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首页> 外文期刊>Journal of Plant Growth Regulation >Expansive Growth vs. pH Reflects a Poisson Point Process of Binding/Unbinding Events in Plant Cell Walls
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Expansive Growth vs. pH Reflects a Poisson Point Process of Binding/Unbinding Events in Plant Cell Walls

机译:膨胀生长与pH值的关系反映了植物细胞壁中结合/解绑事件的泊松点过程

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The paramount role of pH and temperature (T) in the expansive growth of a plant coleoptile/hypocotyl non-meristematic zone or plant and fungal cells was examined within the framework of the underlying chemical bond statistics in order to reproduce an experimental plot of growth vs. pH. Here, according to the definition, pH = pH (mu(H+) (T), T) is considered as a function of the chemical potential of the -H+ (hydronium) ions (mu(H+)), as well as an implicit and explicit function of T. The derivation of the pH and T dependent expansive growth distribution from the Poisson statistics of the "tethers" that reproduce the chemical bonds between microfibrils was determined. The probability distribution for the attachment/detachment/reattachment events of the tethers that are connected to the microfibrils in the elongation zone was obtained. The two distinct but interrelated modes of the expansive growth, which are known as "acid growth" and "auxin growth" were distinguished in the analytic model, while the acid growth hypothesis was verified and confirmed at the semi-empirical and microscopic levels for the first time. Moreover, further perspectives, in which the macroscopic variables (P, V, T) with P standing for the turgor pressure and V for the cell volume, and the microscopic variables, E-d,E-r, which represent the binding energies of the detachment/reattachment events at the expense of ATP energy, and mu (H+) can occur simultaneously, were identified. With a few assumptions that are partly based on experimental data it was possible to synthesise a link between the microscopic, explicit statistical explanation of bond dynamics and the macroscopic rheological properties of the cell wall at a given pH and temperature. A statistical description that predicted the importance of pH and temperature-dependent chemical potential of the -H+ ions in microscopic events that result in growth would be supposedly applicable across scales.
机译:在基础化学键统计的框架内检查了pH值和温度(T)在植物胚芽鞘/下胚轴非分生组织区或植物和真菌细胞的扩张生长中的重要作用,以重现生长与pH值的实验图。在这里,根据定义,pH = pH (mu(H+) (T), T) 被认为是 -H+(水合氢)离子 (mu(H+)) 的化学势的函数,以及 T 的隐式和显式函数。从再现微纤维之间化学键的“系绳”的泊松统计量中得出了 pH 和 T 依赖性膨胀生长分布。得到了与伸长区微纤维相连的系绳的附着/分离/重新附着事件的概率分布。在分析模型中区分了两种截然不同但相互关联的膨胀生长模式,即“酸生长”和“生长素生长”,同时首次在半经验和微观水平上验证和证实了酸生长假说。此外,还确定了宏观变量(P、V、T),其中P代表膨胀压力,V代表细胞体积,微观变量E-d,E-r代表以牺牲ATP能量为代价的分离/再附着事件的结合能,μ(H+)可以同时发生。通过一些部分基于实验数据的假设,可以综合出键动力学的微观、明确的统计解释与给定pH值和温度下细胞壁的宏观流变特性之间的联系。预测 -H+ 离子的 pH 值和温度依赖性化学势在导致生长的微观事件中的重要性的统计描述应该适用于各种尺度。

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