Department of Botany and Plant Pathology, Purdue University, 47907, West Lafayette, IN, USA.
Planta. 1981 Jun;152(2):131-6. doi: 10.1007/BF00391184.
Red light (R) and gibberellins (GA) each induce a water potential decrease in the axes of lettuce (Lactuca sativa L.) embryos resulting in germination of intact "seeds" (achenes) or an increase in growth of the axes of isolated embryos. The fruit coat and endosperm are a substantial barrier to the penetration of exogeneous GA. Isolated embryos take up 35 times as much [(3)H]GA1 as the embryos of intact seeds and respond to less than 1·10(-10) M GA3 or GA4+7. We calculated that only 1·10(-8) M of either GA3 or GA4+7 would result in 50% germination if the GA were able freely to penetrate the fruit coat. Exogenous GA3 or GA4+7, at concentrations insufficient to cause germination, result in an apparent synergistic promotion of germination when suboptimal R is applied. Yet suboptimal concentrations of exogenous GA3 or GA4+7 and suboptimal R result in only additive increases in the growth response in axes of isolated embryos. Dose-response curves demonstrate quantitative increases in the growth response of the isolated axes after R or GA treatments insufficient to induce germination in intact seeds, indicating that a threshold potential must be achieved by the embryonic axes before germination can occur.
红光(R)和赤霉素(GA)各自诱导生菜(Lactuca sativa L.)胚轴的水势下降,导致完整“种子”(瘦果)发芽或离体胚轴生长增加。果实外皮和胚乳是外源 GA 渗透的重要屏障。离体胚吸收的 [(3)H]GA1 是完整种子胚的 35 倍,对小于 1·10(-10) M GA3 或 GA4+7 有反应。我们计算,如果 GA 能够自由穿透果实外皮,只有 1·10(-8) M 的 GA3 或 GA4+7 就会导致 50%的发芽率。当施加非最佳 R 时,外源 GA3 或 GA4+7 浓度不足以引起发芽,但会导致明显的协同促进发芽。然而,离体胚轴的生长反应仅在外源 GA3 或 GA4+7 的非最佳浓度和非最佳 R 下表现出相加增加。剂量反应曲线表明,在完整种子中不足以诱导发芽的 R 或 GA 处理后,离体轴的生长反应会出现定量增加,表明在发芽发生之前,胚轴必须达到一个阈值潜力。