Cutler J M, Rains D W
Department of Agronomy and Range Science, University of California, Davis, California 95616.
Plant Physiol. 1974 Jul;54(1):67-71. doi: 10.1104/pp.54.1.67.
The uptake of cadmium by excised root tissue of barley (Hordeum vulgare L. cv. Arivat) was investigated with respect to kinetics, concentration, and interactions with various cations. The role of metabolism in Cd absorption was examined using a range of temperatures, anaerobic treatments, and chemical inhibitors. The uptake and distribution of Cd in intact barley plants was also determined. A large fraction of the Cd taken up by excised barley roots was apparently the result of exchange adsorption and was displaced by subsequent desorption with unlabeled Cd, Zn, Cu, or Hg. Another fraction of Cd which could not be displaced by desorption in unlabeled Cd was thought to result from strong irreversible binding of Cd, perhaps on sites of the cell wall. The fraction of the Cd taken up beyond that by exchange adsorption by fresh roots was a linear function of temperature, and inhibited by conditions of low oxygen and by the presence of 2,4-dinitrophenol. It was concluded that this fraction of Cd entered excised barley roots by diffusion. Diffusion, when followed by sequestering, probably accounts for the accumulation of Cd observed in intact barley plants.
研究了大麦(Hordeum vulgare L. cv. Arivat)离体根组织对镉的吸收情况,涉及动力学、浓度以及与各种阳离子的相互作用。使用一系列温度、厌氧处理和化学抑制剂研究了代谢在镉吸收中的作用。还测定了镉在完整大麦植株中的吸收和分布。离体大麦根吸收的大部分镉显然是交换吸附的结果,随后用未标记的镉、锌、铜或汞解吸可将其置换。另一部分不能被未标记镉解吸置换的镉被认为是由于镉的强烈不可逆结合,可能是在细胞壁位点上。新鲜根通过交换吸附吸收的镉之外的部分镉吸收量是温度的线性函数,并受到低氧条件和2,4 -二硝基苯酚存在的抑制。得出的结论是,这部分镉通过扩散进入离体大麦根。扩散之后再进行螯合,可能是完整大麦植株中观察到的镉积累的原因。