Sugars and Circadian Regulation Make Major Contributions to the Global Regulation of Diurnal Gene Expression inArabidopsis
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Open Access
- 18 November 2005
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 17 (12) , 3257-3281
- https://doi.org/10.1105/tpc.105.035261
Abstract
The diurnal cycle strongly influences many plant metabolic and physiological processes. Arabidopsis thaliana rosettes were harvested six times during 12-h-light/12-h-dark treatments to investigate changes in gene expression using ATH1 arrays. Diagnostic gene sets were identified from published or in-house expression profiles of the response to light, sugar, nitrogen, and water deficit in seedlings and 4 h of darkness or illumination at ambient or compensation point [CO2]. Many sugar-responsive genes showed large diurnal expression changes, whose timing matched that of the diurnal changes of sugars. A set of circadian-regulated genes also showed large diurnal changes in expression. Comparison of published results from a free-running cycle with the diurnal changes in Columbia-0 (Col-0) and the starchless phosphoglucomutase (pgm) mutant indicated that sugars modify the expression of up to half of the clock-regulated genes. Principle component analysis identified genes that make large contributions to diurnal changes and confirmed that sugar and circadian regulation are the major inputs in Col-0 but that sugars dominate the response in pgm. Most of the changes in pgm are triggered by low sugar levels during the night rather than high levels in the light, highlighting the importance of responses to low sugar in diurnal gene regulation. We identified a set of candidate regulatory genes that show robust responses to alterations in sugar levels and change markedly during the diurnal cycle.Keywords
This publication has 68 references indexed in Scilit:
- [9] TM4 Microarray Software SuitePublished by Elsevier ,2006
- Daylength and Circadian Effects on Starch Degradation and Maltose MetabolismPlant Physiology, 2005
- Cullins 3a and 3b Assemble with Members of the Broad Complex/Tramtrack/Bric-a-Brac (BTB) Protein Family to Form Essential Ubiquitin-Protein Ligases (E3s) in ArabidopsisJournal of Biological Chemistry, 2005
- Sugar sensing and signalling networks in plantsBiochemical Society Transactions, 2005
- Diurnal Changes in the Transcriptome Encoding Enzymes of Starch Metabolism Provide Evidence for Both Transcriptional and Posttranscriptional Regulation of Starch Metabolism in Arabidopsis LeavesPlant Physiology, 2004
- Global Transcription Profiling Reveals Multiple Sugar Signal Transduction Mechanisms in Arabidopsis[W]Plant Cell, 2004
- Adjustment of diurnal starch turnover to short days: depletion of sugar during the night leads to a temporary inhibition of carbohydrate utilization, accumulation of sugars and post‐translational activation of ADP‐glucose pyrophosphorylase in the following light periodThe Plant Journal, 2004
- Light-regulated translation mediates gated induction of the Arabidopsis clock protein LHYThe EMBO Journal, 2003
- Nitrate Acts as a Signal to Induce Organic Acid Metabolism and Repress Starch Metabolism in TobaccoPlant Cell, 1997
- Phloem‐specific expression of pyrophosphatase inhibits long distance transport of carbohydrates and amino acids in tobacco plantsPlant, Cell & Environment, 1996