From seed germination to flowering, light controls plant development via the pigment phytochrome.
- 29 October 1996
- journal article
- review article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (22) , 12066-12071
- https://doi.org/10.1073/pnas.93.22.12066
Abstract
Plant growth and development are regulated by interactions between the environment and endogenous developmental programs. Of the various environmental factors controlling plant development, light plays an especially important role, in photosynthesis, in seasonal and diurnal time sensing, and as a cue for altering developmental pattern. Recently, several laboratories have devised a variety of genetic screens using Arabidopsis thaliana to dissect the signal transduction pathways of the various photoreceptor systems. Genetic analysis demonstrates that light responses are not simply endpoints of linear signal transduction pathways but are the result of the integration of information from a variety of photoreceptors through a complex network of interacting signaling components. These signaling components include the red/far-red light receptors, phytochromes, at least one blue light receptor, and negative regulatory genes (DET, COP, and FUS) that act downstream from the photoreceptors in the nucleus. In addition, a steroid hormone, brassinolide, also plays a role in light-regulated development and gene expression in Arabidopsis. These molecular and genetic data are allowing us to construct models of the mechanisms by which light controls development and gene expression in Arabidopsis. In the future, this knowledge can be used as a framework for understanding how all land plants respond to changes in their environment.Keywords
This publication has 52 references indexed in Scilit:
- Brassinosteroids Rescue the Deficiency of CYP90, a Cytochrome P450, Controlling Cell Elongation and De-etiolation in ArabidopsisPublished by Elsevier ,1996
- The price of repressionCell, 1995
- Chromatin-mediated transcription repression in yeastCurrent Opinion in Genetics & Development, 1995
- NPR Genes, Which Are Negatively Regulated by Phytochrome Action in Lemna gibba L. G-3, Can Also Be Positively Regulated by Abscisic AcidPlant Physiology, 1994
- The global transcriptional regulators, SSN6 and TUP1, play distinct roles in the establishment of a repressive chromatin structure.Genes & Development, 1994
- A FUSCA gene of Arabidopsis encodes a novel protein essential for plant development.Plant Cell, 1994
- ent-Kaurene Biosynthesis Is Enhanced by Long Photoperiods in the Long-Day Plants Spinacia oleracea L. and Agrostemma githago LPlant Physiology, 1993
- Genetic Regulation of Development in Sorghum bicolorPlant Physiology, 1992
- Phenotypic and Genetic Analysis of det2, a New Mutant That Affects Light-Regulated Seedling Development in Arabidopsis.Plant Cell, 1991
- Kinetin-Induced Chloroplast Maturation in Cultures of Tobacco TissueScience, 1965