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一种用于多头绒泡菌原生质液滴中机械化学模式的活性多孔弹性模型。

An active poroelastic model for mechanochemical patterns in protoplasmic droplets of Physarum polycephalum.

作者信息

Radszuweit Markus, Engel Harald, Bär Markus

机构信息

Weierstraβ-Institut für Angewandte Analysis und Stochastik, Leibniz-Institut im Forschungsverbund Berlin e. V., Berlin, Germany; Institut für Theoretische Physik, Technische Universität Berlin, Berlin, Germany; Physikalisch-Technische Bundesanstalt, Berlin, Germany.

Institut für Theoretische Physik, Technische Universität Berlin, Berlin, Germany.

出版信息

PLoS One. 2014 Jun 13;9(6):e99220. doi: 10.1371/journal.pone.0099220. eCollection 2014.

Abstract

Motivated by recent experimental studies, we derive and analyze a two-dimensional model for the contraction patterns observed in protoplasmic droplets of Physarum polycephalum. The model couples a description of an active poroelastic two-phase medium with equations describing the spatiotemporal dynamics of the intracellular free calcium concentration. The poroelastic medium is assumed to consist of an active viscoelastic solid representing the cytoskeleton and a viscous fluid describing the cytosol. The equations for the poroelastic medium are obtained from continuum force balance and include the relevant mechanical fields and an incompressibility condition for the two-phase medium. The reaction-diffusion equations for the calcium dynamics in the protoplasm of Physarum are extended by advective transport due to the flow of the cytosol generated by mechanical stress. Moreover, we assume that the active tension in the solid cytoskeleton is regulated by the calcium concentration in the fluid phase at the same location, which introduces a mechanochemical coupling. A linear stability analysis of the homogeneous state without deformation and cytosolic flows exhibits an oscillatory Turing instability for a large enough mechanochemical coupling strength. Numerical simulations of the model equations reproduce a large variety of wave patterns, including traveling and standing waves, turbulent patterns, rotating spirals and antiphase oscillations in line with experimental observations of contraction patterns in the protoplasmic droplets.

摘要

受近期实验研究的启发,我们推导并分析了一个二维模型,用于描述多头绒泡菌原生质滴中观察到的收缩模式。该模型将活性多孔弹性两相介质的描述与描述细胞内游离钙浓度时空动态的方程耦合在一起。多孔弹性介质被假定为由代表细胞骨架的活性粘弹性固体和描述细胞质溶胶的粘性流体组成。多孔弹性介质的方程由连续体力平衡得到,包括相关的力学场和两相介质的不可压缩条件。由于机械应力产生的细胞质溶胶流动,多头绒泡菌原生质中钙动力学的反应扩散方程通过平流输运得到扩展。此外,我们假设固体细胞骨架中的活性张力由同一位置液相中的钙浓度调节,这引入了一种机械化学耦合。对无变形和细胞质溶胶流动的均匀状态进行的线性稳定性分析表明,对于足够大的机械化学耦合强度,会出现振荡型图灵不稳定性。模型方程的数值模拟再现了各种各样的波动模式,包括行波和驻波、湍流模式、旋转螺旋以及反相振荡,这与原生质滴收缩模式的实验观察结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ae/4057197/4773c92b3a42/pone.0099220.g009.jpg

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