Search results for "Abscisic acid"

showing 10 items of 58 documents

Interaction Between ABA Signaling and Copper Homeostasis inArabidopsis thaliana

2016

ABA is involved in plant responses to non-optimal environmental conditions, including nutrient availability. Since copper (Cu) is a very important micronutrient, unraveling how ABA affects Cu uptake and distribution is relevant to ensure adequate Cu nutrition in plants subjected to stress conditions. Inversely, knowledge about how the plant nutritional status can interfere with ABA biosynthesis and signaling mechanisms is necessary to optimize stress tolerance in horticultural crops. Here the reciprocal influence between ABA and Cu content was addressed by using knockout mutants and overexpressing transgenic plants of high affinity plasma membrane Cu transporters (pmCOPT) with altered Cu up…

0106 biological sciences0301 basic medicineBiologiaTranscription GeneticPhysiologyMutantArabidopsisPlant ScienceGenetically modified cropsSodium ChlorideGenes PlantPlant Roots01 natural sciencesGene Knockout Techniques03 medical and health scienceschemistry.chemical_compoundGene Expression Regulation PlantStress PhysiologicalArabidopsisHomeostasisArabidopsis thalianaPlantes Cèl·lules i teixitsAbscisic acidTranscription factorbiologyArabidopsis ProteinsMembrane transport proteinorganic chemicalsfungiMembrane Transport Proteinsfood and beveragesCell BiologyGeneral Medicinebiology.organism_classificationCell biologyOxidative StressPhenotype030104 developmental biologychemistryMutationbiology.proteinSignal transductionCopperAbscisic AcidSignal Transduction010606 plant biology & botanyPlant and Cell Physiology
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Transcriptome approach to understand the potential mechanisms inhibiting or triggering blossom-end rot development in tomato fruit in response to pla…

2017

The objectives of this study were to analyze changes in gene expression and identify candidate genes and gene networks potentially inhibiting or triggering blossom-end rot (BER) in tomatoes treated with plant growth regulators. ?Ace 55 (Vf)? tomato plants were grown in a greenhouse and sprayed with Apogee (300 mg L?1), abscisic acid (ABA) (500 mg L?1), water (control), or gibberellins 4?+?7 (GA4?+?7) (300 mg L?1) weekly after pollination. The BER incidence rate was zero in Apogee- and ABA-, medium in water-, and high in GA4?+?7-treated plants from 26 to 40 days after pollination (DAP). At 26 DAP, healthy blossom-end fruit tissue still not showing visible BER symptoms was used for transcript…

0106 biological sciences0301 basic medicineCandidate geneEstimulante de Crescimento VegetalPlant growth regulatorsPlant ScienceBiologymedicine.disease_cause01 natural sciencesGeneGiberelinaTranscriptome03 medical and health scienceschemistry.chemical_compoundAbscisic acidTomateSettore AGR/07 - Genetica AgrariaBotanyGene expressionmedicineDisorderGibberellinÁcido giberélicoHormônio VegetalAbscisic acidchemistry.chemical_classificationReactive oxygen speciesBERRegulador de crescimentofood and beveragesPlant physiologyHorticulture030104 developmental biologychemistryGibberellinProhexadione calciumAgronomy and Crop ScienceOxidative stress010606 plant biology & botanyProhexadione-calcium
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Transcriptional responses to pre-flowering leaf defoliation in grapevine berry from different growing sites, years, and genotypes

2017

Leaf removal is a grapevine canopy management technique widely used to modify the source–sink balance and/or microclimate around berry clusters to optimize fruit composition. In general, the removal of basal leaves before flowering reduces fruit set, hence achieving looser clusters, and improves grape composition since yield is generally curtailed more than proportionally to leaf area itself. Albeit responses to this practice seem quite consistent, overall vine performance is affected by genotype, environmental conditions, and severity of treatment. The physiological responses of grape varieties to defoliation practices have been widely investigated, and just recently a whole genome trans…

0106 biological sciences0301 basic medicineCanopyBerry transcriptome; Flavonoid; Grapevine; Pre-flowering defoliation; Secondary metabolite; Plant ScienceBerry transcriptomeBerryPlant Sciencelcsh:Plant cultureBiology01 natural sciencesTranscriptomeCropSecondary metabolite03 medical and health scienceschemistry.chemical_compoundAuxinSettore AGR/07 - Genetica AgrariaBotanylcsh:SB1-1110JasmonateAbscisic acidOriginal Research2. Zero hungerchemistry.chemical_classificationfungifood and beveragesRipening15. Life on landPre-flowering defoliationberry transcriptome; flavonoid; grapevine; pre-flowering defoliation; secondary metaboliteSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboree030104 developmental biologychemistryFlavonoidGrapevine010606 plant biology & botany
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Identification of key genes and its chromosome regions linked to drought responses in leaves across different crops through meta-analysis of RNA-Seq …

2019

Background Our study is the first to provide RNA-Seq data analysis related to transcriptomic responses towards drought across different crops. The aim was to identify and map which genes play a key role in drought response on leaves across different crops. Forty-two RNA-seq samples were analyzed from 9 published studies in 7 plant species (Arabidopsis thaliana, Solanum lycopersicum, Zea mays, Vitis vinifera, Malus X domestica, Solanum tuberosum, Triticum aestivum). Results Twenty-seven (16 up-regulated and 11 down-regulated) drought-regulated genes were commonly present in at least 7 of 9 studies, while 351 (147 up-regulated and 204 down-regulated) were commonly drought-regulated in 6 of 9 …

0106 biological sciences0301 basic medicineCrops AgriculturalLeavesArabidopsisPlant ScienceGenes Plant01 natural sciencesZea maysChromosomes PlantTranscriptome03 medical and health scienceschemistry.chemical_compoundSolanum lycopersicumAuxinlcsh:BotanyArabidopsis thalianaVitisRNA-SeqDrought Leaves Meta-analysis RNA-Seq Seedlings TranscriptomicGeneAbscisic acidTriticumSolanum tuberosumchemistry.chemical_classificationGeneticsbiologyDroughtDehydrationAbiotic stressfungiChromosome Mappingfood and beveragesbiology.organism_classificationlcsh:QK1-989Plant LeavesMeta-analysis030104 developmental biologychemistryCell wall organizationTranscriptomicDrought; Leaves; Meta-analysis; RNA-Seq; Seedlings; Transcriptomic; Arabidopsis; Chromosome Mapping; Chromosomes Plant; Crops Agricultural; Dehydration; Genes Plant; Lycopersicon esculentum; Malus; Plant Leaves; RNA Plant; Solanum tuberosum; Triticum; Vitis; Zea maysSeedlingsRNA PlantMalusSolanum010606 plant biology & botanyResearch Article
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Arabidopsis mutant dnd2 exhibits increased auxin and abscisic acid content and reduced stomatal conductance

2019

Arabidopsis thaliana cyclic nucleotide-gated ion channel gene 4 (AtCNGC4) loss-of-function mutant dnd2 exhibits elevated accumulation of salicylic acid (SA), dwarfed morphology, reduced hypersensitive response (HR), altered disease resistance and spontaneous lesions on plant leaves. An orthologous barley mutant, nec1, has been reported to over-accumulate indole-3-acetic acid (IAA) and to exhibit changes in stomatal regulation in response to exogenous auxin. Here we show that the Arabidopsis dnd2 over-accumulates both IAA and abscisic acid (ABA) and displays related phenotypic and physiological changes, such as, reduced stomatal size, higher stomatal density and stomatal index. dnd2 showed i…

0106 biological sciences0301 basic medicineHypersensitive responseStomatal conductanceDrought stressPhysiologyMutantArabidopsisPlant ScienceBOX PROTEIN TIR101 natural sciencesSIGNALING PATHWAYS03 medical and health scienceschemistry.chemical_compoundBarley nec1Abscisic acidAuxinGene Expression Regulation PlantArabidopsisLESION MIMIC MUTANTSGeneticsDISEASE RESISTANCEAuxinPLANTAbscisic acid1183 Plant biology microbiology virologyGENE-EXPRESSION2. Zero hungerchemistry.chemical_classificationbiologyIndoleacetic AcidsAbiotic stressArabidopsis Proteinsfungifood and beveragesGATED ION CHANNELSHordeumbiology.organism_classificationDroughts030104 developmental biologychemistryArabidopsis dnd2SALT-STRESSPlant StomataBiophysicsINNATE IMMUNITYAIR HUMIDITYSalicylic acid010606 plant biology & botany
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Identification of conserved genes linked to responses to abiotic stresses in leaves among different plant species

2020

As a consequence of global climate change, certain stress factors that have a negative impact on crop productivity such as heat, cold, drought and salinity are becoming increasingly prevalent. We conducted a meta-analysis to identify genes conserved across plant species involved in (1) general abiotic stress conditions, and (2) specific and unique abiotic stress factors (drought, salinity, extreme temperature) in leaf tissues. We collected raw data and re-analysed eight RNA-Seq studies using our previously published bioinformatic pipeline. A total of 68 samples were analysed. Gene set enrichment analysis was performed using MapMan and PageMan whereas DAVID (Database for Annotation, Visuali…

0106 biological sciences0301 basic medicinePlant ScienceProtein degradationBiologyGenes Plant01 natural sciences03 medical and health scienceschemistry.chemical_compoundGene Expression Regulation PlantStress PhysiologicalSettore AGR/07 - Genetica AgrariaMYBSecondary metabolismAbscisic acidGeneAbiotic componentGeneticsabiotic-stresses differentially expressed genes leaves meta-analysis RNA-Seq transcriptomic.Abiotic stressGene Expression Profilingfungifood and beveragesPlant LeavesSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboree030104 developmental biologychemistryCinnamoyl-CoA reductaseAgronomy and Crop Science010606 plant biology & botany
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Identification of ABA-Mediated Genetic and Metabolic Responses to Soil Flooding in Tomato (

2021

Soil flooding is a compound abiotic stress that alters soil properties and limits atmospheric gas diffusion (O2 and CO2) to the roots. The involvement of abscisic acid (ABA) in the regulation of soil flooding-specific genetic and metabolic responses has been scarcely studied despite its key importance as regulator in other abiotic stress conditions. To attain this objective, wild type and ABA-deficient tomatoes were subjected to short-term (24 h) soil waterlogging. After this period, gas exchange parameters were reduced in the wild type but not in ABA-deficient plants that always had higher E and gs. Transcript and metabolite alterations were more intense in waterlogged tissues, with genoty…

0106 biological sciences0301 basic medicinePlant Sciencelcsh:Plant culturetomatoNitrate reductase01 natural sciencesTomatoabscisic acid03 medical and health scienceschemistry.chemical_compoundAbscisic acidBIOQUIMICA Y BIOLOGIA MOLECULARlcsh:SB1-1110HypoxiaAbscisic acidOriginal ResearchOxidase testbiologyChemistryAbiotic stresshypoxiafungiWild typefood and beveragesMetabolismbiology.organism_classificationSignaling030104 developmental biologyMetabolismBiochemistrySoil floodingsoil floodingSolanumsignalingmetabolism010606 plant biology & botanyWaterlogging (agriculture)Frontiers in plant science
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The Pseudomonas fluorescens Siderophore Pyoverdine Weakens Arabidopsis thaliana Defense in Favor of Growth in Iron-Deficient Conditions

2016

SPE EA BIOME IPM UB INRA; International audience; Pyoverdines are siderophores synthesized by fluorescent Pseudomonas spp. Under iron-limiting conditions, these high-affinity ferric iron chelators are excreted by bacteria in the soil to acquire iron. Pyoverdines produced by beneficial Pseudomonas spp. ameliorate plant growth. Here, we investigate the physiological incidence and mode of action of pyoverdine from Pseudomonas fluorescens C7R12 on Arabidopsis (Arabidopsis thaliana) plants grown under iron-sufficient or iron-deficient conditions. Pyoverdine was provided to the medium in its iron-free structure (apo-pyoverdine), thus mimicking a situation in which it is produced by bacteria. Rema…

0106 biological sciences0301 basic medicineSiderophoreAgronomieFMN ReductasePhysiologyIronArabidopsis[ SDV.SA.SDS ] Life Sciences [q-bio]/Agricultural sciences/Soil study[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomySiderophoresPseudomonas fluorescensPlant Science[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studyPseudomonas fluorescens01 natural sciencesMicrobiology03 medical and health scienceschemistry.chemical_compoundEthylene[ SDV.SA.AGRO ] Life Sciences [q-bio]/Agricultural sciences/AgronomyGene Expression Regulation PlantArabidopsisGeneticsmedicineArabidopsis thalianaHomeostasisCation Transport Proteins2. Zero hungerPyoverdinebiologyIndoleacetic AcidsArabidopsis ProteinsScience des solsGene Expression ProfilingPseudomonasfood and beveragesArticlesEthylenesbiology.organism_classification030104 developmental biologychemistryFerricSalicylic AcidOligopeptidesBacteria010606 plant biology & botanymedicine.drugAbscisic Acid
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Infestation of broad bean (Vicia faba) by the green stink bug (Nezara viridula) decreases shoot abscisic acid contents under well-watered and drought…

2017

The response of broad bean (Vicia faba) plants to water stress alone and in combination with green stink bug (Nezara viridula) infestation was investigated through measurement of: (1) leaf gas exchange; (2) plant hormone titres of abscisic acid (ABA) and its metabolites, and of salicylic acid (SA); and (3) hydrogen peroxide (H2O2) content. Furthermore, we evaluated the effects of experimentally water-stressed broad-bean plants on N. viridula performance in terms of adult host–plant preference, and nymph growth and survival. Water stress significantly reduced both photosynthesis (A) and stomatal conductance (gs), while infestation by the green stink bug had no effects on photosynthesis but s…

0106 biological sciences0301 basic medicineStomatal conductanceGreen stink bugsalicylic acidhydrogen peroxidePlant Sciencelcsh:Plant culturemedicine.disease_cause01 natural sciences03 medical and health scienceschemistry.chemical_compoundPhotosynthesiInfestationparasitic diseasesmedicinelcsh:SB1-1110Abscisic acidOriginal Researchwater deficitphotosynthesisbiologyfungiNezara viridulafood and beveragesbiology.organism_classificationVicia fabaVicia fabaSettore AGR/11 - Entomologia Generale E Applicata030104 developmental biologychemistryAgronomyABANezara viridulaShootABA; hydrogen peroxide; Nezara viridula; photosynthesis; salicylic acid; Vicia faba; water deficitPlant hormone010606 plant biology & botany
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Polyamine Oxidase 5 loss-of-function mutations in Arabidopsis thaliana trigger metabolic and transcriptional reprogramming and promote salt stress to…

2017

The family of polyamine oxidases (PAO) in Arabidopsis (AtPAO1-5) mediates polyamine (PA) back-conversion, which reverses the PA biosynthetic pathway from spermine, and its structural isomer thermospermine (tSpm), into spermidine and then putrescine. Here, we have studied the involvement of PA back-conversion in Arabidopsis salinity tolerance. AtPAO5 is the Arabidopsis PAO gene member most transcriptionally induced by salt stress. Two independent loss-of-function mutants (atpao5-2 and atpao5-3) were found to exhibit constitutively higher tSpm levels, with associated increased salt tolerance. Using global transcriptional and metabolomic analyses, the underlying mechanisms were studied. Stimul…

0106 biological sciences0301 basic medicineTranscription GeneticArabidopsis thalianaPhysiologyArabidopsisSperminePlant ScienceSodium Chloride01 natural scienceschemistry.chemical_compoundGene Expression Regulation PlantLoss of Function MutationArabidopsisPolyaminesMetabolitesArabidopsis thalianaPoliaminesAbscisic acidPrincipal Component AnalysisbiologyAgricultural SciencesSalt ToleranceMetabòlitsmetabolomicsPhenotypeBiochemistryMultigene FamilyMetabolomeCitric Acid CycleSalsCyclopentanes03 medical and health sciencesStress PhysiologicalOxylipinsRNA MessengerIonssalt toleranceArabidopsis ProteinsGene Expression ProfilingSodiumHydrogen PeroxideAgriculture Forestry and Fisheriesbiology.organism_classificationSpermidineGene Ontology030104 developmental biologychemistrythermosperminePutrescineSpermineSaltsOxidoreductases Acting on CH-NH2 Group DonorsTranscriptomejasmonatesPolyaminePolyamine oxidaseAbscisic Acid010606 plant biology & botany
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