article Open AccessTop 10% cited
Transcriptional profiling of Arabidopsis heat shock proteins and transcription factors reveals extensive overlap between heat and non-heat stress response pathways
BMC Genomics · 2007 · Vol. 8(1) · pp. 125–125
William R. Swindell✉(Michigan State University)Marianne Huebner(Michigan State University)Andreas P.M. Weber(Michigan State University)
Abstract
Our findings show that Hsf and Hsp family member genes represent an interaction point between multiple stress response pathways, and therefore warrant functional analysis under conditions apart from heat shock treatment. In addition, our analysis revealed several family and tissue-specific heat shock gene expression patterns that have not been previously described. These results have implications regarding the molecular basis of cross-tolerance in plant species, and raise new questions to be pursued in future experimental studies of the Arabidopsis heat shock response network.
Heat shock proteins researchPhysiological and biochemical adaptationsPlant Stress Responses and ToleranceHeat shock proteinArabidopsisBiologyHeat shockHeat shock factorTranscription factorHsp70Cell biologyAbiotic stressArabidopsis thaliana
MeSH terms
AlgorithmsCold TemperatureDisastersHot TemperatureHeat-Shock ProteinsOsmotic PressureSodium ChlorideTranscription FactorsTranscription, GeneticUltraviolet RaysSignal TransductionArabidopsisGene Expression Regulation, PlantOligonucleotide Array Sequence AnalysisGene Expression Profiling
Funding
- National Science Foundation
- Michigan State University
- College of Engineering, Michigan State University
Citations
648
FWCI
8.58
field-weighted impact
References
86
Percentile
99%
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Citations per year
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PLANT PHYSIOLOGY · 2005 · 853 citations
Transcriptional Profiling Reveals Novel Interactions between Wounding, Pathogen, Abiotic Stress, and Hormonal Responses in Arabidopsis,
PLANT PHYSIOLOGY · 2002 · 876 citations
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Regulation of the Arabidopsis Transcriptome by Oxidative Stress
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