Dual Effect of Light on the Gibberellin- and Nitrate-Stimulated Seed Germination of Sisymbrium officinale and Arabidopsis thaliana
Open Access
- 1 February 1988
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 86 (2) , 591-597
- https://doi.org/10.1104/pp.86.2.591
Abstract
Red light (R) has a dual effect on the seed germination of the two related species Arabidopsis thaliana and Sisymbrium officinale. The two species provide different means to separate the light-effects. In S. officinale, stimulation of germination by R depends on the stimultaneous presence of nitrate (light-effect I). The effect of both factors is completely blocked by tetcyclacis, an inhibitor of gibberellin (GA)-biosynthesis. Addition of a mixture of gibberellins A4 and A7 (GA4+7) antagonizes the inhibition. In the absence of nitrate, R shifts germination to lower GA-requirement (light-effect II). In A. thaliana a similar second light-effect is seen on the GA-requirement of GA-deficient ga-1 mutant seeds. R stimulates germination of wild type seeds in water (light-effect I). For both species, light-effect I shows a fluence threshold value of approximately 10−5 moles per square meter, which is independent of the nitrate concentration. Increasing nitrate concentrations narrow the fluence-range required for maximal germination whereby the product of nitrate concentration and fluence value determines the germination level, indicating a multiplicative interaction between R and nitrate. Fluence-response curves for light-effect II are similar for both species. Germination occurs in the range of 10−6 to 10−2 moles per square meter fluence. The maximal level of germination is determined by the level of dark-germination and light-effect II. Increasing GA4+7 concentrations induce a shift to lower fluence values. It is shown that in the second effect the co-action of R and exogenous GA4+7 is clearly additive. It is concluded that light-effect I induces a chain of events leading to GA biosynthesis. Light-effect II seems to enhance the sensitivity of the seeds to GAs.This publication has 8 references indexed in Scilit:
- Biphasic Fluence-Response Curves for Phytochrome-Mediated Kalanchoë Seed GerminationPlant Physiology, 1987
- Fluence-response curves and action spectra for promotion and inhibition of seed germination in wildtype and long-hypocotyl mutants of Arabidopsis thaliana L.Planta, 1985
- The physiological basis of seed dormancy in Avena fatua III. Action of nitrogenous compoundsPhysiologia Plantarum, 1984
- Induction and analysis of gibberellin sensitive mutants in Arabidopsis thaliana (L.) heynh.Theoretical and Applied Genetics, 1980
- Secondary dormancy (skotodormancy) in seeds of lettuce (Lactuca sativa cv. Grand Rapids) and its release by light, gibberellic acid and benzyladeninePhysiologia Plantarum, 1980
- The effect of light on the endogenous levels of cytokinins and gibberellins in seeds of sitka spruce (Picea sitchensis Carriere)Plant, Cell & Environment, 1979
- Interactions of phytochrome and exogenous gibberellic acid on germination of Lamium amplexicaule L. seedsPlanta, 1976
- Veränderungen des Gibberellingehaltes von Salatsamen nach BelichtungPlanta, 1966