Phytochromes B, D, and E Act Redundantly to Control Multiple Physiological Responses in Arabidopsis
Open Access
- 1 March 2003
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 131 (3), 1340-1346
- https://doi.org/10.1104/pp.102.015487
Abstract
Phytochrome-mediated perception of the ratio of red to far-red wavelengths in the ambient light environment is fundamental to plant growth and development. Such monitoring enables plants to detect neighboring vegetation and initiate avoidance responses, thus conferring considerable selective advantage. The shade avoidance syndrome in plants is characterized by elongation growth and early flowering, responses that are fully induced by end-of-day far-red light treatments. Elucidating the roles of individual phytochromes in mediating responses to red to far-red has however always been confounded by synergistic and mutually antagonistic coactions between family members. The creation of triple and quadruple mutants in Arabidopsis, deficient in multiple phytochromes, has revealed functional redundancy between phyB, D, and E in controlling flowering time, leaf development, and regulation of the homeobox gene,ATHB-2. In addition, mutant analysis suggests a possible novel role for phyC in suppressing ATHB-2 transcription in the light.Keywords
This publication has 46 references indexed in Scilit:
- Phytochrome control of flowering is temperature sensitive and correlates with expression of the floral integrator FTThe Plant Journal, 2003
- Regulation of Arabidopsis cryptochrome 2 by blue-light-dependent phosphorylationNature, 2002
- Phytochrome E Controls Light-Induced Germination of ArabidopsisPlant Physiology, 2002
- Functional interaction of cryptochrome 1 and phytochrome DThe Plant Journal, 1999
- Roles of different phytochromes in Arabidopsis photomorphogenesisPlant, Cell & Environment, 1997
- Phytochrome gene diversityPlant, Cell & Environment, 1997
- Phytochrome A, phytochrome B and other phytochrome(s) regulate ATHB‐2 gene expression in etiolated and green Arabidopsis plantsPlant, Cell & Environment, 1997
- The rosette habit of Arabidopsis thaliana is dependent upon phytochrome action: novel phytochromes control internode elongation and flowering timeThe Plant Journal, 1996
- Photoresponses of transgenic Arabidopsis seedlings expressing introduced phytochrome B‐encoding cDNAs: evidence that phytochrome A and phytochrome B have distinct photoregulatory functionsThe Plant Journal, 1993
- Photophysiology of the Elongated Internode (ein) Mutant of Brassica rapaPlant Physiology, 1992