MSU/AEC Plant Research Laboratory, Michigan State University East Lansing, Michigan 48823.
Plant Physiol. 1967 Jul;42(7):1008-16. doi: 10.1104/pp.42.7.1008.
Gibberellic acid (GA) enhances the synthesis of alpha-amylase and ribonuclease in isolated aleurone layers and this process is inhibited by abscisin. Removal of gibberellic acid in mid-course of alpha-amylase production results in a slowing down of alpha-amylase synthesis, suggesting a continued requirement of GA for enzyme synthesis. This is paralleled by a continuous requirement for RNA synthesis. Addition of 6-methylpurine or 8-azaguanine in mid-course results in an inhibition of alpha-amylase synthesis within 3 to 4 hours. However, actinomycin D added in mid-course is almost without effect. This is not due to its failure to enter the cells, because it does inhibit (14)C-uridine incorporation at this stage. Addition of abscisin to aleurone layers which are synthesizing alpha-amylase results in an inhibition of this synthesis within 2 to 3 hours. Cycloheximide on the other hand inhibits enzyme synthesis immediately upon its addition. These data are consistent with the hypothesis that the expression of the GA effect requires the synthesis of enzyme-specific RNA molecules. The similarity in the kinetics of inhibition between abscisin on the one hand and 8-azaguanine or 6-methylpurine on the other suggests that abscisin may exert its action by inhibiting the synthesis of these enzyme-specific RNA molecules or by preventing their incorporation into an active enzyme-synthesising unit.
赤霉素(GA)能促进分离的糊粉层中α-淀粉酶和核糖核酸酶的合成,这一过程被脱落酸所抑制。在α-淀粉酶合成过程中途去除赤霉素会导致α-淀粉酶合成减缓,这表明 GA 对酶合成仍有持续的需求。这与 RNA 合成的持续需求相平行。在中途加入 6-甲基嘌呤或 8-氮鸟嘌呤会导致 3 至 4 小时内α-淀粉酶合成受到抑制。然而,在中途加入放线菌素 D 几乎没有效果。这并不是因为它不能进入细胞,因为它确实在这个阶段抑制了(14)C-尿嘧啶的掺入。将脱落酸添加到正在合成α-淀粉酶的糊粉层中,会导致 2 至 3 小时内该合成受到抑制。另一方面,环己亚胺在添加后立即抑制酶的合成。这些数据与 GA 效应的表达需要合成酶特异性 RNA 分子的假说一致。脱落酸一方面与 8-氮鸟嘌呤或 6-甲基嘌呤在抑制方面的动力学相似性表明,脱落酸可能通过抑制这些酶特异性 RNA 分子的合成或阻止它们掺入到一个活跃的酶合成单位中来发挥作用。