Nucleic Acids Research · 2014 · 109 citations · 55 references
Tf Myc2GeneticsAbscisic AcidGenomic MechanismMolecular GeneticsGene Regulatory NetworkEpigeneticsTranscriptional RegulationPlant StressAbiotic StressDifferent Gene-specific MechanismsGene ExpressionFunctional GenomicsPlant HormoneTranscription RegulationBiologyNatural SciencesGene RegulationMyc2-dependent GenesSystems BiologyMedicinePlant Physiology
Plants that have experienced several exposures to dehydration stress show increased resistance to future exposures by producing faster and/or stronger reactions, while many dehydration stress responding genes in Arabidopsis thaliana super-induce their transcription as a 'memory' from the previous encounter. A previously unknown, rather unusual, memory response pattern is displayed by a subset of the dehydration stress response genes. Despite robustly responding to a first stress, these genes return to their initial, pre-stressed, transcript levels during the watered recovery; surprisingly, they do not respond further to subsequent stresses of similar magnitude and duration. This transcriptional behavior defines the 'revised-response' memory genes. Here, we investigate the molecular mechanisms regulating this transcription memory behavior. Potential roles of abscisic acid (ABA), of transcription factors (TFs) from the ABA signaling pathways (ABF2/3/4 and MYC2), and of histone modifications (H3K4me3 and H3K27me3) as factors in the revised-response transcription memory patterns are elucidated. We identify the TF MYC2 as the critical component for the memory behavior of a specific subset of MYC2-dependent genes.
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Hiroshi Abe, Takeshi Urao, Takuya Ito et al. · The Plant Cell · 2002 · 2.3K citations · Full text
Yuichi Uno, Takashi Furihata, Hiroshi Abe et al. · Proceedings of the National Academy of Sciences · 2000 · 1.4K citations · Full text
In vitro reconstitution of an abscisic acid signalling pathway
Hiroaki Fujii, Viswanathan Chinnusamy, Américo Rodrigues et al. · Nature · 2009 · 1.4K citations · Full text
Signal Transduction, Signaling Pathway, Molecular Regulation +6