Lee Y H, Mok M C, Mok D W, Griffin D A, Shaw G
Department of Horticulture, Oregon State University, Corvallis, Oregon 97331.
Plant Physiol. 1985 Mar;77(3):635-41. doi: 10.1104/pp.77.3.635.
The metabolism of trans-[8-(14)C]zeatin was examined in embryos of Phaseolus vulgaris cv Great Northern (GN) and P. lunatus cv Kingston (K) in an attempt to detect genetic variations in organized plant tissues. Metabolites were fractionated by HPLC, and identified by chemical and enzymic tests and GC-MS analyses. Five major metabolites were recovered from P. vulgaris embryo extracts: ribosylzeatin, ribosylzeatin 5'-monophosphate, an O-glucoside of ribosylzeatin, and two novel metabolites, designated as I and II. Based on results of degradation tests and GC-MS analyses, I and II were tentatively identified as O-ribosyl derivatives of zeatin and ribosylzeatin. In embryos of P. lunatus, however, metabolites I and II were not present. The major metabolites were ribosylzeatin, ribosylzeatin 5'-monophosphate, and the O-glucosyl derivatives of zeatin and ribosylzeatin. The zeatin metabolites recovered were the same for embryos of different sizes but their quantities varied with embryo size and incubation time. The genetic differences appear to be embryo-specific and may be useful in the studies of the possible relationship between abnormal interspecific hybrid embryo growth and hormonal derangement in Phaseolus. In addition, analyses of both organized (intact) and unorganized (callus) tissues of the same genotype may provide an opportunity to address the problem of differential expression of genes regulating cytokinin metabolism during plant development.
为了检测有组织的植物组织中的遗传变异,研究了反式-[8-(14)C]玉米素在菜豆品种大北方(GN)和利马豆品种金斯敦(K)胚中的代谢情况。代谢产物通过高效液相色谱法进行分离,并通过化学和酶学测试以及气相色谱-质谱分析进行鉴定。从菜豆胚提取物中回收了五种主要代谢产物:核糖基玉米素、核糖基玉米素5'-单磷酸、核糖基玉米素的O-葡萄糖苷,以及两种新的代谢产物,分别命名为I和II。根据降解测试和气相色谱-质谱分析结果,I和II被初步鉴定为玉米素和核糖基玉米素的O-核糖基衍生物。然而,在利马豆胚中,代谢产物I和II不存在。主要代谢产物是核糖基玉米素、核糖基玉米素5'-单磷酸,以及玉米素和核糖基玉米素的O-葡萄糖基衍生物。回收的玉米素代谢产物在不同大小的胚中是相同的,但它们的数量随胚大小和培养时间而变化。遗传差异似乎是胚特异性的,可能有助于研究菜豆种间杂种胚异常生长与激素紊乱之间的可能关系。此外,对同一基因型的有组织(完整)和无组织(愈伤组织)组织进行分析,可能为解决植物发育过程中细胞分裂素代谢调控基因差异表达的问题提供机会。