Search results for "Industrial Microbiology"

showing 10 items of 27 documents

Recent advancements in lactic acid production - a review.

2017

Abstract Lactic acid, as an organic acid, has essential roles in industrial applications ranging from the food industry to life-sciences. Conventional fermentation methods have been well-studied since late 18th century, but are unable to achieve consumers' expectations regarding both quality and quantity. Therefore, novel technological developments of lactic acid production to increase yield and decrease over-all cost have become the primary goal. Genetic and metabolic engineering are great tools to overcome problems associated with product inhibition, undesired by-product formation, the negative effect of extreme culture conditions and most importantly inefficient use of expensive substrat…

0106 biological sciences0301 basic medicineFood industryGenotype01 natural sciencesMetabolic engineering03 medical and health scienceschemistry.chemical_compoundIndustrial MicrobiologyBioreactors010608 biotechnologyProduction (economics)Lactic AcidProductivitychemistry.chemical_classificationBacteriabusiness.industryEquipment DesignLactic acid030104 developmental biologyPhenotypechemistryFermentationFermentationBiochemical engineeringbusinessGenetic EngineeringFood ScienceOrganic acidFood research international (Ottawa, Ont.)
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Bioethanol and lipid production from the enzymatic hydrolysate of wheat straw after furfural extraction

2018

This study investigates biofuel production from wheat straw hydrolysate, from which furfural was extracted using a patented method developed at the Latvian State Institute of Wood Chemistry. The solid remainder after furfural extraction, corresponding to 67.6% of the wheat straw dry matter, contained 69.9% cellulose of which 4% was decomposed during the furfural extraction and 26.3% lignin. Enzymatic hydrolysis released 44% of the glucose monomers in the cellulose. The resulting hydrolysate contained mainly glucose and very little amount of acetic acid. Xylose was not detectable. Consequently, the undiluted hydrolysate did not inhibit growth of yeast strains belonging to Saccharomyces cerev…

0106 biological sciences0301 basic medicineXyloseFurfural01 natural sciencesApplied Microbiology and BiotechnologyHydrolysateIndustrial Microbiology03 medical and health scienceschemistry.chemical_compoundAcetic acidBioenergy and BiofuelsYeasts010608 biotechnologyEnzymatic hydrolysisLigninFuraldehydeFood scienceCelluloseTriticumEthanolHydrolysisWheat strawGeneral MedicineStrawLipids030104 developmental biologychemistryBiofuelsFermentationFurfural productionBiodieselLignocelluloseBiotechnologyApplied Microbiology and Biotechnology
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Technological properties of Lactobacillus plantarum strains isolated from grape must fermentation

2016

Malolactic fermentation (MLF) is a secondary fermentation in wine that usually takes place during or at the end of alcoholic fermentation. Lactobacillus plantarum is able to conduct MLF (particularly under high pH conditions and in co-inoculation with yeasts) and some strains are commercially used as MLF starter cultures. Recent evidences suggest a further use of selected L. plantarum strains for the pre-alcoholic acidification of grape must. In this study, we have carried out an integrated (molecular, technological, and biotechnological) characterization of L. plantarum strains isolated from Apulian wines in order to combine the two protechnological features (MLF performances and must acid…

0301 basic medicine030106 microbiologySaccharomyces cerevisiaeMalatesWineSaccharomyces cerevisiaeEthanol fermentationMicrobiologyIndustrial Microbiology03 medical and health sciencesStarterLactobacillus plantarum; wine; Saccharomyces cerevisiae; starter cultures; co-inoculation.Malolactic fermentationVitisFood scienceSugarWinebiologyChemistryfood and beveragesHydrogen-Ion Concentrationbiology.organism_classificationFermentationFermentationLactobacillus plantarumLactobacillus plantarumFood ScienceFood Microbiology
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Evaluation of different conditions to enhance the performances of Lactobacillus pentosus OM13 during industrial production of Spanish-style table oli…

2017

The main objective was to set up a methodology to improve the high volume production of green table olives, cv. Nocellara del Belice. Lactobaccillus pentosus OM13 was applied during three different industrial processes of table olives as follows: trial one (IOP1) was subjected to an addition of lactic acid until a brine level of pH 7.0 was reached; trial two (IOP2) subjected to same addition of lactic acid as in trial one plus nutrient adjuvant; and trial three (IOP3) subjected to same addition of lactic acid as in trial one, but with the strain L. pentosus OM13 acclimatized in brine for 12 h before inoculation. These trials were compared against two untreated controls (spontaneously fermen…

0301 basic medicineAcclimatizationLactic acid bacteria Yeasts Nocellara del Belice table olives Starter culture Lactobacillus pentosus OM13 Acclimatization Nutrient adjuvant Lactic acid030106 microbiologyLactobacillus pentosusMicrobiologyAcclimatization03 medical and health scienceschemistry.chemical_compoundIndustrial MicrobiologyBriningOleaYeastsFood scienceLactic AcidAromabiologybusiness.industryProbioticsfood and beveragesSettore AGR/15 - Scienze E Tecnologie AlimentariHydrogen-Ion Concentrationbiology.organism_classificationLactobacillus pentosusBiotechnologyLactic acidSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeLactobacilluschemistryTasteFermentationFood MicrobiologyFermentationPediococcusSaltsbusinessLactobacillus plantarumSettore AGR/16 - Microbiologia AgrariaFood ScienceFood microbiology
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A Two-Component regulatory system with opposite effects on glycopeptide antibiotic biosynthesis and resistance

2020

AbstractThe glycopeptide A40926, produced by the actinomycete Nonomuraea gerenzanensis, is the precursor of dalbavancin, a second-generation glycopeptide antibiotic approved for clinical use in the USA and Europe in 2014 and 2015, respectively. The final product of the biosynthetic pathway is an O-acetylated form of A40926 (acA40926). Glycopeptide biosynthesis in N. gerenzanensis is dependent upon the dbv gene cluster that encodes, in addition to the two essential positive regulators Dbv3 and Dbv4, the putative members of a two-component signal transduction system, specifically the response regulator Dbv6 and the sensor kinase Dbv22. The aim of this work was to assign a role to these two ge…

0301 basic medicinemedicine.drug_class030106 microbiologylcsh:MedicineGlycopeptide antibioticIndustrial microbiologyArticle03 medical and health sciencesBacterial ProteinsTranscription (biology)Genes RegulatorGene clustermedicinelcsh:ScienceGeneRegulator geneRegulation of gene expressionMultidisciplinaryAntimicrobialsChemistrylcsh:RGene Expression Regulation BacterialGlycopeptideAnti-Bacterial AgentsBiosynthetic PathwaysCell biologyActinobacteriaResponse regulator030104 developmental biologyMultigene FamilyTwo component regulatory system glycopeptide A40926 actinomycete Nonomuraea gerenzanensislcsh:QTeicoplaninMicrobial geneticsScientific Reports
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Towards a microbial thermoelectric cell.

2013

Microbial growth is an exothermic process. Biotechnological industries produce large amounts of heat, usually considered an undesirable by-product. In this work, we report the construction and characterization of the first microbial thermoelectric cell (MTC), in which the metabolic heat produced by a thermally insulated microbial culture is partially converted into electricity through a thermoelectric device optimized for low ΔT values. A temperature of 41°C and net electric voltage of around 250–600 mV was achieved with 1.7 L baker’s yeast culture. This is the first time microbial metabolic energy has been converted into electricity with an ad hoc thermoelectric device. These results might…

Anatomy and PhysiologyBioelectric Energy SourcesExothermic processlcsh:MedicineSaccharomyces cerevisiaeBacterial growthEthanol fermentationMicrobiologyIndustrial MicrobiologyEngineeringElectricityIndustrial EngineeringThermoelectric effectBioenergyAerobic digestionProcess engineeringlcsh:ScienceBiologyMicrobial MetabolismMultidisciplinarybusiness.industryChemistrylcsh:RTemperatureMicrobial Growth and DevelopmentBiotechnologyEnergy and PowerProcess EngineeringBiofuelBiofuelsFermentationEarth SciencesFermentationlcsh:QAlternative EnergyElectricityPhysiological ProcessesEnergy MetabolismbusinessResearch ArticleBiotechnologyDevelopmental BiologyPLoS ONE
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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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Fluorescent probes to evaluate the physiological state and activity of microbial biocatalysts: A guide for prokaryotic and eukaryotic investigation

2008

International audience; Many fluorescent techniques are employed to evaluate the viability and activity of microbial cells used in biotechnology. These techniques are sometimes complex and the interpretation of results opened to misunderstanding. Moreover, new developments are constantly proposed especially concerning a more accurate evaluation of the state of the cells including eukaryotic microorganisms. This paper aims at presenting to biotechnologists unfamiliar with fluorescence the principles of these methods and the related possible pitfalls. It focuses on probes of the physical (integrity and fluidity) and energetical (intracellular pH and membrane potential) state of the cell membr…

Cell Membrane PermeabilityMembrane FluidityMESH : Microscopy FluorescenceMESH : Cell MembraneIntracellular pHMESH : Membrane FluidityBiologyApplied Microbiology and BiotechnologyMembrane PotentialsCell membraneIndustrial MicrobiologyMESH : Hydrogen-Ion ConcentrationYeastsGram-Negative BacteriamedicineMESH : Membrane PotentialsMESH : Fluorescent DyesFluorescent DyesMESH : YeastsMESH : Spectrometry FluorescenceCell Membrane[ SDV.BIO ] Life Sciences [q-bio]/BiotechnologyGeneral MedicineHydrogen-Ion ConcentrationMESH : Gram-Negative BacteriaMESH : Industrial MicrobiologyFluorescenceYeastSpectrometry Fluorescencemedicine.anatomical_structureMicroscopy FluorescenceBiochemistryMESH : Cell Membrane PermeabilityNucleic acidMolecular MedicineBiotechnology Journal
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Increasing the levels of 2-phenylethyl acetate in wine through the use of a mixed culture of Hanseniaspora osmophila and Saccharomyces cerevisiae

2009

The impact of mixed cultures of Hanseniaspora osmophila and Saccharomyces cerevisiae with different initial yeast ratios on wine composition has been examined. The mixed culture significantly affected sugar consumption, the main enological parameters and ester concentrations, with the exception of glycerol, isoamyl acetate and diethyl succinate levels. Remarkably, in wines obtained with mixed cultures the concentration of 2-phenylethyl acetate was approximately 3- to 9-fold greater than that produced by S. cerevisiae pure culture. Moreover sensory evaluation revealed a stronger fruity character in wines fermented with mixed cultures than in control wines. Independently of the mixed culture …

Colony Count MicrobialEthyl acetateIsoamyl acetateWineSaccharomyces cerevisiaeAcetatesBiologyMicrobiologyHanseniasporaIndustrial MicrobiologyAcetic acidchemistry.chemical_compoundSpecies SpecificityGlycerolHumansFood scienceWinemakingWinedigestive oral and skin physiologyfood and beveragesGeneral MedicineConsumer BehaviorPhenylethyl AlcoholCoculture TechniquesYeastchemistryTasteFermentationFood MicrobiologyFermentationFood ScienceInternational Journal of Food Microbiology
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Yeast Population Dynamics during the Fermentation and Biological Aging of Sherry Wines

2001

ABSTRACTMolecular and physiological analyses were used to study the evolution of the yeast population, from alcoholic fermentation to biological aging in the process of “fino” sherry wine making. The four races of “flor”Saccharomyces cerevisiae (beticus, cheresiensis, montuliensis, androuxii) exhibited identical restriction patterns for the region spanning the internal transcribed spacers 1 and 2 (ITS-1 and ITS-2) and the 5.8S rRNA gene, but this pattern was different, from those exhibited by non-florS. cerevisiaestrains. This flor-specific pattern was detected only after wines were fortified, never during alcoholic fermentation, and all the strains isolated from the velum exhibited the typ…

DNA BacterialRestriction MappingPopulationFlorWineSaccharomyces cerevisiaeEthanol fermentationBiologyDNA MitochondrialApplied Microbiology and BiotechnologyIndustrial MicrobiologyDNA Ribosomal SpacerBotanyFood scienceeducationEcosystemWineeducation.field_of_studyEcologyAging of winefood and beveragesPhysiology and BiotechnologyYeastRNA Ribosomal 5.8SYeast in winemakingKaryotypingFermentationFermentationPolymorphism Restriction Fragment LengthFood ScienceBiotechnologyApplied and Environmental Microbiology
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