Battelle, Pacific Northwest Laboratories, P. O. Box 999, Richland, Washington 99352.
Plant Physiol. 1983 Nov;73(3):844-8. doi: 10.1104/pp.73.3.844.
The absorption characteristics of Cd(2+) by 10- to 12-day-old soybean plants (Glycine max cv Williams) were investigated with respect to influence of Cd concentration on adsorption to root surfaces, root absorption, transport kinetics and interaction with the nutrient cations Cu(2+), Fe(2+), Mn(2+), and Zn(2+). The fraction of nonexchangeable Cd bound to roots remained relatively constant at 20 to 25% of the absorbed fraction at solution concentration of 0.0025 to 0.5 micromolar, and increased to 45% at solution concentration in excess of 0.5 micromolar. The exchangeable fraction represented 1.4 to 32% of the absorbed fraction, and was concentration dependent. Using dinitrophenol as a metabolic inhibitor, the ;metabolically absorbed' fraction was shown to represent 75 to 80% of the absorbed fraction at concentration less than 0.5 micromolar, and decreased to 55% at 5 micromolar. At comparatively low Cd concentrations, 0.0025 to micromolar 0.3, root absorption exhibited two isotherms with K(2) values of 0.08 and 1.2 micromolar. Root absorption and transfer from root to shoot of Cd(2+) was inhibited by Cu(2+), Fe(2+), Mn(2+), and Zn(2+). Analyses of kinetic interaction of these nutrient cations with Cd(2+) indicated that Cu(2+), Fe(2+), Zn(2+), and possibly Mn(2+) inhibited Cd absorption competitively suggesting an involvement of a common transport site or process.
研究了 10-12 天龄大豆植株(Glycine max cv Williams)对 Cd(2+)的吸收特性,重点探讨了 Cd 浓度对根表面吸附、根吸收、转运动力学以及与营养阳离子 Cu(2+)、Fe(2+)、Mn(2+)和 Zn(2+)相互作用的影响。在 0.0025 至 0.5 微摩尔的溶液浓度范围内,与根系结合的不可交换 Cd 分数相对稳定,约占吸收分数的 20-25%,而在溶液浓度超过 0.5 微摩尔时,这一分数增加到 45%。可交换分数占吸收分数的 1.4-32%,并与浓度有关。利用二硝基苯酚作为代谢抑制剂,证明代谢吸收分数在浓度低于 0.5 微摩尔时占吸收分数的 75-80%,而在 5 微摩尔时降至 55%。在相对较低的 Cd 浓度(0.0025 至 0.3 微摩尔)下,根吸收表现出两种等吸附曲线,K(2)值分别为 0.08 和 1.2 微摩尔。Cu(2+)、Fe(2+)、Mn(2+)和 Zn(2+)抑制了 Cd(2+)的根吸收和向地上部的转移。这些营养阳离子与 Cd(2+)之间的动力学相互作用分析表明,Cu(2+)、Fe(2+)、Zn(2+)以及可能的 Mn(2+)竞争性抑制了 Cd 吸收,表明它们共同参与了一个运输位点或过程。