Search results for "putrescine"

showing 10 items of 47 documents

Putrescine accumulation in Arabidopsis thaliana transgenic lines enhances tolerance to dehydration and freezing stress

2011

Polyamines have been globally associated to plant responses to abiotic stress. Particularly, putrescine has been related to a better response to cold and dehydration stresses. It is known that this polyamine is involved in cold tolerance, since Arabidopsis thaliana plants mutated in the key enzyme responsible for putrescine synthesis (arginine decarboxilase, ADC; EC 4.1.1.19) are more sensitive than the wild type to this stress. Although it is speculated that the over-expression of ADC genes may confer tolerance, this is hampered by pleiotropic effects arising from the constitutive expression of enzymes from the polyamine metabolism. Here, we present our work using A. thaliana transgenic pl…

AcclimatizationArabidopsisPlant ScienceDioxygenaseschemistry.chemical_compoundStress PhysiologicalArabidopsisGene expressionFreezingPutrescineArabidopsis thalianaAbscisic acidPlant ProteinsbiologyDehydrationAbiotic stressArabidopsis ProteinsWild typefood and beveragesbiology.organism_classificationPlants Genetically ModifiedchemistryBiochemistryPutrescinePolyamineResearch PaperAbscisic Acid
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Comparative survey of putrescine production from agmatine deamination in different bacteria

2008

This article aims to study putrescine production in Lactobacillus hilgardii strain X1B, an agmatine degrader isolated from wine, and to compare it with three other different species, previously reported as putrescine producers from agmatine: Pseudomonas aeruginosa PAO1, Enterococcus faecalis ATCC11700 and Bacillus cereus CECT 148T. The effect of different biogenic amines, organic acids, cofactors, amino acids and sugars on putrescine production was evaluated. In some cases, a similar effect was found in all the strains studied but the magnitude differed. Arginine, glucose and fructose showed an inhibitory effect, whereas the presence of agmatine induced the production of putrescine in all m…

Biogenic AminesAgmatineArginineOtras Ciencias Biológicasved/biology.organism_classification_rank.speciesSpermineWineLactobacillus hilgardiiBiologyArginineMicrobiologyEnterococcus faecalisCiencias Biológicaschemistry.chemical_compoundBacillus cereusSpecies SpecificityEnterococcus faecalisPutrescineved/biologyBIOGENIC AMINESWINEbiology.organism_classificationPUTRESCINESpermidineAgmatine deiminaseLactobacilluschemistryBiochemistryPseudomonas aeruginosaPutrescineAGMATINE DEIMINASEAgmatineCIENCIAS NATURALES Y EXACTASFood ScienceFood Microbiology
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Determination of biogenic amines in meat by combined ion-exchange capillary gas chromatography

1984

Abstract A procedure is described for the determination of putrescine, cadaverine and histamine in meat. Crude perchloric acid extracts were pre-separated on a weakly acidic cation exchanger and the amines quantified by capillary gas chromatography. The diamines were analysed as trifluoroacetyl derivatives and histamine was converted into N α -trifluoroacetyl-N τ -ethoxycarbonylhistamine. The accuracy of the determination of diamines was examined by a precipitation pre-separation method and by mass fragmentometric quantification. The proposed procedure allows the sensitive, sufficiently precise and highly specific determination of putrescine and cadaverine in meat.

Biogenic AminesChromatography GasMeatSwineTetraphenylborateBiochemistryGas Chromatography-Mass SpectrometryAnalytical Chemistrychemistry.chemical_compoundCadaverinePutrescineAnimalsChemical PrecipitationTrifluoroacetic AcidPerchloric acidCadaverineChromatographyIon exchangePrecipitation (chemistry)Organic ChemistryGeneral MedicineChromatography Ion ExchangeCapillary gas chromatographychemistryPutrescineHistamineHistamineJournal of Chromatography A
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Biogenic amines in wines from three Spanish regions.

2005

One hundred and sixty-three wines from La Rioja, Utiel-Requena, and Tarragona were analyzed to determine if there were any differences in the concentrations of six biogenic amines that are found in these three regions. The influence of grape variety, type of vinification, wine pH, malolactic fermentation, and storage in bottle on biogenic amine concentrations was studied. Results show important differences in putrescine and histamine concentrations among regions, varieties of grape, and type of wine; differences were less appreciable for the remaining biogenic amines studied. Low pH prevented biogenic amine formation. Malolactic fermentation and short storage periods in bottle (3-6 months) …

Biogenic AminesFood HandlingWinechemistry.chemical_compoundSpecies SpecificityBiogenic amineMalolactic fermentationPutrescineVitisFood sciencePediococcusWinemakingWinechemistry.chemical_classificationFood preservationfood and beveragesGeneral ChemistryTyramineHydrogen-Ion ConcentrationLactic acidchemistryLactobacillaceaeSpainFruitFermentationPutrescineGeneral Agricultural and Biological SciencesHistamineJournal of agricultural and food chemistry
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Molecular Cloning, Heterologous Expression, and Characterization of Ornithine Decarboxylase from Oenococcus oeni

2011

International audience; Ornithine decarboxylase (ODC) is responsible for the production of putrescine, the major biogenic amine found in wine. Oenococcus oeni is the most important lactic acid bacterium in the winemaking process and is involved in malolactic fermentation. We report here the characterization of ODC from an O. oeni strain isolated from wine. Screening of 263 strains isolated from wine and cider from all over the world revealed that the presence of the odc gene appears to be strain specific in O. oeni. After cloning, heterologous expression in Escherichia coli, and characterization, the enzyme was found to have a molecular mass of 85 kDa and a pI of 6.2 and revealed maximal ac…

Biogenic Aminesgenetic structuresWinemedicine.disease_causeMicrobiologyOrnithine decarboxylaseOrnithine decarboxylaseIndustrial Microbiology03 medical and health scienceschemistry.chemical_compoundmedicineMalolactic fermentationHumans[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyEscherichia coliOenococcus030304 developmental biologyOenococcus oeniWinemaking0303 health sciencesCadaverinebiology030306 microbiologyTemperaturefood and beveragesHydrogen-Ion Concentrationbiology.organism_classificationMolecular WeightKineticschemistryBiochemistryFermentationPutrescineHeterologous expressionOenococcus oeniFood ScienceJournal of Food Protection
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Simultaneous determination of eight underivatised biogenic amines in fish by solid phase extraction and liquid chromatography-tandem mass spectrometr…

2010

Biogenic amines on fish tissue are formed as a result of bacterial contamination and spoilage during storage. A new method based on liquid chromatography (LC) and tandem mass spectrometry (MS/MS) using a triple quadrupole (QqQ) analyser was developed for the analysis of eight biogenic amines (cadaverine, histamine, phenylethylamine, putrescine, spermine, spermidine, tyramine and tryptamine) in fish tissues. Sample preparation was performed by extraction with trichloroacetic acid 5% and solid phase extraction clean up with STRATA X cartridge. The MS/MS method was validated and compared with a method based on the analysis of dansyl derivatives by LC and fluorescence detector (FD). MS/MS achie…

CadaverineBiogenic AminesChromatographyExtraction (chemistry)Solid Phase ExtractionFishesGeneral MedicineTandem mass spectrometryAnalytical ChemistryTriple quadrupole mass spectrometerchemistry.chemical_compoundchemistryLiquid chromatography–mass spectrometryTandem Mass SpectrometryPutrescineAnimalsSample preparationSolid phase extractionChromatography High Pressure LiquidFood ScienceChromatography LiquidFood chemistry
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Chemical speciation of nucleotide 5′-monophosphates in the presence of biogenic amines

2001

The interaction of adenosine-, uridine-, inosine- and guanosine-5’-monophosphates with protonated ethylenediamine, putrescine, cadaverine, spermidine and spermine, was studied potentiometrically, a...

CadaverineChemical Health and SafetyStereochemistryHealth Toxicology and MutagenesisSpermineEthylenediamineToxicologyMedicinal chemistryBiogenic PolyaminesUridineSpermidinechemistry.chemical_compoundchemistrynucleotide 5′-monophosphates; biogenic polyamines; nucleotide 5′-monophosphate-polyammonium cation complexes; speciationmedicinePutrescineInosinemedicine.drug
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A survey of the main technology, biochemical and microbiological features influencing the concentration of biogenic amines of twenty Apulian and Sici…

2015

Abstract Twenty Apulian and Sicilian cheeses were analysed for their concentrations of eight biogenic amines (BAs), free amino acids, pH, water activity, and subjected to microbiological characterisation. In addition, lactic acid bacteria isolated from cheeses were assayed for their capacity to generate BAs. Principal component analysis was performed to find the effect of different parameters on the distribution of the cheeses. Although short-ripened (≤30 d) cheeses did not show significant BA concentrations, the only BA showing high positive correlation with time of ripening was histamine. Concentration of histidine and, especially, percentage of histidine-decarboxylase bacteria presumably…

CadaverineChromatographybiologyWater activityGram-positive bacteriaeducationRipeningTyraminebiology.organism_classificationApplied Microbiology and BiotechnologyLactic acidchemistry.chemical_compoundchemistryPutrescineCheese biogenic amines decarboxylase lactic acid bacteriaBacteriaFood Science
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Interactions of Dioxouranium(VI) with Amines in Aqueous Solution

2010

The interaction of the dioxouranium(VI) ion with five low molecular weight polyamines (ethylenediamine, putrescine, cadaverine, spermidine, and spermine) and with poly(allyl)amine (15 kDa) was studied potentiometrically (ISE-H + glass electrode) at T ) 298.15 K. Investigations were carried out in NaNO3 ionic medium, at I ) 0.1 mol · L -1 (and 0.5 mol · L -1 for poly(allyl)amine only), in the pH range 3.5 to 5.5, before the formation of uranyl insoluble species. The results gave evidence for the formation of two species, namely, UO2L 2+ and UO2L(OH) + for the diamine systems (ethylenediamine, putrescine, cadaverine), UO2L 2+ and UO2LH 3+ for spermidine, and UO2LH 3+ and UO2LH2 4+ for spermin…

CadaverineGeneral Chemical EngineeringInorganic chemistryEthylenediamineGeneral Chemistrydioxouranium; sequestrationMedicinal chemistrySpermidinestability constantschemistry.chemical_compoundchemistryaminespeciationStability constants of complexesuranylDiaminePutrescineQualitative inorganic analysisSettore CHIM/01 - Chimica AnaliticaPolyamine
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Interactions between Polyamines and Abiotic Stress Pathway Responses Unraveled by Transcriptome Analysis of Polyamine Overproducers

2011

Plant development and productivity are negatively regulated by adverse environmental conditions. The identification of stress-regulatory genes, networks, and signaling molecules should allow the development of novel strategies to obtain tolerant plants. Polyamines (PAs) are polycationic compounds with a recognized role in plant growth and development, as well as in abiotic and biotic stress responses. During the last years, knowledge on PA functions has been achieved using genetically modified plants with altered PA levels. In this review, we combine the information obtained from global transcriptome analyses in transgenic Arabidopsis plants with altered putrescine or spermine levels. Compa…

Cell signalingArabidopsisBiologyModels BiologicalBiochemistryTranscriptomechemistry.chemical_compoundStress PhysiologicalArabidopsisPolyaminesGeneticsPlant defense against herbivoryCalcium SignalingMolecular BiologyAbscisic acidPlant Stress—Special Issue 1Review ArticlesAbiotic stressfungifood and beveragesBiotic stressPlants Genetically Modifiedbiology.organism_classificationchemistryBiochemistryPutrescineMolecular MedicineTranscriptomeGenome PlantAbscisic AcidSignal TransductionBiotechnologyOMICS: A Journal of Integrative Biology
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