Department of Plant Biology, University of Illinois, Urbana, Illinois 61801.
Plant Physiol. 1983 Sep;73(1):159-64. doi: 10.1104/pp.73.1.159.
In this paper, uptake and distribution of sodium and potassium within the mesocotyl are considered in excised, 8-day-old corn (Zea mays L.) seedlings supplied with label via the transpiration stream. The stele and cortex were dissected following uptake and analyzed separately. At equal concentrations, sodium uptake by the stele was much more rapid than potassium uptake, and sodium was preferentially retained within the stele. Transport of sodium to the cortex halted when the supply of ions in the transpiration stream was interrupted. Potassium would not substitute for sodium in restoring this transport but neither did it compete with sodium for transport to the cortex. In the presence of continued sodium supply, transport was temperature sensitive.By labeling first with (22)Na for 2 hours and subsequently with (24)Na for up to 21 hours, three sodium pools were identified within the stele. The first was rapidly transportable to the cortex. The second equilibrated rapidly with the first but was not itself directly available for transport. We postulate that these represent the stelar symplasm and apoplasm, respectively. A third pool was not transported and probably represents sequestration within the vacuoles of some cell type. Transport of label acquired during the initial 2 hours proceeded with a half-time of approximately 10 hours with 10 millimolar sodium present during the redistribution period, and with a half-time of approximately 30 hours at 1 millimolar sodium.A working model is presented which explains these characteristics and supplies approachable questions for subsequent study.
本文研究了通过蒸腾流供应标记物后, 8 天龄玉米( Zea mays L. )幼苗中中柱和皮层对钠钾的吸收和分布。吸收后将中柱和皮层分离并分别进行分析。在等浓度条件下,中柱对钠的吸收比钾快得多,且钠优先保留在中柱内。当蒸腾流中的离子供应中断时,钠向皮层的运输就会停止。钾不能替代钠来恢复这种运输,也不会与钠竞争向皮层运输。在持续供应钠的情况下,运输对温度敏感。通过首先用 (22)Na 标记 2 小时,然后用 (24)Na 标记长达 21 小时,在中柱内鉴定出三个钠库。第一个可迅速转运到皮层。第二个与第一个迅速达到平衡,但本身不能直接用于运输。我们推测它们分别代表中柱共质体和质外体。第三个库没有被运输,可能代表某些细胞类型的液泡内的隔离。在重新分布期间存在 10 毫摩尔钠离子时,初始 2 小时内获得的标记物的运输半衰期约为 10 小时,而在 1 毫摩尔钠离子时半衰期约为 30 小时。提出了一个工作模型,该模型解释了这些特征,并为后续研究提供了可探讨的问题。