Search results for "Abscisic Acid"

showing 10 items of 58 documents

Temperature regulating floral bud differentiation in loquat (Eriobotrya japonica Lindl.). Hormonal and genetic aspects

2017

In loquat, apex of a current shoot changes from vegetative to reproductive stage during summer, i.e. under high temperature conditions. Indeed, just before floral bud differentiation, a decline in the growth rate due to high temperature takes place. The aim of this work is to study the role of this 'summer rest period' on the apex transition from vegetative to reproductive stage. For this purpose 1) sprouting of secondary shoots was promoted at different times, removing the main shoot, before, during and after floral bud differentiation occurred and 2) groups of trees were shifted to a greenhouse under average maximum temperature not exceeding 25 ° C during different periods from June to Oc…

Eriobotrya japonica floral bud differentiation gene expression environmental conditions EjLFY EjAP1 EjTFL1 ABAEjLFY EjAP1fungifood and beveragesflower bud differentiationEriobotryaBiologybiology.organism_classificationJaponicaenvironmental conditionsSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboreechemistry.chemical_compoundHorticultureRest periodchemistryEriobotrya japonicaABAShootBotanygene expressionEjTFL1GibberellinLeafyAbscisic acidSprouting
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Functional analysis of the isoforms of an ABI3-like factor of Pisum sativum generated by alternative splicing

2009

At least seven isoforms (PsABI3-1 to PsABI3-7) of a putative, pea ABI3-like factor, originated by alternative splicing, have been identified after cDNA cloning. A similar variability had previously only been described for monocot genes. The full-length isoform, PsABI3-1, contains the typical N-terminal acidic domains and C-terminal basic subdomains, B1 to B3. Reverse transcriptase-PCR analysis revealed that the gene is expressed just in seeds, starting at middle embryogenesis; no gene products are observed in embryo axes after 18 h post-imbibition although they are more persistent in cotyledons. The activity of the isoforms was studied by yeast one-hybrid assays. When yeast was transformed …

Gene isoformABI3PhysiologyABI5Molecular Sequence DataPlant ScienceBiologyAbscisic acidComplementary DNAGene expressionProtein IsoformsArabidopsis thalianaAmino Acid SequenceCloning MolecularGenePlant ProteinsBase SequenceAlternative splicingisoformsPeasfood and beveragesDNA-binding domainbiology.organism_classificationResearch PapersAlternative SplicingProtein TransportABABiochemistryRNA splicingProtein BindingJournal of Experimental Botany
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The Arabidopsis CBF Gene Family Is Composed of Three Genes Encoding AP2 Domain-Containing Proteins Whose Expression Is Regulated by Low Temperature b…

1999

Abstract We have identified two genes from Arabidopsis that show high similarity withCBF1, a gene encoding an AP2 domain-containing transcriptional activator that binds to the low-temperature-responsive element CCGAC and induces the expression of some cold-regulated genes, increasing plant freezing tolerance. These two genes, which we have named CBF2 and CBF3, also encode proteins containing AP2 DNA-binding motifs. Furthermore, like CBF1, CBF2 and CBF3 proteins also include putative nuclear-localization signals and potential acidic activation domains. The CBF2 andCBF3 genes are linked to CBF1,constituting a cluster on the bottom arm of chromosome IV. The high level of similarity among the t…

GeneticsPhysiologyPlant ScienceBiologybiology.organism_classificationDNA-binding proteinHomology (biology)Cell biologychemistry.chemical_compoundchemistryArabidopsisGene expressionGeneticsGene familySignal transductionAbscisic acidGenePlant Physiology
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Global uptake of carbonyl sulfide (COS) by terrestrial vegetation: Estimates corrected by deposition velocities normalized to the uptake of carbon di…

2005

Abstract. COS uptake by trees, as observed under dark/light changes and under application of the plant hormone abscisic acid, exhibited a strong correlation with the CO2 assimilation rate and the stomatal conductance. As the uptake of COS occurred exclusively through the stomata we compared experimentally derived and re-evaluated deposition velocities (Vd; related to stomatal conductance) for COS and CO2. We show that Vd of COS is generally significantly larger than that of CO2. We therefore introduced this attribute into a new global estimate of COS fluxes into vegetation. The new global estimate of the COS uptake based on available net primary productivity data (NPP) ranges between 0.69-1…

HydrologyStomatal conductancePrimary productionAtmospheric scienceschemistry.chemical_compoundFlux (metallurgy)chemistryCarbon dioxideRespirationTerrestrial vegetationAbscisic acidEcology Evolution Behavior and SystematicsEarth-Surface ProcessesCarbonyl sulfide
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Priming for JA-dependent defenses using hexanoic acid is an effective mechanism to protect Arabidopsis against B. cinerea

2011

Abstract Soil drench treatments with hexanoic acid can effectively protect Arabidopsis plants against Botrytis cinerea through a mechanism based on a stronger and faster accumulation of JA-dependent defenses. Plants impaired in ethylene, salicylic acid, abscisic acid or glutathion pathways showed intact protection by hexanoic acid upon B. cinerea infection. Accordingly, no significant changes in the SA marker gene PR-1 in either the SA or ABA hormone balance were observed in the infected and treated plants. In contrast, the JA signaling pathway showed dramatic changes after hexanoic acid treatment, mainly when the pathogen was present. The impaired JA mutants, jin1-2 and jar1 , were unable …

Jasmonic acid pathwaysPhysiologyMutantArabidopsisCyclopentanesPlant ScienceMicrobiologyDefensinschemistry.chemical_compoundBotrytis cinereaAnti-Infective AgentsPlant Growth RegulatorsHexanoic AcidGene Expression Regulation PlantArabidopsisEndopeptidasesPlant ImmunityOxylipinsCaproatesGlucansAbscisic acidPlant DiseasesPlant ProteinsBotrytis cinereaHexanoic acidbiologyArabidopsis ProteinsJasmonic acidCallosefungiAlternariafood and beveragesArabidopsis mutantsEthylenesPlants Genetically Modifiedbiology.organism_classificationGlutathionePlant LeaveschemistryBiochemistryPrimingMutationBotrytisSalicylic AcidAgronomy and Crop ScienceSalicylic acidAbscisic AcidSignal Transduction
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Identification and characterization of an ABA-activated MAP kinase cascade in Arabidopsis thaliana.

2015

†These authors contributed equally to the work. Accession numbers Sequence data from this article can be found in Arabidopsis Genome Initiative or GenBank/EMBL databases under the following accession numbers: At1g10210 (MPK1), At1g59580 (MPK2), At2g43790 (MPK6), At2g18170 (MPK7), At1g18150 (MPK8), At4g36450 (MPK14), At5g40440 (MKK3), At2g32510 (MAP3K17) and At1g05100 (MAP3K18). SUMMARY Abscisic acid (ABA) is a major phytohormone involved in important stress-related and developmental plant processes. Recent phosphoproteomic analyses revealed a large set of ABA-triggered phosphoproteins as putative mitogen-activated protein kinase (MAPK) targets, although the evidence for MAPKs involved in AB…

MAPK/ERK pathwayMAP Kinase Signaling System[SDV]Life Sciences [q-bio]MutantArabidopsisPlant ScienceMAPK cascadeMAP3K18chemistry.chemical_compoundGeneticsProtein biosynthesis[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyArabidopsis thalianaMKK3Protein kinase AGeneAbscisic acidbiologyArabidopsis Proteinsorganic chemicalsfungiMAPK modulefood and beveragesCell Biologybiology.organism_classificationBiochemistrychemistrysignalling pathwayAbscisic AcidThe Plant journal : for cell and molecular biology
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A multifunctional bicupin serves as precursor for a chromosomal protein of Pisum sativum seeds.

2005

The fact that the psp54 gene codes for p16, a seed chromatin protein of Pisum sativum, has been described previously. In the present paper it is shown that p54, the p16 precursor, also exists as a free polypeptide in pea and that it also yields p38, a second polypeptide from the N-terminal region of p54, which is co-localized at a subcellular level with p16. By using antibodies against pea p16 and p38, it was found that these proteins are present in the members of the tribe Viciae examined. Sequence analysis and 3D modelling indicates that p54 proteins belong to the cupin superfamily, and that they are related to sucrose binding proteins and, to a lesser extent, to vicilin-type seed storage…

Models MolecularPhysiologySequence analysisChromosomal Proteins Non-HistoneMolecular Sequence DataPlant ScienceResponse ElementsDNA-binding proteinPisumSativumGene Expression Regulation PlantSequence Analysis ProteinGene expressionStorage proteinAmino Acid SequenceRNA MessengerProtein PrecursorsPromoter Regions GeneticGenePlant Proteinschemistry.chemical_classificationMessenger RNAbiologyPeasfood and beveragesbiology.organism_classificationBiochemistrychemistryMultigene FamilyProtein BiosynthesisSeedsProtein Processing Post-TranslationalSequence AlignmentAbscisic AcidJournal of experimental botany
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Physiological and genomic variations in rice cells recovered from direct immersion and storage in liquid nitrogen

1999

The use of cryoprotectants and slow cooling rates are routine procedures for the cryopreservation of plant cell lines. However, our results with rice (Oryza sativa L., cv. Taipei 309) show that calli can be cryopreserved by direct immersion and stored in liquid nitrogen without any cryoprotection. The efficiency of recovery using this method, as well as a conventional method was generally increased with a previous abscisic acid (ABA) treatment. Following cryopreservation, calli demonstrated some differences with respect to unfrozen calli of the same lines. Thus, resistance to freezing stress (−20°C for 2 h) increased significantly in all lines tested, irrespective of their pre-incubation wi…

Oryza sativaCryoprotectantPhysiologyfungifood and beveragesCell BiologyPlant ScienceGeneral MedicineLiquid nitrogenBiologyCryopreservationSomaclonal variationRAPDchemistry.chemical_compoundHorticulturechemistryCallusBotanyGeneticsAbscisic acidPhysiologia Plantarum
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Heavy metal-hormone interactions in rice plants: Effects on growth, net photosynthesis, and carbohydrate distribution

1995

The effect of external applications of gibberellins (GA3) and abscisic acid (ABA) on the growth, carbohydrate content, and net photosynthesis of heavy metal-stressed rice plants (Oryza sativa cv. Bahia) was investigated. Treatment with cadmium (0.1 mm) and nickel (0.5 mm) inhibited rice growth and stimulated carbohydrate accumulation, especially in seeds from which seedlings were developing, stems, and first leaves. The addition of GA3 (14 μm) to the rice culture solution together with Cd or Ni partially reversed the effects of heavy metals, stimulating growth as well as mobilization of carbohydrate reserves in seeds from which seedlings had developed. GA3 increased the sugar content in roo…

Oryza sativafood and beveragesPlant physiologyPlant ScienceBiologyCarbohydratePhotosynthesischemistry.chemical_compoundchemistryBotanyPoaceaeGibberellinSugarAgronomy and Crop ScienceAbscisic acidJournal of Plant Growth Regulation
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Accumulation of monoterpenes in shoot-proliferation cultures of Lavandula latifolia Med.

1993

Abstract We studied the effect of osmotic stress (induced by the addition of mannitol to the culture medium) and abscisic acid (ABA) addition on monoterpene accumulative capability in shoot proliferating cultures of Lavandula latifolia Med. The highest shoot elongation was achieved when the elongation medium contained sucrose (3%). Increasing the medium osmolarity or adding 25–50 μM ABA in shoot elongation cultures resulted in a significant increase in monoterpene accumulation in the regenerated shoots. These monoterpenes are qualitatively similar to those produced by the parent plants. Regulation of the conditions that limit the growth in shoot proliferation cultures of L. latifolia should…

Osmotic shockOsmotic concentrationMonoterpenefungiLavandula latifoliafood and beveragesPlant ScienceGeneral MedicineBiologybiology.organism_classificationchemistry.chemical_compoundTissue culturechemistryBotanyShootGeneticsmedicineMannitolAgronomy and Crop ScienceAbscisic acidmedicine.drugPlant Science
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