Zhang G, Taylor G J
Department of Botany, University of Alberta, Edmonton, Alberta, T6G 2E9 Canada.
Plant Physiol. 1990 Oct;94(2):577-84. doi: 10.1104/pp.94.2.577.
The identity of a linear phase of aluminum (Al) uptake in Triticum aestivum was investigated by analysis of the kinetics of Al uptake by excised roots and purified cell wall fractions. Classical interpretation of kinetic data suggests that a linear phase of uptake with time reflects uptake across the plasma membrane; however, in studies with Al the possibility that the linear phase of uptake includes accumulation of Al in both the symplasm and the apoplasm has not been discounted. In our experiments, we observed a linear phase of Al uptake at both ambient and low temperatures, although the rate of uptake at 0 degrees C was 53 to 72% less than at 23 degrees C, depending on cultivars. This nonsaturable phase of uptake at low temperature suggests that a portion of the linear phase of Al uptake is nonmetabolic. Furthermore, analysis of Al in cell wall fractions isolated from excised roots pretreated with Al suggests that the linear phase of uptake includes a cell wall component. When excised roots were pretreated with Al, accumulation of Al in purified cell wall material included a linear phase that could not be desorbed with a 30 minute wash in citrate. The rates of linear-phase accumulation of Al by cell wall material and cell contents were similar. In contrast, the linear phase of in vitro uptake of Al by purified cell wall material was completely desorbed by a 30 minute wash with citrate. These results suggest that the linear phase of Al uptake observed in excised roots of T. aestivum included metabolism-dependent binding of Al in apoplasm.
通过对离体根和纯化细胞壁组分吸收铝(Al)的动力学分析,研究了普通小麦中铝吸收线性阶段的特征。动力学数据的经典解释表明,吸收随时间的线性阶段反映了跨质膜的吸收;然而,在铝的研究中,吸收的线性阶段包括铝在共质体和质外体中积累的可能性并未被排除。在我们的实验中,我们在环境温度和低温下均观察到了铝吸收的线性阶段,尽管0摄氏度时的吸收速率比23摄氏度时低53%至72%,这取决于品种。低温下这种不饱和吸收阶段表明,铝吸收线性阶段的一部分是非代谢性的。此外,对用铝预处理的离体根中分离出的细胞壁组分中的铝进行分析表明,吸收的线性阶段包括细胞壁成分。当离体根用铝预处理时,纯化细胞壁材料中铝的积累包括一个线性阶段,该阶段不能通过在柠檬酸盐中洗涤30分钟而解吸。细胞壁材料和细胞内容物中铝的线性阶段积累速率相似。相比之下,纯化细胞壁材料对铝的体外吸收线性阶段通过用柠檬酸盐洗涤30分钟可完全解吸。这些结果表明,在普通小麦离体根中观察到的铝吸收线性阶段包括质外体中铝的代谢依赖性结合。