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Influence of cell-to-cell variability on spatial pattern formation

机译:细胞间变异性对空间格局形成的影响

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Many spatial patterns in biology arise through differentiation of selected cells within a tissue, which is regulated by a genetic network. This is specified by its structure, parameterisation and the noise on its components and reactions. The latter, in particular, is not well examined because it is rather difficult to trace. The authors use suitable local mathematical measures based on the Voronoi diagram of experimentally determined positions of epidermal plant hairs (trichomes) to examine the variability or noise in pattern formation. Although trichome initiation is a highly regulated process, the authors show that the experimentally observed trichome pattern is substantially disturbed by cell-to-cell variations. Using computer simulations, they find that the rates concerning the availability of the protein complex that triggers trichome formation plays a significant role in noise-induced variations of the pattern. The focus on the effects of cell noise yields further insights into pattern formation of trichomes. The authors expect that similar strategies can contribute to the understanding of other differentiation processes by elucidating the role of naturally occurring fluctuations in the concentration of cellular components or their properties.
机译:生物学中的许多空间模式是通过组织内选定细胞的分化而产生的,而这种分化受遗传网络的调节。这由其结构,参数设置以及其组件和反应中的噪声指定。尤其是后者,由于很难追踪而没有得到很好的检查。作者根据实验确定的表皮植物毛(毛状体)位置的Voronoi图,使用适当的局部数学测量方法来检查图案形成中的变异性或噪声。尽管毛状体起始是一个高度调控的过程,但作者表明,实验观察到的毛状体模式基本上受到细胞间差异的干扰。通过计算机模拟,他们发现触发毛状体形成的蛋白质复合物的利用率在噪声诱导的模式变化中起着重要作用。对细胞噪声影响的关注进一步揭示了毛状体的模式形成。作者期望通过阐明自然发生的细胞成分浓度或其特性波动的作用,类似的策略可以有助于对其他分化过程的理解。

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