Department of Horticulture, Oregon State University, Corvallis, Oregon 97331-7304.
Plant Physiol. 1992 Nov;100(3):1354-60. doi: 10.1104/pp.100.3.1354.
Effects of the Na and Le loci on gibberellin (GA) content and transport in pea (Pisum sativum L.) shoots were studied. GA(1), GA(8), GA(17), GA(19), GA(20), GA(29), GA(44), GA(8) catabolite, and GA(29) catabolite were identified by full-scan gas chromatography-mass spectrometry in extracts of expanding and fully expanded tissues of line C79-338 (Na Le). Quantification of GAs by gas chromatography-single-ion monitoring using deuterated internal standards in lines differing at the Na and Le alleles showed that na reduced the contents of GA(19), GA(20), and GA(29) on average to <3% and of GA(1) and GA(8) to <30% of those in corresponding Na lines. In expanding tissues from Na le lines, GA(1) and GA(8) concentrations were reduced to approximately 10 and 2%, respectively, and GA(29) content increased 2- to 3-fold compared with those in Na Le plants. There was a close correlation between stem length and the concentrations of GA(1) or GA(8) in shoot apices in all six genotypes investigated. In na/Na grafts, internode length and GA(1) concentration of nana scions were normalized, the GA(20) content increased slightly, but GA(19) levels were unaffected. Movement of labeled GAs applied to leaves on Na rootstocks indicated that GA(19) was transported poorly to apices of na scions compared with GA(20) and GA(1). Our evidence suggests that GA(20) is the major transported GA in peas.
研究了 Na 和 Le 基因座对豌豆(Pisum sativum L.)茎中赤霉素(GA)含量和运输的影响。通过全扫描气相色谱-质谱法在扩展和充分扩展组织的提取物中鉴定了 GA(1)、GA(8)、GA(17)、GA(19)、GA(20)、GA(29)、GA(44)、GA(8)代谢产物和 GA(29)代谢产物。使用氘化内部标准物通过气相色谱-单离子监测对 Na 和 Le 等位基因不同的品系进行 GA 的定量,结果表明,na 将 GA(19)、GA(20)和 GA(29)的含量平均降低至 <3%,GA(1)和 GA(8)的含量降低至<30%相应的 Na 系。在 Na le 系的扩展组织中,GA(1)和 GA(8)的浓度分别降低到约 10%和 2%,而 GA(29)的含量与 Na Le 植物相比增加了 2-3 倍。在所研究的六个基因型中,茎长与茎尖中 GA(1)或 GA(8)的浓度密切相关。在 na/Na 接穗中,nana 接穗的节间长度和 GA(1)浓度归一化,GA(20)的含量略有增加,但 GA(19)的水平不受影响。将标记的 GA 施加到 Na 砧木上的叶片上,表明与 GA(20)和 GA(1)相比,GA(19)向 na 接穗的顶端输送不良。我们的证据表明,GA(20)是豌豆中主要的运输 GA。