Input signals to the plant circadian clock.

PubWeight™: 1.24‹?› | Rank: Top 10%

🔗 View Article (PMID 14695902)

Published in J Exp Bot on January 01, 2004

Authors

Andrew J Millar1

Author Affiliations

1: Department of Biological Sciences, University of Warwick, Coventry CV4 7AL, UK. andrew.millar@warwick.ac.uk

Articles citing this

Plant circadian rhythms. Plant Cell (2006) 4.06

Genetic architecture of flowering time in maize as inferred from quantitative trait loci meta-analysis and synteny conservation with the rice genome. Genetics (2004) 2.33

Systems approach identifies an organic nitrogen-responsive gene network that is regulated by the master clock control gene CCA1. Proc Natl Acad Sci U S A (2008) 2.17

Oscillatory ROP GTPase activation leads the oscillatory polarized growth of pollen tubes. Mol Biol Cell (2005) 1.69

How plants tell the time. Biochem J (2006) 1.55

A theoretical study on seasonality. Front Neurol (2015) 1.40

Carotenoid biosynthesis in Arabidopsis: a colorful pathway. Arabidopsis Book (2012) 1.40

XAP5 CIRCADIAN TIMEKEEPER coordinates light signals for proper timing of photomorphogenesis and the circadian clock in Arabidopsis. Plant Cell (2008) 1.20

Arabidopsis FHY3 specifically gates phytochrome signaling to the circadian clock. Plant Cell (2006) 1.19

Crosstalk between the circadian clock and innate immunity in Arabidopsis. PLoS Pathog (2013) 1.19

A light-independent allele of phytochrome B faithfully recapitulates photomorphogenic transcriptional networks. Mol Plant (2008) 1.11

Transcriptome analysis of Cymbidium sinense and its application to the identification of genes associated with floral development. BMC Genomics (2013) 1.10

Network balance via CRY signalling controls the Arabidopsis circadian clock over ambient temperatures. Mol Syst Biol (2013) 1.07

How to achieve fast entrainment? The timescale to synchronization. PLoS One (2009) 1.04

Distinct light and clock modulation of cytosolic free Ca2+ oscillations and rhythmic CHLOROPHYLL A/B BINDING PROTEIN2 promoter activity in Arabidopsis. Plant Cell (2007) 1.03

Circadian rhythms of hydraulic conductance and growth are enhanced by drought and improve plant performance. Nat Commun (2014) 0.99

Diel leaf growth of soybean: a novel method to analyze two-dimensional leaf expansion in high temporal resolution based on a marker tracking approach (Martrack Leaf). Plant Methods (2013) 0.97

LIGHT-REGULATED WD1 and PSEUDO-RESPONSE REGULATOR9 form a positive feedback regulatory loop in the Arabidopsis circadian clock. Plant Cell (2011) 0.96

Alternative splicing and nonsense-mediated decay of circadian clock genes under environmental stress conditions in Arabidopsis. BMC Plant Biol (2014) 0.92

A genetic screen for leaf movement mutants identifies a potential role for AGAMOUS-LIKE 6 (AGL6) in circadian-clock control. Mol Cells (2011) 0.87

Consistent robustness analysis (CRA) identifies biologically relevant properties of regulatory network models. PLoS One (2010) 0.83

RNA around the clock - regulation at the RNA level in biological timing. Front Plant Sci (2015) 0.80

Expression of the Arabidopsis Sigma Factor SIG5 Is Photoreceptor and Photosynthesis Controlled. Plants (Basel) (2014) 0.79

Partners in time: EARLY BIRD associates with ZEITLUPE and regulates the speed of the Arabidopsis clock. Plant Physiol (2011) 0.78

Depth-specific fluctuations of gene expression and protein abundance modulate the photophysiology in the seagrass Posidonia oceanica. Sci Rep (2017) 0.78

Comparative mapping, genomic structure, and expression analysis of eight pseudo-response regulator genes in Brassica rapa. Mol Genet Genomics (2012) 0.77

Circadian Stress Regimes Affect the Circadian Clock and Cause Jasmonic Acid-Dependent Cell Death in Cytokinin-Deficient Arabidopsis Plants. Plant Cell (2016) 0.77

Identification of genes involved in carbon metabolism from Eleusine coracana (L.) for understanding their light-mediated entrainment and regulation. Plant Cell Rep (2014) 0.77

Kernel Architecture of the Genetic Circuitry of the Arabidopsis Circadian System. PLoS Comput Biol (2016) 0.76

Comparative Transcriptomic Analysis Reveals Novel Insights into the Adaptive Response of Skeletonema costatum to Changing Ambient Phosphorus. Front Microbiol (2016) 0.75

Age-associated circadian period changes in Arabidopsis leaves. J Exp Bot (2016) 0.75

Molecular clock integration of brown adipose tissue formation and function. Adipocyte (2015) 0.75

Enhancement of hypocotyl elongation by LOV KELCH PROTEIN2 production is mediated by auxin and phytochrome-interacting factors in Arabidopsis thaliana. Plant Cell Rep (2015) 0.75

Making the clock tick: the transcriptional landscape of the plant circadian clock. F1000Res (2017) 0.75