Research School of Biological Sciences, Australian National University, Canberra, A. C., T., Australia 2601.
Plant Physiol. 1984 Feb;74(2):239-46. doi: 10.1104/pp.74.2.239.
[(3)H]Zeatin riboside was supplied to intact pea (Pisum sativum) plants either onto the leaves or onto the root nodules. When applied directly to nodules, approximately 70% of recovered radioactivity remained in the nodules, approximately 15% was detected in the root system, and 15% was in the shoot. However, when supplied to the leaves, little (3)H was transported, with approximately 0.05% of recovered radioactivity being found in the root system and nodules. On a fresh weight basis, nodules accumulated more (3)H than the parent root. In both types of studies, metabolites with an intact zeatin moiety were detected in root nodules.In all experiments, two-dimensional thin layer chromatography revealed that little (3)H remained as zeatin riboside in root or nodule tissue at the end of the labeling period. Nodules metabolized [(3)H]zeatin riboside to the following cytokinins/cytokinin metabolites: zeatin, adenosine, adenine, the O-glucosides of zeatin and zeatin riboside, lupinic acid, nucleotides of adenine and zeatin, and the dihydro derivatives of many of these compounds.Although a few small differences were observed, there were no major differences between root and nodule tissue in their metabolism of [(3)H] zeatin riboside. Furthermore, any differences between effective and ineffective nodules were generally minor.
[(3)H]玉米素核苷被供应给完整的豌豆(Pisum sativum)植株,要么施用于叶片,要么施用于根瘤。当直接应用于根瘤时,大约 70%回收的放射性物质仍留在根瘤中,大约 15%在根系中检测到,15%在地上部分。然而,当供应给叶片时,很少有(3)H被运输,大约 0.05%回收的放射性物质存在于根系和根瘤中。按鲜重计,根瘤积累的(3)H比母体根多。在这两种类型的研究中,在根瘤中都检测到了具有完整玉米素部分的代谢物。在所有实验中,二维薄层层析显示,在标记期结束时,根或根瘤组织中几乎没有(3)H仍然作为玉米素核苷存在。根瘤将[(3)H]玉米素核苷代谢为以下细胞分裂素/细胞分裂素代谢物:玉米素、腺苷、腺嘌呤、玉米素和玉米素核苷的 O-葡萄糖苷、羽扇豆酸、腺嘌呤和玉米素的核苷酸,以及这些化合物的许多二氢衍生物。尽管观察到一些小的差异,但根瘤组织和根组织在代谢[(3)H]玉米素核苷方面没有重大差异。此外,有效根瘤和无效根瘤之间的任何差异通常都很小。