Calculation Procedure for Dynamic Condition of Ion Composition in Cell Walls Altered by Proton Fluxes

I. Arif
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Abstract

The calculation procedure has been developed to determine the dynamic condition of the ion composition in cell walls during proton extrusion, known as the Weak Acid Donnan Manning (WADM) model for fluxes. In this model, the walls of plant cells are considered as a system containing weak acid polymers where the interaction of ions obeys the Manning condensation theory and the Donnan theory. When protons are transported across the walls during proton fluxes, the transported proton will interact with the wall ions and alter the ion composition. This depends on the wall parameters such as the concentration of ionisable sites, the pK of the wall weak acid, and the wall linear charge density parameter. When the linear charge density parameter is still higher than the reciprocal of the highest valence of the involve cations, the transported protons during proton fluxes will decrease the wall pH, alter the ion composition in the wall Donnan free space and water free space, and release the condensed cations. Therefore some of the proton fluxes are represented by the flux of the condensed cations outside the walls. However when the linear charge density parameter is less than the reciprocal of the highest valence of the involve cations, there is no condensed cations in the walls so that the transported protons only alter the ion composition in the wall Donnan free space and water free space.
质子通量改变细胞壁离子组成动态条件的计算方法
质子挤压过程中细胞壁中离子组成的动态状态的计算方法被称为弱酸性Donnan Manning (WADM)通量模型。在该模型中,植物细胞壁被认为是一个包含弱酸聚合物的系统,其中离子的相互作用遵循Manning冷凝理论和Donnan理论。当质子在质子通量中穿越壁时,被传输的质子将与壁离子相互作用并改变离子的组成。这取决于壁参数,如电离位点的浓度、壁弱酸的pK和壁线性电荷密度参数。当线性电荷密度参数仍高于所涉及阳离子的最高价倒数时,质子通量中输运的质子将降低壁pH,改变壁Donnan自由空间和水自由空间中的离子组成,并释放凝聚的阳离子。因此,一些质子通量由壁外凝聚阳离子的通量表示。然而,当线性电荷密度参数小于所涉及阳离子的最价价倒数时,壁上没有凝聚的阳离子,因此传输的质子只改变了壁上Donnan自由空间和water自由空间中的离子组成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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