Phytochrome, Gibberellins, and Hypocotyl Growth (A Study Using the Cucumber (Cucumis sativus L.) long hypocotyl Mutant)
Open Access
- 1 January 1995
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 107 (1), 131-140
- https://doi.org/10.1104/pp.107.1.131
Abstract
The possible involvement of gibberellins (GAs) in the regulation of hypocotyl elongation by phytochrome was examined. Under white light the tall long hypocotyl (lh) cucumber (Cucumis sativus L.) mutant, deficient in a type B-like phytochrome, shows an increased “responsiveness” (defined as response capability) to applied GA4 (the main endogenous active GA) compared to the wild type. Supplementing far-red irradiation results in a similar increase in responsiveness in the wild type. Experiments involving application of the precursor GA9 and of an inhibitor of GA4 inactivation suggest that both the GA4 activation and inactivation steps are phytochrome independent. Endogenous GA levels of whole seedlings were analyzed by combined gas chromatography-mass spectrometry using deuterated internal standards. The levels of GA4 (and those of GA34, the inactivated GA4) were lower in the lh mutant under low-irradiance fluorescent light compared with the wild type, similar to wild type under higher irradiance light during the initial hypocotyl extension phase, and higher during the phase of sustained growth, in which extension involved an increase in the number of cells in the upper region. In all cases, growth of the lh mutant was more rapid than that of the wild type. It is proposed that GA4 and phytochrome control cell elongation primarily through separate mechanisms that interact at a step close to the terminal response.Keywords
This publication has 18 references indexed in Scilit:
- Relationship between Endopolyploidy and Cell Size in Epidermal Tissue of Arabidopsis.Plant Cell, 1993
- Mutations in the gene for the red/far-red light receptor phytochrome B alter cell elongation and physiological responses throughout Arabidopsis development.Plant Cell, 1993
- The hy3 Long Hypocotyl Mutant of Arabidopsis Is Deficient in Phytochrome B.Plant Cell, 1991
- Overexpression of Phytochrome B Induces a Short Hypocotyl Phenotype in Transgenic Arabidopsis.Plant Cell, 1991
- Gibberellin A3 Is Biosynthesized from Gibberellin A20 via Gibberellin A5 in Shoots of Zea mays L.Plant Physiology, 1990
- A Mutant Gene That Increases Gibberellin Production in BrassicaPlant Physiology, 1990
- Far-Red Radiation Reflected from Adjacent Leaves: An Early Signal of Competition in Plant CanopiesScience, 1990
- Photophysiology and Phytochrome Content of Long-Hypocotyl Mutant and Wild-Type Cucumber SeedlingsPlant Physiology, 1988
- Gibberellins and Light Regulated Petiole Growth in Thlaspi arvense LPlant Physiology, 1988
- Evidence for Phytochrome Regulation of Gibberellin A20 3β-Hydroxylation in Shoots of Dwarf (lele) Pisum sativum L.Plant Physiology, 1986