scholarly article | Q13442814 |
P50 | author | Tong Zhu | Q39061959 |
P2093 | author name string | Sheng Luan | |
Xun Wang | |||
Rajeev Gupta | |||
Yong Hwa Cheong | |||
Hur-Song Chang | |||
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Expression profile matrix of Arabidopsis transcription factor genes suggests their putative functions in response to environmental stresses. | Q38290951 | ||
A rapid induction by elicitors of the mRNA encoding CCD-1, a 14kDa Ca2+ -binding protein in wheat cultured cells | Q38310635 | ||
A small heat shock protein cooperates with heat shock protein 70 systems to reactivate a heat-denatured protein | Q38316600 | ||
PLANT CELLULAR AND MOLECULAR RESPONSES TO HIGH SALINITY. | Q38462807 | ||
Arabidopsis CBF1 overexpression induces COR genes and enhances freezing tolerance | Q39099110 | ||
A novel cis-acting element in an Arabidopsis gene is involved in responsiveness to drought, low-temperature, or high-salt stress | Q39611057 | ||
The ethylene signal transduction pathway in plants | Q40514705 | ||
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Signalling pathways: a common theme in plants and animals? | Q41480442 | ||
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MYB-related transcription factor NtMYB2 induced by wounding and elicitors is a regulator of the tobacco retrotransposon Tto1 and defense-related genes | Q44936774 | ||
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Large-scale profiling of the Arabidopsis transcriptome | Q46664305 | ||
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Characterization of an Arabidopsis thaliana receptor-like protein kinase gene activated by oxidative stress and pathogen attack | Q47954007 | ||
The barley Mlo gene: a novel control element of plant pathogen resistance | Q48052711 | ||
The Arabidopsis NPR1 gene that controls systemic acquired resistance encodes a novel protein containing ankyrin repeats | Q48055052 | ||
Function search in a large transcription factor gene family in Arabidopsis: assessing the potential of reverse genetics to identify insertional mutations in R2R3 MYB genes. | Q52536642 | ||
AUXIN BIOSYNTHESIS. | Q52553300 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | abiotic stress | Q4667893 |
P304 | page(s) | 661-677 | |
P577 | publication date | 2002-06-01 | |
P1433 | published in | Plant Physiology | Q3906288 |
P1476 | title | Transcriptional profiling reveals novel interactions between wounding, pathogen, abiotic stress, and hormonal responses in Arabidopsis | |
P478 | volume | 129 |
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Q38442739 | Computational analysis of the glutamate receptor gene family of Arabidopsis thaliana. |
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Q34395853 | Reference gene validation for quantitative RT-PCR during biotic and abiotic stresses in Vitis vinifera |
Q43272212 | Regulation and function of the pepper pectin methylesterase inhibitor (CaPMEI1) gene promoter in defense and ethylene and methyl jasmonate signaling in plants. |
Q47763520 | Regulation of ABA dependent wound induced spreading cell death by MYB108. |
Q33588106 | Regulation of Arabidopsis defense responses against Spodoptera littoralis by CPK-mediated calcium signaling |
Q33576111 | Role of auxin-responsive genes in biotic stress responses |
Q35050248 | Roles of JnRAP2.6-like from the transition zone of black walnut in hormone signaling |
Q41879671 | Root ethylene signalling is involved in Miscanthus sinensis growth promotion by the bacterial endophyte Herbaspirillum frisingense GSF30(T) |
Q92875415 | RrMYB5- and RrMYB10-regulated flavonoid biosynthesis plays a pivotal role in feedback loop responding to wounding and oxidation in Rosa rugosa |
Q36640795 | STIFDB2: an updated version of plant stress-responsive transcription factor database with additional stress signals, stress-responsive transcription factor binding sites and stress-responsive genes in Arabidopsis and rice |
Q24675022 | Salicylic acid and NPR1 induce the recruitment of trans-activating TGA factors to a defense gene promoter in Arabidopsis |
Q35181808 | Salicylic acid signaling inhibits apoplastic reactive oxygen species signaling |
Q44545733 | Salt stress activation of wound-related genes in tomato plants |
Q46301172 | Salt stress affects xylem differentiation of grey poplar (Populus x canescens). |
Q36382540 | Secretome analysis of chickpea reveals dynamic extracellular remodeling and identifies a Bet v1-like protein, CaRRP1 that participates in stress response |
Q36473259 | Seduced by the dark side: integrating molecular and ecological perspectives on the influence of light on plant defence against pests and pathogens. |
Q92153538 | Short-Term Post-Harvest Stress that Affects Profiles of Volatile Organic Compounds and Gene Expression in Rocket Salad During Early Post-Harvest Senescence |
Q34631839 | Signaling specificity provided by the Arabidopsis thaliana heterotrimeric G-protein γ subunits AGG1 and AGG2 is partially but not exclusively provided through transcriptional regulation |
Q37704512 | Simulated herbivory in chickpea causes rapid changes in defense pathways and hormonal transcription networks of JA/ethylene/GA/auxin within minutes of wounding |
Q50485678 | SlNAC1, a stress-related transcription factor, is fine-tuned on both the transcriptional and the post-translational level. |
Q47261098 | SlWRKY45, nematode-responsive tomato WRKY gene, enhances susceptibility to the root knot nematode; M. javanica infection |
Q36476712 | Solution structure of a late embryogenesis abundant protein (LEA14) from Arabidopsis thaliana, a cellular stress-related protein |
Q38969159 | Spatial and temporal analysis of the local response to wounding in Arabidopsis leaves. |
Q37352502 | Specific functions of individual class III peroxidase genes |
Q37858613 | Stress homeostasis - the redox and auxin perspective |
Q33356064 | Stress induces plant somatic cells to acquire some features of stem cells accompanied by selective chromatin reorganization |
Q33742118 | Stress-induced activation of heterochromatic transcription. |
Q44368577 | Stress-induced protein phosphatase 2C is a negative regulator of a mitogen-activated protein kinase. |
Q46486615 | Structural and functional characterization of AtPTR3, a stress-induced peptide transporter of Arabidopsis. |
Q33865024 | Subtractive hybridization-mediated analysis of genes and in silico prediction of associated microRNAs under waterlogged conditions in sugarcane (Saccharum spp.). |
Q34281041 | TIME FOR COFFEE represses accumulation of the MYC2 transcription factor to provide time-of-day regulation of jasmonate signaling in Arabidopsis |
Q46744011 | The Arabidopsis cold-responsive transcriptome and its regulation by ICE1. |
Q41991330 | The Arabidopsis thaliana Transcription Factor AtMYB102 Functions in Defense Against the Insect Herbivore Pieris rapae |
Q44615209 | The BOTRYTIS SUSCEPTIBLE1 gene encodes an R2R3MYB transcription factor protein that is required for biotic and abiotic stress responses in Arabidopsis |
Q60424936 | The PP2C-type phosphatase AP2C1, which negatively regulates MPK4 and MPK6, modulates innate immunity, jasmonic acid, and ethylene levels in Arabidopsis |
Q92853592 | The Soybean bZIP Transcription Factor Gene GmbZIP2 Confers Drought and Salt Resistances in Transgenic Plants |
Q30361512 | The WRKY Transcription Factor Genes in Lotus japonicus |
Q24803919 | The WRKY transcription factor superfamily: its origin in eukaryotes and expansion in plants |
Q39502153 | The association among gene expression responses to nine abiotic stress treatments in Arabidopsis thaliana |
Q50717638 | The barley ERF-type transcription factor HvRAF confers enhanced pathogen resistance and salt tolerance in Arabidopsis. |
Q38153691 | The current status of the elemental defense hypothesis in relation to pathogens |
Q35993526 | The evolution of signaling complexity suggests a mechanism for reducing the genomic search space in human association studies |
Q41911131 | The gene encoding Arabidopsis acyl-CoA-binding protein 3 is pathogen inducible and subject to circadian regulation |
Q33360261 | The glucosinolate breakdown product indole-3-carbinol acts as an auxin antagonist in roots of Arabidopsis thaliana |
Q38517037 | The lipopolysaccharide of Sinorhizobium meliloti suppresses defense-associated gene expression in cell cultures of the host plant Medicago truncatula |
Q37586284 | The molecular basis for stress-induced acquisition of somatic embryogenesis |
Q39949321 | The response regulator 2 mediates ethylene signalling and hormone signal integration in Arabidopsis. |
Q28250073 | The strawberry plant defense mechanism: a molecular review |
Q79314087 | The tomato transcription factor Pti4 regulates defense-related gene expression via GCC box and non-GCC box cis elements |
Q33345145 | The transcription factor MtSERF1 of the ERF subfamily identified by transcriptional profiling is required for somatic embryogenesis induced by auxin plus cytokinin in Medicago truncatula. |
Q38341262 | The transcription factor SlAREB1 confers drought, salt stress tolerance and regulates biotic and abiotic stress‐related genes in tomato |
Q54646981 | The two ribosomal protein L23A genes are differentially transcribed in Arabidopsis thaliana. |
Q34583940 | The use of microarrays to study the anaerobic response in Arabidopsis |
Q44727071 | The zinc finger protein Zat12 is required for cytosolic ascorbate peroxidase 1 expression during oxidative stress in Arabidopsis. |
Q94460114 | The zinc-finger protein Zat12 plays a central role in reactive oxygen and abiotic stress signaling in Arabidopsis |
Q36841209 | Tomato transcriptome and mutant analyses suggest a role for plant stress hormones in the interaction between fruit and Botrytis cinerea |
Q58056382 | Towards transcript profiling of desiccation tolerance in Xerophyta humilis: Construction of a normalized 11 k X. humilis cDNA set and microarray expression analysis of 424 cDNAs in response to dehydration |
Q53545550 | Transcript abundance profiles reveal larger and more complex responses of grapevine to chilling compared to osmotic and salinity stress. |
Q58173391 | Transcription Factors: Modulating Plant Adaption in the Scenario of Changing Climate |
Q34983377 | Transcription profiling of fertilization and early seed development events in a solanaceous species using a 7.7 K cDNA microarray from Solanum chacoense ovules |
Q34617209 | Transcriptional analysis of South African cassava mosaic virus-infected susceptible and tolerant landraces of cassava highlights differences in resistance, basal defense and cell wall associated genes during infection |
Q42033886 | Transcriptional profiling by cDNA-AFLP reveals novel insights during methyl jasmonate, wounding and insect attack in Brassica napus |
Q30809254 | Transcriptional profiling implicates novel interactions between abiotic stress and hormonal responses in Thellungiella, a close relative of Arabidopsis |
Q33285432 | Transcriptional profiling of Arabidopsis heat shock proteins and transcription factors reveals extensive overlap between heat and non-heat stress response pathways |
Q33296335 | Transcriptional profiling of chickpea genes differentially regulated in response to high-salinity, cold and drought |
Q33281018 | Transcriptional regulation of genes involved in the pathways of biosynthesis and supply of methyl units in response to powdery mildew attack and abiotic stresses in wheat |
Q90639359 | Transcriptome Analysis Reveals Multiple Hormones, Wounding and Sugar Signaling Pathways Mediate Adventitious Root Formation in Apple Rootstock |
Q35735358 | Transcriptome Analysis Reveals that Red and Blue Light Regulate Growth and Phytohormone Metabolism in Norway Spruce [Picea abies (L.) Karst]. |
Q34508723 | Transcriptome analyses reveal genotype- and developmental stage-specific molecular responses to drought and salinity stresses in chickpea |
Q39410377 | Transcriptome analysis of Escherichia coli O157:H7 exposed to lysates of lettuce leaves. |
Q54095758 | Transcriptome analysis of nitric oxide-responsive genes in upland cotton (Gossypium hirsutum). |
Q54447197 | Transcriptome analysis of resistant and susceptible genotypes of Glycine tomentella during Phakopsora pachyrhizi infection reveals novel rust resistance genes. |
Q92352492 | Transcriptome analysis of the model grass Lolium temulentum exposed to green leaf volatiles |
Q33709893 | Transcriptome analysis of various flower and silique development stages indicates a set of class III peroxidase genes potentially involved in pod shattering in Arabidopsis thaliana |
Q39040718 | Transcriptome and metabolome analysis of plant sulfate starvation and resupply provides novel information on transcriptional regulation of metabolism associated with sulfur, nitrogen and phosphorus nutritional responses in Arabidopsis |
Q50026200 | Transcriptome dynamics at Arabidopsis graft junctions reveal an intertissue recognition mechanism that activates vascular regeneration. |
Q58718628 | Transcriptome dynamics of rooting zone and aboveground parts of cuttings during adventitious root formation in Cryptomeria japonica D. Don |
Q38472956 | Transcriptome profiling of Vitis amurensis, an extremely cold-tolerant Chinese wild Vitis species, reveals candidate genes and events that potentially connected to cold stress. |
Q36097756 | Transcriptome profiling of drought responsive noncoding RNAs and their target genes in rice |
Q34508635 | Transcriptome response analysis of Arabidopsis thaliana to leafminer (Liriomyza huidobrensis). |
Q35581310 | Transcriptome-wide identification of salt-responsive members of the WRKY gene family in Gossypium aridum |
Q47156337 | Transcriptomic Response of Resistant (PI613981-Malus sieversii) and Susceptible ("Royal Gala") Genotypes of Apple to Blue Mold (Penicillium expansum) Infection. |
Q34162578 | Transcriptomic analysis of rice (Oryza sativa) developing embryos using the RNA-Seq technique |
Q34878167 | Transcriptomic and proteomic analysis of a compatible tomato-aphid interaction reveals a predominant salicylic acid-dependent plant response |
Q47547448 | Transcriptomic responses to biotic stresses in Malus x domestica: a meta-analysis study |
Q40191154 | Transcriptomics-based identification of WRKY genes and characterization of a salt and hormone-responsive PgWRKY1 gene in Panax ginseng |
Q54661169 | Transgenic poplar expressing Arabidopsis NDPK2 enhances growth as well as oxidative stress tolerance. |
Q43052619 | Trifluralin herbicide-induced resistance of melon to fusarium wilt involves expression of stress- and defence-related genes |
Q42600701 | Two Brassica napus polygalacturonase inhibitory protein genes are expressed at different levels in response to biotic and abiotic stresses. |
Q37080036 | Two Different Wound Signals Evoke Very Rapid, Systemic CMBP Transcript Accumulation in Tomato |
Q42870229 | Ubiquitin Ligase-Coupled Receptors Extend Their Reach to Jasmonate |
Q41959644 | Unsupervised meta-analysis on diverse gene expression datasets allows insight into gene function and regulation. |
Q89621347 | Using Tomato Recombinant Lines to Improve Plant Tolerance to Stress Combination Through a More Efficient Nitrogen Metabolism |
Q61813477 | WRKYs, the Jack-of-various-Trades, Modulate Dehydration Stress in Populus davidiana-A Transcriptomic Approach |
Q34575126 | Wound induced tanscriptional regulation of benzylisoquinoline pathway and characterization of wound inducible PsWRKY transcription factor from Papaver somniferum. |
Q38256373 | Wounding in the plant tissue: the defense of a dangerous passage |
Q42519412 | Wounding induces resistance to pathogens with different lifestyles in tomato: role of ethylene in cross-protection |
Q44400076 | Yokonolide B, a novel inhibitor of auxin action, blocks degradation of AUX/IAA factors. |
Q48106468 | ZINC FINGER OF ARABIDOPSIS THALIANA12 (ZAT12) Interacts with FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR (FIT) Linking Iron Deficiency and Oxidative Stress Responses |
Q37130247 | cDNA-AFLP analysis reveals differential gene expression in incompatible interaction between infected non-heading Chinese cabbage and Hyaloperonospora parasitica |
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