Molecular basis of seasonal time measurement in Arabidopsis
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- 1 September 2002
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 419 (6904) , 308-312
- https://doi.org/10.1038/nature00996
Abstract
Several organisms have evolved the ability to measure daylength, or photoperiod, allowing them to adjust their development in anticipation of annual seasonal changes. Daylength measurement requires the integration of temporal information, provided by the circadian system, with light/dark discrimination, initiated by specific photoreceptors. Here we demonstrate that in Arabidopsis this integration takes place at the level of CONSTANS (CO)1 function. CO is a transcriptional activator that accelerates flowering time in long days, at least in part by inducing the expression of FLOWERING LOCUS T (FT)2,3,4,5. First, we show that precise clock control of the timing of CO expression, such that it is high during daytime only in long days, is critical for daylength discrimination. We then provide evidence that CO activation of FT expression requires the presence of light perceived through cryptochrome 2 (cry2) or phytochrome A (phyA). We conclude that an external coincidence mechanism, based on the endogenous circadian control of CO messenger RNA levels, and the modulation of CO function by light, constitutes the molecular basis for the regulation of flowering time by daylength in Arabidopsis.Keywords
This publication has 27 references indexed in Scilit:
- Reciprocal Regulation Between TOC1 and LHY / CCA1 Within the Arabidopsis Circadian ClockScience, 2001
- Cloning of the Arabidopsis Clock Gene TOC1 , an Autoregulatory Response Regulator HomologScience, 2000
- Activation Tagging of the Floral Inducer FTScience, 1999
- A Pair of Related Genes with Antagonistic Roles in Mediating Flowering SignalsScience, 1999
- Control of Circadian Rhythms and Photoperiodic Flowering by the Arabidopsis GIGANTEA GeneScience, 1999
- Independent Regulation of Flowering by Phytochrome B and Gibberellins in Arabidopsis1Plant Physiology, 1999
- Conditional Circadian Dysfunction of the Arabidopsis early-flowering 3 MutantScience, 1996
- The Arabidopsis ELF3 gene regulates vegetative photomorphogenesis and the photoperiodic induction of floweringThe Plant Journal, 1996
- Analysis of the role of the late‐flowering locus, GI, in the flowering of Arabidopsis thalianaThe Plant Journal, 1993