School of Chemistry, University of Bristol, BS8 1TS, Bristol, UK.
Planta. 1977 Jan;135(2):129-36. doi: 10.1007/BF00387161.
Seed maturation of Pisum sativum cv. Progress No. 9 proceeds more slowly in winter than in summer even when the parent plants are grown in greenhouse conditions with light-and heat-supplementation. For parent plants grown under "summer" and "winter" conditions the metabolism of [(3)H]GA9 in cultured seeds is qualitatively different in seeds of equivalent age and qualitatively the same in seeds of equivalent weight. 13-Hydroxylation of [(3)H]GA9→[(3)H]GA20 is restricted to early stages of seed development. 2β-Hydroxylation of [(3)H]GA9→2β-OH-[(3)H]GA9 has only been observed at a stage of development after endogenous GA9 has accumulated. 2β-OH-GA9 has been shown to be endogenous to pea and is named GA51. H2-GA31 and its conjugate have not been shown to be present in pea and may be induced metabolites of [(3)H]GA9. The metabolism of GA20→GA29 is used to illustrate a technique of feeding [(2)H][(3)H]GAs in order to distinguish a metabolite from the same endogenous compound. The in vitro conversion of [(3)H]GA20→[(3)H]GA29, and the virtual non-metabolism of [(3)H]GA29 have been confirmed for seeds in intact fruits. These results are discussed in relation to the apparent absence of conjugated GAs in mature pea seeds.
豌豆 cv.Progress No.9 的种子成熟过程在冬季比夏季缓慢,即使母株在温室条件下生长并补充光照和热量也是如此。对于在“夏季”和“冬季”条件下生长的母株,培养种子中[(3)H]GA9 的代谢在同等年龄的种子中在质量上是不同的,而在同等重量的种子中则是相同的。[(3)H]GA9 的 13-羟化作用→[(3)H]GA20 仅局限于种子发育的早期阶段。2β-羟化作用→2β-OH-[(3)H]GA9 仅在内源 GA9 积累后发育阶段观察到。2β-OH-GA9 已被证明是豌豆中的内源性物质,命名为 GA51。H2-GA31 和其共轭物尚未被证明存在于豌豆中,可能是[(3)H]GA9 的诱导代谢物。GA20→GA29 的代谢被用来说明一种喂养[(2)H][(3)H]GAs 的技术,以便将代谢物与相同的内源性化合物区分开来。[(3)H]GA20→[(3)H]GA29 的体外转化,以及[(3)H]GA29 的虚拟非代谢已被证实存在于完整果实中的种子中。这些结果与成熟豌豆种子中明显缺乏共轭 GA 有关。