Published in Plant Physiol on September 18, 2003
Low temperature induction of Arabidopsis CBF1, 2, and 3 is gated by the circadian clock. Plant Physiol (2005) 2.39
Roles for Arabidopsis CAMTA transcription factors in cold-regulated gene expression and freezing tolerance. Plant Cell (2009) 2.30
From laboratory to field. Using information from Arabidopsis to engineer salt, cold, and drought tolerance in crops. Plant Physiol (2004) 1.95
Abscisic acid induces CBF gene transcription and subsequent induction of cold-regulated genes via the CRT promoter element. Plant Physiol (2004) 1.63
Arabidopsis CBF1 and CBF3 have a different function than CBF2 in cold acclimation and define different gene classes in the CBF regulon. Proc Natl Acad Sci U S A (2007) 1.62
The phytochrome-interacting factor PIF7 negatively regulates DREB1 expression under circadian control in Arabidopsis. Plant Physiol (2009) 1.37
The cold-induced early activation of phospholipase C and D pathways determines the response of two distinct clusters of genes in Arabidopsis cell suspensions. Plant Physiol (2005) 1.35
Genetic and molecular analyses of natural variation indicate CBF2 as a candidate gene for underlying a freezing tolerance quantitative trait locus in Arabidopsis. Plant Physiol (2005) 1.33
Salicylate accumulation inhibits growth at chilling temperature in Arabidopsis. Plant Physiol (2004) 1.27
Identification of quantitative trait loci and associated candidate genes for low-temperature tolerance in cold-hardy winter wheat. Funct Integr Genomics (2006) 1.21
Functional and phylogenetic analysis of a DREB/CBF-like gene in perennial ryegrass (Lolium perenne L.). Planta (2006) 1.13
The expression of several Cbf genes at the Fr-A2 locus is linked to frost resistance in wheat. Mol Genet Genomics (2005) 1.12
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Natural variation in CBF gene sequence, gene expression and freezing tolerance in the Versailles core collection of Arabidopsis thaliana. BMC Plant Biol (2008) 1.06
Effect of stress factors on expression of the gene encoding a CBF transcription factor in cucumber plants. Dokl Biol Sci (2009) 1.06
Quantitative statistical analysis of cis-regulatory sequences in ABA/VP1- and CBF/DREB1-regulated genes of Arabidopsis. Plant Physiol (2005) 1.03
Light has a specific role in modulating Arabidopsis gene expression at low temperature. BMC Plant Biol (2008) 1.03
Consensus by democracy. Using meta-analyses of microarray and genomic data to model the cold acclimation signaling pathway in Arabidopsis. Plant Physiol (2006) 1.01
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TaCHP: a wheat zinc finger protein gene down-regulated by abscisic acid and salinity stress plays a positive role in stress tolerance. Plant Physiol (2010) 0.98
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Comparative genomic sequence and expression analyses of Medicago truncatula and alfalfa subspecies falcata COLD-ACCLIMATION-SPECIFIC genes. Plant Physiol (2008) 0.95
Involvement of CBF transcription factors in winter hardiness in birch. Plant Physiol (2008) 0.95
CsICE1 and CsCBF1: two transcription factors involved in cold responses in Camellia sinensis. Plant Cell Rep (2011) 0.93
The constitutive expression of Chrysanthemum dichrum ICE1 in Chrysanthemum grandiflorum improves the level of low temperature, salinity and drought tolerance. Plant Cell Rep (2012) 0.92
Metabolism and growth in Arabidopsis depend on the daytime temperature but are temperature-compensated against cool nights. Plant Cell (2012) 0.91
Overexpression of a peach CBF gene in apple: a model for understanding the integration of growth, dormancy, and cold hardiness in woody plants. Front Plant Sci (2015) 0.90
The Arabidopsis mediator complex subunits MED16, MED14, and MED2 regulate mediator and RNA polymerase II recruitment to CBF-responsive cold-regulated genes. Plant Cell (2014) 0.89
Role of CBFs as integrators of chloroplast redox, phytochrome and plant hormone signaling during cold acclimation. Int J Mol Sci (2013) 0.88
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Transgenic barley lines prove the involvement of TaCBF14 and TaCBF15 in the cold acclimation process and in frost tolerance. J Exp Bot (2013) 0.87
Complementary regulation of four Eucalyptus CBF genes under various cold conditions. J Exp Bot (2009) 0.87
A focus on natural variation for abiotic constraints response in the model species Arabidopsis thaliana. Int J Mol Sci (2009) 0.87
Potential for increased photosynthetic performance and crop productivity in response to climate change: role of CBFs and gibberellic acid. Front Chem (2014) 0.86
Mutational Evidence for the Critical Role of CBF Transcription Factors in Cold Acclimation in Arabidopsis. Plant Physiol (2016) 0.86
Global analysis of transcriptome responses and gene expression profiles to cold stress of Jatropha curcas L. PLoS One (2013) 0.85
Genetic and molecular characterization of submergence response identifies Subtol6 as a major submergence tolerance locus in maize. PLoS One (2015) 0.84
The IDA/IDA-LIKE and PIP/PIP-LIKE gene families in Arabidopsis: phylogenetic relationship, expression patterns, and transcriptional effect of the PIPL3 peptide. J Exp Bot (2015) 0.83
Isolation and characterization of cold-regulated transcriptional activator LpCBF3 gene from perennial ryegrass (Lolium perenne L.). Mol Genet Genomics (2008) 0.81
Genome-wide identification, phylogeny, duplication, and expression analyses of two-component system genes in Chinese cabbage (Brassica rapa ssp. pekinensis). DNA Res (2014) 0.81
Overexpression of Rab16A gene in indica rice variety for generating enhanced salt tolerance. Plant Signal Behav (2012) 0.81
Transcriptional regulation of the paper mulberry under cold stress as revealed by a comprehensive analysis of transcription factors. BMC Plant Biol (2015) 0.81
Disruption of AtWNK8 enhances tolerance of Arabidopsis to salt and osmotic stresses via modulating proline content and activities of catalase and peroxidase. Int J Mol Sci (2013) 0.80
CAMTA proteins: a direct link between calcium signals and cold acclimation? Plant Cell (2009) 0.80
Cytokinin response factor 4 (CRF4) is induced by cold and involved in freezing tolerance. Plant Cell Rep (2015) 0.79
Genes associated with agronomic traits in non-heading Chinese cabbage identified by expression profiling. BMC Plant Biol (2014) 0.79
To respond or not to respond, the recurring question in plant mechanosensitivity. Front Plant Sci (2014) 0.78
A chromatin modifying enzyme, SDG8, is involved in morphological, gene expression, and epigenetic responses to mechanical stimulation. Front Plant Sci (2014) 0.78
Global identification of the genetic networks and cis-regulatory elements of the cold response in zebrafish. Nucleic Acids Res (2015) 0.78
Over-represented promoter motifs in abiotic stress-induced DREB genes of rice and sorghum and their probable role in regulation of gene expression. Plant Signal Behav (2010) 0.77
Upstream regulatory architecture of rice genes: summarizing the baseline towards genus-wide comparative analysis of regulatory networks and allele mining. Rice (N Y) (2015) 0.77
Transcriptome sequencing and identification of cold tolerance genes in hardy Corylus species (C. heterophylla Fisch) floral buds. PLoS One (2014) 0.77
Low Temperature-Induced 30 (LTI30) positively regulates drought stress resistance in Arabidopsis: effect on abscisic acid sensitivity and hydrogen peroxide accumulation. Front Plant Sci (2015) 0.77
Cold regulation of plastid ascorbate peroxidases serves as a priming hub controlling ROS signaling in Arabidopsis thaliana. BMC Plant Biol (2016) 0.76
Comparative Transcriptome Analysis of the Less-Dormant Taiwanese Pear and the Dormant Japanese Pear during Winter Season. PLoS One (2015) 0.76
RNAi-based functional elucidation of PtrPRP, a gene encoding a hybrid proline rich protein, in cold tolerance of Poncirus trifoliata. Front Plant Sci (2015) 0.76
Increased drought tolerance through the suppression of ESKMO1 gene and overexpression of CBF-related genes in Arabidopsis. PLoS One (2014) 0.75
Regulation of Apetala2/Ethylene Response Factors in Plants. Front Plant Sci (2017) 0.75
Integrative "omic" analysis reveals distinctive cold responses in leaves and roots of strawberry, Fragaria × ananassa 'Korona'. Front Plant Sci (2015) 0.75
Stress-responsive gene RsICE1 from Raphanus sativus increases cold tolerance in rice. Protoplasma (2016) 0.75
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So what's new in the field of plant cold acclimation? Lots! Plant Physiol (2001) 2.96
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Low temperature induction of Arabidopsis CBF1, 2, and 3 is gated by the circadian clock. Plant Physiol (2005) 2.39
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Roles for Arabidopsis CAMTA transcription factors in cold-regulated gene expression and freezing tolerance. Plant Cell (2009) 2.30
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Abscisic acid induces CBF gene transcription and subsequent induction of cold-regulated genes via the CRT promoter element. Plant Physiol (2004) 1.63
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