Acceleration of Flowering during Shade Avoidance in Arabidopsis Alters the Balance betweenFLOWERING LOCUS C-Mediated Repression and Photoperiodic Induction of Flowering
Open Access
- 12 September 2008
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 148 (3), 1681-1694
- https://doi.org/10.1104/pp.108.125468
Abstract
The timing of the floral transition in Arabidopsis (Arabidopsis thaliana) is influenced by a number of environmental signals. Here, we have focused on acceleration of flowering in response to vegetative shade, a condition that is perceived as a decrease in the ratio of red to far-red radiation. We have investigated the contributions of several known flowering-time pathways to this acceleration. The vernalization pathway promotes flowering in response to extended cold via transcriptional repression of the floral inhibitor FLOWERING LOCUS C (FLC); we found that a low red to far-red ratio, unlike cold treatment, lessened the effects of FLC despite continued FLC expression. A low red to far-red ratio required the photoperiod-pathway genes GIGANTEA (GI) and CONSTANS (CO) to fully accelerate flowering in long days and did not promote flowering in short days. Together, these results suggest a model in which far-red enrichment can bypass FLC-mediated late flowering by shifting the balance between FLC-mediated repression and photoperiodic induction of flowering to favor the latter. The extent of this shift was dependent upon environmental parameters, such as the length of far-red exposure. At the molecular level, we found that far-red enrichment generated a phase delay in GI expression and enhanced CO expression and activity at both dawn and dusk. Finally, our analysis of the contribution of PHYTOCHROME AND FLOWERING TIME1 (PFT1) to shade-mediated rapid flowering has led us to suggest a new model for the involvement of PFT1 in light signaling.Keywords
This publication has 120 references indexed in Scilit:
- Arabidopsis COP1 shapes the temporal pattern of CO accumulation conferring a photoperiodic flowering responseThe EMBO Journal, 2008
- Interaction of shade avoidance and auxin responses: a role for two novel atypical bHLH proteinsThe EMBO Journal, 2007
- Purification of a Plant Mediator from Arabidopsis thaliana Identifies PFT1 as the Med25 SubunitMolecular Cell, 2007
- GIGANTEA Regulates Phytochrome A-Mediated Photomorphogenesis Independently of Its Role in the Circadian ClockPlant Physiology, 2007
- The PHYTOCHROME C photoreceptor gene mediates natural variation in flowering and growth responses of Arabidopsis thalianaNature Genetics, 2006
- The transcription factor FLC confers a flowering response to vernalization by repressing meristem competence and systemic signaling inArabidopsisGenes & Development, 2006
- Distinct Roles of GIGANTEA in Promoting Flowering and Regulating Circadian Rhythms in ArabidopsisPlant Cell, 2005
- Extension of a genetic network model by iterative experimentation and mathematical analysisMolecular Systems Biology, 2005
- Regulation of flowering time by light qualityNature, 2003
- GIGANTEA: a circadian clock-controlled gene that regulates photoperiodic flowering in Arabidopsis and encodes a protein with several possible membrane-spanning domainsThe EMBO Journal, 1999