycle regulation of oscillations yields coupling of growth and form in a computational model of the presomitic mesoderm

机译:振荡的细胞周期调节产生了预报Mesoderm的计算模型中生长和形式的偶联

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摘要

A striking example of coupling between growth and form occurs during the segmentation of the vertebrate embryo. During segmentation, pairs of segments, one on either side of the anterior-posterior axis, bud off from the presomitic mesoderm (PSM) at regular intervals in time. In the clock and wavefront model, a multicellular oscillator regulates the time at which the next pair of segments form whilst a wavefront regulates their spatial location. In most mathematical models of segmentation, it is assumed that cells in the PSM are oscillators that have a constant natural frequency. Based on recent experimental findings, here we propose a model in which the natural oscillation frequency of each PSM cell is a function of its position in the cell cycle. Given adequate oscillator coupling and that cells in the PSM are randomly distributed in the cell cycle, we find that the emergent oscillator frequency is a weighted average of the constituent oscillator frequencies with the weightings dependent on the fraction of cells in a given cell cycle state. Here, we show that such a model can allow for coupling between pattern formation and growth rate in PSM tissue. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在脊椎动物胚胎的分割期间发生在生长和形式之间的偶联的引人注目的例子。在分割期间,在前后轴的两侧的一对段,一个在前后轴的两侧,以定期的间隔从预报Mesoderm(PSM)脱落。在时钟和波前模型中,多细胞振荡器调节下一对段形式的时间,同时波前调节其空间位置。在分段的大多数数学模型中,假设PSM中的单元是具有恒定自然频率的振荡器。基于最近的实验结果,这里我们提出了一种模型,其中每个PSM电池的自然振荡频率是其在细胞周期中的位置的函数。给定足够的振荡器耦合并且PSM中的电池在细胞周期中随机分布,我们发现紧急振荡器频率是组成振荡器频率的加权平均值,该加权依赖于给定的单元周期状态中的细胞的级分。这里,我们表明这种模型可以允许在PSM组织中的模式形成和生长速率之间耦合。 (c)2019年elestvier有限公司保留所有权利。

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