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苔藓类植物粗叶泥炭藓(Hedw.)Warnst. 对细胞内和细胞外镉吸收的离子控制

Ionic control of intracellular and extracellular Cd uptake by the moss Rhytidiadelphus squarrosus (Hedw.) Warnst.

作者信息

Wells J M, Brown D H

机构信息

Department of Botany, The University of Bristol, Woodland Road, Bristol BS8 1UG, UK.

出版信息

New Phytol. 1990 Nov;116(3):541-553. doi: 10.1111/j.1469-8137.1990.tb00538.x.

Abstract

The effects of K, Ca, Mg and H ions on the kinetics of Cd uptake by the moss Rhytidiadelphus squarrosus (Hedw.) Warnst were investigated. The affinity of extracellular exchange sites for these ions decreased in the order Cd, H > Ca > Mg ≫ K and there were competitive interactions between ions. The affinity of the intracellular Cd transport site for these ions decreased in the order Ca > Cd > Mg ≫ K. Calcium was shown to be competitive and Mg a non-competitive inhibitor of intracellular Cd uptake. Intracellular Cd uptake, optimal at about pH 5.6, was highly sensitive to pH, which primarily affected the V . Potassium, supplied at less than 1 mM, had no significant effect on Cd uptake. However, at concentrations greater than 1 mM, KNO caused both a stimulation in transport site activity and reduced affinity for Cd. Pretreatment with KNO removed potentially competing ions from the cell wall, altering the subsequent chemical equilibria established when moss shoots were incubated in Cd solutions. Reduced competition from ions removed by KNO pretreatment resulted in a higher affinity of both transport sites and extracellular exchange sites for Cd, Ca and Mg. The results demonstrate quantitatively the regulatory effects on intracellular metal uptake of the extracellular ionic environment provided by the cell wall.

摘要

研究了钾、钙、镁和氢离子对藓类植物方枝青藓(Rhytidiadelphus squarrosus (Hedw.) Warnst)吸收镉动力学的影响。细胞外交换位点对这些离子的亲和力按镉、氢>钙>镁≫钾的顺序降低,且离子之间存在竞争性相互作用。细胞内镉转运位点对这些离子的亲和力按钙>镉>镁≫钾的顺序降低。结果表明,钙具有竞争性,而镁是细胞内镉吸收的非竞争性抑制剂。细胞内镉吸收在pH约为5.6时最佳,对pH高度敏感,pH主要影响最大反应速率(V)。供应浓度低于1 mM的钾对镉吸收无显著影响。然而,当浓度大于1 mM时,硝酸钾既刺激转运位点活性,又降低对镉的亲和力。用硝酸钾预处理可去除细胞壁中潜在的竞争性离子,改变藓类植物茎在镉溶液中孵育时随后建立的化学平衡。硝酸钾预处理去除离子后竞争减少,导致转运位点和细胞外交换位点对镉、钙和镁的亲和力更高。结果定量地证明了细胞壁提供的细胞外离子环境对细胞内金属吸收的调节作用。

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