School of Chemistry, University of Bristol, BS8 1TS, Bristol, UK.
Planta. 1986 Sep;168(3):414-20. doi: 10.1007/BF00392370.
The metabolism and growth-promoting activity of gibberellin A20 (GA20) were compared in the internode-length genotypes of pea, na le and na Le. Gibberellin A29 and GA29-catabolite were the major metabolites of GA20 in the genotype na le. However, low levels of GA1, GA8 and GA8-catabolite were also identified as metabolites in this genotype, confirming that the le allele is a 'leaky' mutation. Gibberellin A20 was approximately 20 to 30 times as active in promoting internode growth of genotype na Le as of genotype na le. However, the levels of the 3β-hydroxylated metabolite of GA20, GA8 (2β-hydroxy GA1), were similar for a given growth response in both genotypes. In each case a close linear relationship was observed between internode growth and the logarithm of GA8 levels. A similar relationship was found on comparing GA20 metabolism in the three genotypes le (d), le and Le. The former mutation results in a more severe dwarf phenotype than the le allele (which has previously been shown to reduce the 3β-hydroxylation of GA20 to GA1). These results indicate that GA20 has negligible intrinsic activity and support the contention that GA1 is the only GA active per se in promoting stem growth in pea.
将赤霉素 A20(GA20)在豌豆的节间长度基因型 na le 和 na Le 中的代谢和生长促进活性进行了比较。赤霉素 A29 和 GA29 代谢产物是 na le 基因型中 GA20 的主要代谢产物。然而,在该基因型中还鉴定出低水平的 GA1、GA8 和 GA8 代谢产物,这证实了 le 等位基因是一个“渗漏”突变。GA20 在促进 na Le 基因型节间生长方面的活性大约是 na le 基因型的 20 到 30 倍。然而,对于两种基因型中给定的生长反应,GA20 的 3β-羟基化代谢产物 GA8(2β-羟基 GA1)的水平相似。在每种情况下,节间生长与 GA8 水平的对数之间都观察到密切的线性关系。在比较 le(d)、le 和 Le 这三种基因型中 GA20 的代谢时,也发现了类似的关系。前一种突变导致的矮化表型比 le 等位基因(先前已表明其会降低 GA20 向 GA1 的 3β-羟化)更为严重。这些结果表明 GA20 具有微不足道的内在活性,并支持 GA1 是唯一本身能促进豌豆茎生长的 GA 的观点。