Search results for " Lactic Acid Bacteria"

showing 10 items of 53 documents

Valorisation of Dairy Wastes Through Kefir Grain Production

2019

The main aim of this work was to investigate on kefir grains (KGs) increase using different dairy by-products. To this purpose, whey and deproteinized whey from cow, goat and sheep milk were compared to the pasteurized milk of the corresponding animal species. Each substrate was inoculated with 3% (w/v) of KGs cultivated in ultra-high temperature cow milk and evalu- ated for pH decrease, total titratable acidity increase and development of lactic acid bacteria (LAB) and yeasts released in the matrices after 24 h incubation at three different temperatures (20, 25 and 30 °C). The genotypic characterization of the dominating microbial populations resulted in the identification of two LAB belon…

0106 biological sciencesEnvironmental Engineering020209 energyDairy wastes Kefir grains Lactic acid bacteria Milk Whey YeastsPasteurizationTitratable acid02 engineering and technology01 natural scienceslaw.inventionchemistry.chemical_compoundSettore AGR/17 - Zootecnica Generale E Miglioramento Geneticofluids and secretionsKluyveromyces marxianuslaw010608 biotechnology0202 electrical engineering electronic engineering information engineeringFood scienceSheep milkWaste Management and DisposalbiologyRenewable Energy Sustainability and the EnvironmentLactococcus lactisfood and beveragesbiology.organism_classificationLactic acidchemistryLeuconostoc mesenteroidesFermentationSettore AGR/16 - Microbiologia Agraria
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Lactic Acid Bacteria Isolation from Spontaneous Sourdough and Their Characterization Including Antimicrobial and Antifungal Properties Evaluation

2019

This research effort aimed at isolating and phenotypically characterizing lactic acid bacteria (LAB) isolates from a spontaneous rye sourdough manufactured following traditional protocols, as well as at evaluating their antimicrobial and antifungal properties as key features for future industrial applications. Thirteen LAB strains of potential industrial interest were isolated and identified to species-level via PCR. Most of the sourdough isolates showed versatile carbohydrate metabolisms. The Leuconostoc mesenteroides No. 242 and Lactobacillus brevis No. 173 demonstrated to be gas producers

0106 biological sciencesMicrobiology (medical)Pediococcus</i>Lactobacillus caseiLactobacillus paracasei<i>Lactobacillus01 natural sciencesMicrobiologyArticleinhibition of bacterial pathogens0404 agricultural biotechnology010608 biotechnologyVirologyLactobacillusLeuconostoc<i>pediococcus</i>carbohydrate metabolismFood sciencePediococcus<i>lactobacillus</i>lcsh:QH301-705.5antimicrobial activitybiologyLactobacillus brevisantifungal activityfood and beverages04 agricultural and veterinary sciencesbiology.organism_classificationAntimicrobial040401 food sciencelactic acid bacteriaLactobacilluslcsh:Biology (General)<i>leuconostoc</i>spontaneous sourdoughPediococcusspontaneous sourdough ; lactic acid bacteria ; Lactobacillus ; Leuconostoc ; Pediococcus ; antimicrobial activity ; antifungal activity ; inhibition of bacterial pathogens ; carbohydrate metabolismLactobacillus plantarumLeuconostocMicroorganisms
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Potential of an exploitation of acid-tolerant antimicrobial microorganisms evolving enzyme systems for the utilization of dairy by-products and ligno…

2016

Introduction Bioproduction of optically pure lactic acid (LA) has roused interest in the recent years due to its potential application in a wide range of fields, and there is a significant interest to further development of sustainable and cost-effective process. However, the efficient utilization of agro-industrial wastes for LA production still causes considerable challenges. The biotechnological LA production within the targeted cost still required the development of high-performance LA-producing microorganisms and the lowering of the costs of raw materials and fermentation process. Cheap biomass, such as starchy and cellulosic agricultural residues or by-products from the food industry,…

0106 biological sciencesOpinionHistologyMicroorganismcheese whey ; lignocellulosic substrate ; lactic acid bacteria ; enzyme activities ; lactic acid production ; fermentation processBiomedical EngineeringLignocellulosic biomassBioengineering01 natural sciences7. Clean energychemistry.chemical_compoundcheese whey010608 biotechnologyFood sciencelignocellulosic substrate2. Zero hungerchemistry.chemical_classification010405 organic chemistrybusiness.industryBioengineering and Biotechnologyfood and beveragesAntimicrobialfermentation process0104 chemical sciencesBiotechnologyLactic acidlactic acid bacteriaEnzymechemistryenzyme activities13. Climate actionFermentationlactic acid productionbusinessAcid tolerantBiotechnology
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Changes of bioactive compounds in barley industry by‐products during submerged and solid state fermentation with antimicrobial Pediococcus acidilacti…

2019

Abstract In this study, changes of bioactive compounds (crude protein (CP), crude fat (CF), dietary fiber (DF), fatty acids (FAs), free amino acids (FAAs), phenolic compounds (PCs), biogenic amines (BAs), lignans, and alkylresorcinols) in barley industry by‐products (BB) during submerged and solid state fermentation (SSF) with Pediococcus acidilactici were analyzed. It was established that both fermentation conditions reduce the CP and CF content in BB (by 25.8% and 35.9%, respectively) and increase DF content (on average by 25.0%). Fermentation increases the oleic, arachidic, eicosadienoic, behenic, and lignoceric FA in BB samples. The highest total BA content was found in untreated sample…

0106 biological scienceslcsh:TX341-64101 natural sciences0404 agricultural biotechnologyAlkylresorcinol010608 biotechnologyby‐productsFood sciencePediococcusby-productsbarley ; bioactive compounds ; by-products ; lactic acid bacteria ; PediococcusOriginal Researchbioactive compoundsStrain (chemistry)biologyChemistryPediococcus acidilacticifood and beveragesbarley04 agricultural and veterinary sciencesbiology.organism_classificationAntimicrobial040401 food sciencelactic acid bacteriaSolid-state fermentationby‐products ; bioactive compounds ; lactic acid bacteria ; Pediococcus ; barleyFermentationDietary fiberPediococcuslcsh:Nutrition. Foods and food supplyFood ScienceFood Science & Nutrition
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Valorization of indigenous dairy cattle breed through salami production

2016

The aim of the research was to produce salami manufactured with meat of three different commercial categories of bovine breed: cow on retirement, beef and young bull. A total of six experimental productions, at small-scale plant, were carried out with and without starter culture inoculums. The evolution of physico-chemical parameters in all trials followed the trend already registered for other fermented meat products. Several LAB species were found during process with different levels of species diversity and frequency of isolation among inoculated (mainly Pediococcus pentosaceus and Staphylococcus xylosus) and uninoculated (mainly Enterococcus devriesei, Lactobacillus curvatus and Lactoba…

0301 basic medicineAdultMaleSettore AGR/19 - Zootecnica SpecialeMeatCinisara breed; Lactic acid bacteria; Meat fermentation; Salami; Starter culture; Adult; Animals; Bacteria; Cattle; Female; Food Handling; Humans; Male; Meat; Meat Products; Breeding; Fermentation; Food Microbiology; Food ScienceFood Handling030106 microbiologySalamiBreedingSensory analysis03 medical and health sciencesSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoStarterLactic acid bacteriaAnimalsHumansFood scienceDairy cattleMeat ProductbiologyBacteriaInoculationMeat fermentationAnimal0402 animal and dairy scienceStaphylococcus xylosusfood and beveragesRipening04 agricultural and veterinary sciencesSettore AGR/15 - Scienze E Tecnologie Alimentaribiology.organism_classification040201 dairy & animal scienceBreedLactobacillus sakeiMeat ProductsStarter cultureFermentationFood MicrobiologyCattleFemaleCinisara breedHumanFood ScienceSettore AGR/16 - Microbiologia Agraria
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Starter cultures as biocontrol strategy to prevent Brettanomyces bruxellensis proliferation in wine

2017

Brettanomyces bruxellensis is a common and significant wine spoilage microorganism. B. bruxellensis strains generally detain the molecular basis to produce compounds that are detrimental for the organoleptic quality of the wine, including some classes of volatile phenols that derive from the sequential bioconversion of specific hydroxycinnamic acids such as ferulate and p-coumarate. Although B. bruxellensis can be detected at any stage of the winemaking process, it is typically isolated at the end of the alcoholic fermentation (AF), before the staring of the spontaneous malolactic fermentation (MLF) or during barrel aging. For this reason, the endemic diffusion of B. bruxellensis leads to c…

0301 basic medicineCoumaric Acids030106 microbiologyFood spoilageOrganolepticMalatesBrettanomyces bruxellensisBrettanomycesWineFood ContaminationSaccharomyces cerevisiaeEthanol fermentationApplied Microbiology and Biotechnology03 medical and health sciencesSaccharomycesmalolactic fermentation (MLF)PhenolsLactobacillalesMalolactic fermentationLactic acid bacteriaVitisFood scienceWinemakingWinebiologyBrettanomyces bruxellensis; Wine; Saccharomyces; malolactic fermentation (MLF); Lactic acid bacteriadigestive oral and skin physiologyfood and beveragesGeneral MedicineMini-Reviewbiology.organism_classificationYeastBrettanomyces bruxellensisBiological Control AgentsAlcoholsFermentationFood MicrobiologyMLFSettore AGR/16 - Microbiologia AgrariaBiotechnologyApplied Microbiology and Biotechnology
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A Metagenomic-Based Approach for the Characterization of Bacterial Diversity Associated with Spontaneous Malolactic Fermentations in Wine

2019

This study reports the first application of a next generation sequencing (NGS) analysis. The analysis was designed to monitor the effect of the management of microbial resources associated with alcoholic fermentation on spontaneous malolactic consortium. Together with the analysis of 16S rRNA genes from the metagenome, we monitored the principal parameters linked to MLF (e.g., malic and lactic acid concentration, pH). We encompass seven dissimilar concrete practices to manage microorganisms associated with alcoholic fermentation: Un-inoculated must (UM), pied-de-cuve (PdC), Saccharomyces cerevisiae (SC), S. cerevisiae and Torulaspora delbrueckii co-inoculated and sequentially inoculated, as…

0301 basic medicineEthanol fermentation<i>Lactobacillus plantarum</i>16S rRNA metataxonomy; lactic acid bacteria; Lactobacillus plantarum; malolactic consortium; malolactic fermentation; Metschnikowia pulcherrima; Oenococcus oeni; Saccharomyces cerevisiae; Torulaspora delbrueckii; wine<i>Oenococcus oeni</i>malolactic consortiumlcsh:Chemistrychemistry.chemical_compoundLactobacillalesRNA Ribosomal 16SFood sciencelcsh:QH301-705.5SpectroscopyOenococcus oeniCommunicationfood and beverages16S rRNA metataxonomyGeneral MedicineMetschnikowia pulcherrimaComputer Science Applicationsmalolactic fermentation030106 microbiologyTorulaspora delbrueckiiSaccharomyces cerevisiaeBiologyCatalysisInorganic Chemistry<i>Saccharomyces cerevisiae</i>03 medical and health sciencesTorulaspora delbrueckiiMalolactic fermentationPhysical and Theoretical ChemistrywineMolecular BiologyOrganic Chemistry<i>Metschnikowia pulcherrima</i>Torulasporabiology.organism_classificationlactic acid bacteria030104 developmental biologychemistrylcsh:Biology (General)lcsh:QD1-999FermentationMetagenomeFermentationMalic acidAcetobacterOenococcus oeniMetschnikowia pulcherrimaSettore AGR/16 - Microbiologia AgrariaLactobacillus plantarum<i>Torulaspora delbrueckii</i>International Journal of Molecular Sciences
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Identification of Predominant Lactic Acid Bacteria and Yeasts of Turkish Sourdoughs and Selection of Starter Cultures for Liquid Sourdough Production…

2016

WOS: 000375613200005

0301 basic medicineGram-positive bacteria030106 microbiologyWheat flourTurkish sourdoughs lactic acid bacteria yeasts liquid sourdoughyeastsTitratable acidlcsh:TX341-641Biology03 medical and health scienceschemistry.chemical_compoundStarterPlant scienceFood scienceNutrition and Dieteticsfood and beveragesliquid sourdoughTurkish sourdoughsbiology.organism_classificationLactic acidlactic acid bacteria030104 developmental biologychemistrybacterialcsh:Nutrition. Foods and food supplyBacteriaFood ScienceSettore AGR/16 - Microbiologia AgrariaPolish Journal of Food and Nutrition Sciences
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A large factory-scale application of selected autochthonous lactic acid bacteria for PDO Pecorino Siciliano cheese production

2016

The main hypothesis of this study was that the autochthonous lactic acid bacteria (LAB) selected for their dairy traits are able to stabilize the production of PDO (Protected Denomination of Origin) Pecorino Siciliano cheese, preserving its typicality. The experimental plan included the application of a multi-strain lactic acid bacteria (LAB) culture, composed of starter (Lactococcus lactis subsp. lactis CAG4 and CAG37) and non starter (Enterococcus faecalis PSL71, Lactococcus garviae PSL67 and Streptococcus macedonicus PSL72) strains, during the traditional production of cheese at large scale level in six factories located in different areas of Sicily. The cheese making processes were foll…

0301 basic medicineRAPD-PCRLactococcus garviaeStarter lactic acid bacteria030106 microbiologyNon starter lactic acid bacteria; RAPD-PCR; Starter lactic acid bacteria; Traditional cheese; TypicalityColony Count MicrobialNon starter lactic acid bacteriaBiologyMicrobiologyEnterococcus faecalis03 medical and health scienceschemistry.chemical_compoundStarterCheeseRNA Ribosomal 16SEnterococcus faecalisAnimalsSettore AGR/18 - Nutrizione E Alimentazione AnimaleFood scienceStreptococcus macedonicusNon starter lactic acid bacteria RAPD-PCR Starter lactic acid bacteria Traditional cheese TypicalityTypicalityLactococcus lactisStreptococcusfood and beveragesTraditional cheeseHydrogen-Ion Concentrationbiology.organism_classificationRandom Amplified Polymorphic DNA TechniqueRAPDLactic acidLactococcus lactisLactobacillusMilkchemistryLactobacillaceaeFermentationFood MicrobiologyBacteriaNon starter lactic acid bacteria RAPD-PCR Starter lactic acid bacteria Traditional cheese TypicalitySettore AGR/16 - Microbiologia AgrariaFood Science
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Formation and Characterization of Early Bacterial Biofilms on Different Wood Typologies Applied in Dairy Production

2018

ABSTRACT The main hypothesis of this work was that Sicilian forestry resources are suitable for the production of equipment to be used in cheese making and indigenous milk lactic acid bacteria (LAB) are able to develop stable biofilms providing starter and nonstarter cultures necessary for curd fermentation and cheese ripening, respectively. Hence, the present work was carried out with deproteinized whey to evaluate LAB biofilm formation on different woods derived from tree species grown in Sicily. Microbiological and scanning electron microscopy analyses showed minimal differences in microbial levels and compositions for the neoformed biofilms. The specific investigation of Salmonella spp.…

0301 basic medicineSettore AGR/05 - Assestamento Forestale E SelvicolturaLactobacillus fermentumLactococcus030106 microbiologyColony Count MicrobialCheese ripeningApplied Microbiology and BiotechnologyBacterial AdhesionTreesMicrobiology03 medical and health sciencesCheeseLactobacillalesSalmonellaLactobacillusAnimalsFood scienceEcologybiologyLactococcus lactisBiofilmfood and beveragesStreptococcusKEYWORDS biofilm formation lactic acid bacteria technological screening tree species wooden vatsbiology.organism_classificationListeria monocytogenesWoodDairyingMilk030104 developmental biologyEnterococcusBiofilmsFermentationFood MicrobiologyBacteriaSettore AGR/16 - Microbiologia AgrariaFood ScienceBiotechnologyApplied and Environmental Microbiology
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