REDOX RESPONSIVE TRANSCRIPTION FACTOR1 is involved in age-dependent and systemic stress signaling
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Summary
While RRTF1 enhances defense responses to high light (HL) stress in young leaves, it induces senescence and chlorosis in older leaves, suggesting that the age-dependent alteration in theRRTF1 function might be important for plants' acclimation to the stress environment.
- Type
- article
- Published
- 2015-10-19
- Cited by
- 20
- References
- 8
- Access
- Open access
- OpenAlex
- https://openalex.org/W1783604708
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:205904188
Keywords
Transcription factor, Reactive oxygen species, Biology, Arabidopsis, Cell biology
References
- High REDOX RESPONSIVE TRANSCRIPTION FACTOR1 Levels Result in Accumulation of Reactive Oxygen Species in Arabidopsis thaliana Shoots and Roots.
- The Botany Array Resource: e-Northerns, Expression Angling, and promoter analyses.
- Systemic and Intracellular Responses to Photooxidative Stress in Arabidopsis[W]
- Arabidopsis Transcriptome Reveals Control Circuits Regulating Redox Homeostasis and the Role of an AP2 Transcription Factor1[W][OA]
- Guard-cell signalling for hydrogen peroxide and abscisic acid.
- Arabidopsis transcriptome analysis under drought, cold, high-salinity and ABA treatment conditions using a tiling array.
- Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1[W]
- Fast Retrograde Signaling in Response to High Light Involves Metabolite Export, MITOGEN-ACTIVATED PROTEIN KINASE6, and AP2/ERF Transcription Factors in Arabidopsis[C][W]
Cited by
- Potassium fluxes and reactive oxygen species production as potential indicators of salt tolerance in Cucumis sativus.
- Dual-Located WHIRLY1 Interacting with LHCA1 Alters Photochemical Activities of Photosystem I and Is Involved in Light Adaptation in Arabidopsis
- Alternaria Brassicae Induces Systemic Jasmonate Responses in Arabidopsis Which Travel to Neighboring Plants via a Piriformsopora Indica Hyphal Network and Activate Abscisic Acid Responses
- Rapid Metabolic Response of Plants Exposed to Light Stress
- Local and Systemic Metabolic Responses during Light-Induced Rapid Systemic Signaling1[OPEN]
- Mitochondrial function modulates touch signalling in Arabidopsis thaliana
- Identification and characterization of a core set of ROS wave‐associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light
- Balancing trade-offs between biotic and abiotic stress responses through leaf age-dependent variation in stress hormone cross-talk
- Optimal Defense Theory 2.0: tissue-specific stress defense prioritization as an extra layer of complexity
- Redox-sensitive bZIP68 plays a role in balancing stress tolerance with growth in Arabidopsis.
- Arabidopsis ERF109 regulates auxin transport-related genes in root development
- Caracterización de proteínas de función desconocida involucradas en estrés en Arabidopsis thaliana
- Catalase, glutathione and protein phosphatase 2A-dependent organellar redox signalling regulate aphid fecundity under moderate and high irradiance.
- Arabidopsis BRCA1 represses RRTF1-mediated ROS production and ROS-responsive gene expression under dehydration stress.
- Genetic Architecture Underlying the Metabolites of Chlorogenic Acid Biosynthesis in Populus tomentosa
- Expression and Co-expression Analyses of WRKY, MYB, bHLH and bZIP Transcription Factor Genes in Potato (Solanum tuberosum) Under Abiotic Stress Conditions: RNA-seq Data Analysis
- De novo transcriptome analysis for exploration of genes responding to salinity in a halophyte New Zealand spinach (Tetragonia tetragonioides)
- Arabidopsis Transcriptomics Reveals the Role of Lipoxygenase2 (AtLOX2) in Wound-Induced Responses
- Deciphering Regulatory Networks Governing Seedling Emergence in Deep-Sown Direct-Seeded Rice Cultivation
- Redox and osmotic homeostasis: Central drivers of drought resilience in grapevine rootstocks.
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