The rice phytochrome gene: structure, autoregulated expression, and binding of GT-1 to a conserved site in the 5' upstream region.
Open Access
- 1 March 1989
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 1 (3) , 351-360
- https://doi.org/10.1105/tpc.1.3.351
Abstract
We have isolated and characterized both cDNA and genomic clones encoding the apoprotein of rice phytochrome. The mRNA produced from this gene is expressed at a low level in etiolated leaves. Following a flash of red light, the steady-state mRNA level decreases within 15 minutes, and is barely detectable after 2 hours. This effect is partially reversed by far red light demonstrating autoregulation of phytochrome mRNA levels. Nuclear run-on experiments show that this effect is exerted on transcription of the phytochrome gene. In etiolated plants, phytochrome mRNA is twofold higher in leaves than in roots, whereas the reverse is true in fully green plants where phytochrome mRNA accumulates despite illumination of the leaves. DNA gel blots and screening of libraries indicate the presence of only a single gene, allowing convenient study of the autoregulatory phenomenon for a specific phytochrome gene. Gel retardation analysis using a fragment from the 5' upstream region reveals that GT-1 is present in nuclear extracts of etiolated rice leaves and binds to sites conserved between rice and oat phytochrome genes.This publication has 19 references indexed in Scilit:
- Localization and conditional redundancy of regulatory elements in rbcS-3A, a pea gene encoding the small subunit of ribulose-bisphosphate carboxylase.Proceedings of the National Academy of Sciences, 1988
- Gene regulation by phytochromeTrends in Genetics, 1988
- Sequences in the pea rbcS-3A gene have homology to constitutive mammalian enhancers but function as negative regulatory elements.Genes & Development, 1987
- Analysis of cloned cDNA and genomic sequences for phaytochrome: complete amino acid sequences for two gene products expressed in etiolatedAvenaNucleic Acids Research, 1985
- Demonstration of transcriptional regulation of specific genes by phytochrome actionProceedings of the National Academy of Sciences, 1984
- Efficientin vitrosynthesis of biologically active RNA and RNA hybridization probes from plasmids containing a bacteriophage SP6 promoterNucleic Acids Research, 1984
- Light-Induced Breakdown of NADPH-Protochlorophyllide Oxidoreductase In VitroPlant Physiology, 1983
- The Protochlorophyllide Holochrome of Barley (Hordeum Vulgare L.)European Journal of Biochemistry, 1981
- De Novo Synthesis of Phytochrome in Pumpkin HooksPlant Physiology, 1973
- PHYTOCHROME ACTION IN ORYZA SATIVA L. III. THE SEPARATION OF PHOTOPERCEPTIVE SITE AND GROWING ZONE IN COLEOPTILES, AND AUXIN TRANSPORT AS EFFECTOR SYSTEMDevelopment, Growth & Differentiation, 1969