Phytochrome signal-transduction: characterization of pathways and isolation of mutants
- 30 October 1995
- journal article
- review article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 350 (1331), 67-74
- https://doi.org/10.1098/rstb.1995.0139
Abstract
The study of phytochrome signalling has yielded a wealth of data describing both the perception of light by the receptor, and the terminal steps in phytochrome-regulated gene expression by a number of transcription factors. We are now focusing on establishing the intervening steps linking phytochrome photoactivation to gene expression, and the regulation and interactions of these signalling pathways. Recent work has utilized both a pharmacological approach in phototrophic soybean suspension cultures and microinjection techniques in tomato to establish three distinct phytochrome signal-transduction pathways: (i) a calcium-dependent pathway that regulates the expression of genes encoding the chlorophyll a/b binding protein (CAB) and other components of photosystem II; (ii) a cGMP-dependent pathway that regulates the expression of the gene encoding chalcone synthase (CHS) and the production of anthocyanin pigments; and (iii) a pathway dependent upon both calcium and cGMP that regulates the expression of genes encoding components of photosystem I and is necessary for the production of mature chloroplasts. To study the components and the regulation of phytochrome signal-transduction pathways, mutants with altered photomorphogenic responses have been isolated by a number of laboratories. However, with several possible exceptions, little real progress has been made towards the isolation of mutants in positive regulatory elements of the phytochrome signal-transduction pathway. We have characterized a novel phytochrome A (phyA)-mediated far-red light (FR) response inArabidopsisseedlings which we are currently using to screen for specific phyA signal-transduction mutants.Keywords
This publication has 33 references indexed in Scilit:
- Emerging themes of plant signal transduction.Plant Cell, 1994
- Phytochrome signal transduction pathways are regulated by reciprocal control mechanisms.Genes & Development, 1994
- Cyclic GMP and calcium mediate phytochrome phototransductionCell, 1994
- Fresh view of light signal transduction in plantsCell, 1994
- A FUSCA gene of Arabidopsis encodes a novel protein essential for plant development.Plant Cell, 1994
- Arabidopsis HY8 locus encodes phytochrome A.Plant Cell, 1993
- Out of darkness: mutants reveal pathways controlling light-regulated development in plantsTrends in Genetics, 1993
- A genetic model for light-regulated seedling development in ArabidopsisDevelopment, 1992
- Time courses for phytochrome-induced enzyme levels in phenylpropanoid metabolism (phenylalanine ammonia-lyase, naringenin-chalcone synthase) compared with time courses for phytochrome-mediated end-product accumulation (anthocyanin, quercetin)Planta, 1988
- Fluence dependence of the ultraviolet-light-induced accumulation of chalcone synthase mRNA and effects of blue and far-red light in cultured parsley cellsPlanta, 1986