Universität Würzburg, Julius-von-Sachs-Institut für Biowissenschaften, Lehrstuhl für Botanik ll - Okophysiologie und Vegetationsökologie, Julius-von-Sachs-Platz 3, D-97082 Würzburg, Germany.
J Exp Bot. 2010 Sep;61(14):3865-73. doi: 10.1093/jxb/erq193. Epub 2010 Jul 14.
The permeabilities of amino acids for isolated cuticular membranes of ivy (Hedera helix L.) were measured at different pH. Cuticular permeances were lowest for the zwitterionic form at pH 6, followed by the cationic form at pH 1. Highest permeances were obtained for the anionic form at pH 11. Permeances were not correlated with octanol/water partition coefficients and decreased at a given pH with increasing molar volume of the solute. This finding suggests that permeation takes place in the polar cuticular pathways. The effect of pH on the cuticular transport properties was analysed according to the porous membrane model considering the polyelectrolytic character of the cuticle in terms of porosity, tortuosity, and size selectivity of the aqueous cuticular pathway which is altered by pH. An increase of water content and permeability of the cuticular membrane was caused by the dissociation of weak acidic groups with increasing pH leading to a swelling of the cuticle induced by fixed negative charges. In addition, the pH-dependent size of the hydration shell of the amino acids was identified as a secondary factor explaining the variability of cuticular permeances.
在不同 pH 值下,测量了氨基酸对常春藤(Hedera helix L.)离体表皮膜的通透性。在 pH 值为 6 时,两性离子形式的表皮渗透率最低,随后在 pH 值为 1 时,阳离子形式的渗透率最低。在 pH 值为 11 时,阴离子形式的渗透率最高。渗透率与辛醇/水分配系数无关,并且在给定 pH 值下,随着溶质摩尔体积的增加而降低。这一发现表明渗透发生在极性表皮途径中。根据多孔膜模型分析 pH 值对表皮运输性质的影响,该模型考虑了角质层的聚电解质性质,包括多孔性、曲折度和水合表皮途径的尺寸选择性,这些特性会因 pH 值而发生变化。随着 pH 值的增加,弱酸性基团的离解会导致角质层固定负电荷的膨胀,从而增加角质层的含水量和渗透率。此外,氨基酸水合壳的 pH 依赖性大小被确定为解释角质层渗透率变化的次要因素。