Plant and Cell Physiology · 2007 · 145 citations · 30 references
Gibberellin LevelsEngineeringBotanyGeneticsPlant PathologyMolecular GeneticsPlant Growth RegulatorPlant DevelopmentPlant Molecular BiologyBiosynthesisPlant BiologyGermination InabilityPhotomorphogenesisPlant HormoneBiologyGibberellin DeactivationDevelopmental BiologyGenetic EngineeringGibberellin Biosynthesis GenesPhytochromeMedicinePlant Physiology
Gibberellin levels in imbibed Arabidopsis thaliana seeds are regulated by light via phytochrome, presumably through regulation of gibberellin biosynthesis genes, AtGA3ox1 and AtGA3ox2, and a deactivation gene, AtGA2ox2. Here, we show that a loss-of-function ga2ox2 mutation causes an increase in GA(4) levels and partly suppresses the germination inability during dark imbibition after inactivation of phytochrome. Experiments using 2,2-dimethylGA(4), a GA(4) analog resistant to gibberellin 2-oxidase, in combination with ga2ox2 mutant seeds suggest that the efficiency of deactivation of exogenous GA(4) by AtGA2ox2 is dependent on light conditions, which partly explains phytochrome-mediated changes in gibberellin effectiveness (sensitivity) found in previous studies.
30
Gibberellin Biosynthesis and Response during Arabidopsis Seed Germination[W]
Mikihiro Ogawa, Atsushi Hanada, Yukika Yamauchi et al. · The Plant Cell · 2003 · 906 citations · Full text