Search results for "Actic acid"

showing 10 items of 660 documents

Saccharomyces cerevisiae-Oenococcus oeni interactions in wine: current knowledge and perspectives.

2003

Winemaking can be summarized as the biotransformation of must into wine, which is performed principally by Saccharomyces cerevisiae strains during the primary or alcoholic fermentation. A secondary fermentation, the so-called malolactic fermentation (MLF) is a biodeacidification that is often encouraged, since it improves wine stability and quality. Malolactic fermentation usually occurs either spontaneously or after inoculation with selected bacteria after alcoholic fermentation. The main organism responsible for MLF, the lactic acid bacterium Oenococcus oeni, develops in physicochemically harsh conditions, which may lead to MLF failure. Furthermore, yeast that ferment must before or toget…

WinebiologySaccharomyces cerevisiaePopulation DynamicsMalatesfood and beveragesWineGeneral MedicineSaccharomyces cerevisiaeEthanol fermentationbiology.organism_classificationMicrobiologyYeastGram-Positive CocciBiochemistryFermentationMalolactic fermentationFood MicrobiologyFermentationLactic AcidLeuconostocFood ScienceWinemakingOenococcus oeniInternational journal of food microbiology
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Biogenic amine production by lactic acid bacteria, acetic bacteria and yeast isolated from wine

2007

Abstract Biogenic amines are undesirable in all foods and beverages because if consumed at too high concentration, they may induce food-borne intoxications. The biogenic amine production by 155 strains of lactic acid bacteria, 40 strains of acetic bacteria and 36 strains of yeast isolated from wine were analysed in wine, grape must and synthetic media by HPLC. We did not observe biogenic amine production by acetic bacteria and yeast; however, we found production of histamine, tyramine, phenylethylamine and putrescine by LAB. A correlation of 100% was observed between biogenic amine production in synthetic medium and wine and between activity and presence of gene. With the results expose in …

Winechemistry.chemical_classificationCadaverineChemistrydigestive oral and skin physiologyfood and beveragesWine faultTyramineYeastLactic acidchemistry.chemical_compoundBiochemistryBiogenic amineMalolactic fermentationFood scienceFood ScienceBiotechnologyFood Control
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Stress Responses of Oenococcus oeni

2011

Oenococcus oeni is an alcohol-tolerant, acidophilic lactic acid bacterium responsible for malolactic fermention in wine. The stress responses of O. oeni have been studied at both the molecular and physiological levels. Genes encoding stress proteins mainly belong to the CtsR regulon. Other regulation mechanisms seem to coexist in O. oeni and may correspond to posttranscriptional regulation. Maintenance of the cell membrane integrity under stress conditions seems to be a prerequisite for survival in wine. The active cell response to protect membrane function under stress conditions requires changes in fatty acid composition and involves stress proteins. Various solute transporters and energy…

Winechemistry.chemical_compoundRegulonLactic acid bacteriumchemistrybiologyActive cellMalolactic fermentationCyclopropane fatty acidbiology.organism_classificationGeneOenococcus oeniCell biology
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Activation of wooden vats with selected lactic acid bacteria for the year-round production of traditional Vastedda-like cheese

2014

Vastedda is a pasta filata cheese made from raw ewes’ milk without the addition of starter cultures. Cheese production is carried out in wooden vats characterized by microbial biofilms hosting lactic acid bacteria (LAB) responsible for the acidification of the curds. Vastedda cheese was traditionally produced during the summer season, but it is currently produced throughout the year. In order to minimize production variability, several LAB were isolated from Vastedda PDO cheeses, characterized for their technological potential (Gaglio et al., 2014a) and selected to obtain the best strain combination for the production (Gaglio et al., 2014b). In this study, the multiple strain culture compos…

Wooden vat Cheese Biofilm Vastedda cheese Lactic acid bacteriaSettore AGR/16 - Microbiologia Agraria
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Research Regarding the Use of Wheat Biodiversity for Obtaining some Cereal-Based Fermented Mashes

2012

International audience; Cereal-based fermented beverages are an opportunity to include probiotics and fiber in human nutrition. Nowadays, increasing the interest for rediscovering the benefits, on scientific basis, of traditional fermented beverages based on cereals. Fermented mashes based on different cereal grist, namely Braga in Romanian, is a healthy and nutritious beverage, a source for new functional products with beneficial effects on human health. Physical-chemical and sensorial characteristics of these beverages depend on the ingredients and method of preparation. In this article was analyzed the influence of the five varieties of wheat on the main physical-chemical and sensorial c…

[CHIM.ANAL] Chemical Sciences/Analytical chemistry[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringmilletGeography Planning and Developmentcereal-fermented mashesManagement Monitoring Policy and LawTriticum speltachemistry.chemical_compound[CHIM.GENI]Chemical Sciences/Chemical engineering[CHIM.ANAL]Chemical Sciences/Analytical chemistrywheat[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringFood scienceCultivarSugarMathematics2. Zero hungerPanicum miliaceumbiology[CHIM.GENI] Chemical Sciences/Chemical engineeringlactic acidbarleybiology.organism_classificationDisc millLactic acidHuman nutritionAgronomychemistryFermentationBulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca. Agriculture
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Study of biogenic amines metabolism in wine lactic acid bacteria

2011

Biogenic amines are indesirable compounds found in fermented products like wine. Lactic acid bacteria from wine, including Oenococcus oeni, the main actor of malolactic fermentation, are able to produce these molecules from nitrogenous precursors. In order to limited biogenic amines accumulation, it is necessary to understand the role of this production by strains responsible for the synthesis of these metabolites in food. That is why the European BiamFood project was put in place. Along my thesis, molecular tools were developed in order to mutate O. oeni genes (encoding decarboxylases), and to express genes of interest. Genetic clusters hdc from L. higardii and odc from O. oeni, responsibl…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesBiogenic aminesAmines biogènes[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionWine[SDV.AEN] Life Sciences [q-bio]/Food and NutritionBactéries lactiquesSuicide vectorsVinLactic acid bacteriaVecteurs suicidesExpression hétérologueHeterologous expressionOenococcus oeniPeptides[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciences
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Screening of lactic acid bacteria for their use as aromatic starters during fermentation of vegetables

2020

Lactic acid bacteria (LAB) have good growth capacities on various food matrices and produce very diverse enzymatic activities which are notably capable of positively modifying the organoleptic properties of fermented foods. Therefore, the selection of the LAB starters possessing good metabolic abilities and interesting enzymatic activities towards the plant matrix could improve the aroma profiles of fermented foods. The main objective of this study was to enhance the aroma profiles of fermented tomatoes by using the biotechnological pathway. To achieve this, firstly, 200 LAB isolated from Cambodian and Vietnamese fermented foods were screened for their β-glucosidase activity and duplicate i…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesBactéries lactiques[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesTomatePrécurseurs d'arômes.Lactic acid bacteriaVolatile compoundsFood fermentationComposés volatilsAroma precursorsTomatoFermentation alimentaireEnzymes
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Effect of oxidoreduction potential on aroma biosynthesis by lactic acid bacteria in nonfat yogurt

2011

 ; The aim of this study was to investigate the effect of oxidoreduction potential (Eh) on the biosynthesis of aroma compounds by lactic acid bacteria in non-fat yogurt. The study was done with yogurts fermented by Lactobacillus bulgaricus and Streptococcus thermophilus. The Eh was modified by the application of different gaseous conditions (air, nitrogen, and nitrogen/hydrogen). Acetaldehyde, dimethyl sulfide, diacetyl, and pentane-2,3-dione, as the major endogenous odorant compounds of yogurt, were chosen as tracers for the biosynthesis of aroma compounds by lactic acid bacteria. Oxidative conditions favored the production of acetaldehyde, dimethyl sulfide, and diketones (diacetyl and pen…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesStreptococcus thermophilusOXIDOREDUCTION POTENTIALBACTERIAL METABOLISMVOLATILE COMPOUNDchemistry.chemical_compound0404 agricultural biotechnologyLACTIC ACID BACTERIALactobacillusGeneticsAnimalsStreptococcus thermophilusLactic AcidFood science[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesAromabiology0402 animal and dairy scienceAcetaldehydefood and beverages04 agricultural and veterinary sciencesYogurtbiology.organism_classificationDietary Fats040401 food science040201 dairy & animal scienceDiacetylLactic acidSmellLactobacillusBiochemistrychemistryFermentationFood MicrobiologyAnimal Science and ZoologyFermentationOxidation-ReductionBacteriaFood Science
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Discovering lactic acid bacteria by genomics

2002

International audience; This review summarizes a collection of lactic acid bacteria that are now undergoing genomic sequencing and analysis. Summaries are presented on twenty different species, with each overview discussing the organisms fundamental and practical significance, environmental habitat, and its role in fermentation, bioprocessing, or probiotics. For those projects where genome sequence data were available by March 2002, summaries include a listing of key statistics and interesting genomic features. These efforts will revolutionize our molecular view of Gram-positive bacteria, as up to 15 genomes from the low GC content lactic acid bacteria are expected to be available in the pu…

[SDV]Life Sciences [q-bio]Microbiology03 medical and health sciencesMicrobiologieLactococcusLactic acid bacteriagenomicsBrevibacteriumPediococcusOenococcusVLAG030304 developmental biology2. Zero hunger0303 health sciences[ SDV ] Life Sciences [q-bio]030306 microbiologyfoodPropionibacteriumStreptococcushealthGenomics15. Life on landGram-positive bacteriaLactococcus lactis[SDV] Life Sciences [q-bio]lactic acid bacterialactic acid bacteriagenomicsLactobacillusFoodHealthFermentationBifidobacteriumLeuconostoc
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Bioaccessibility Study of Aflatoxin B1 and Ochratoxin A in Bread Enriched with Fermented Milk Whey and/or Pumpkin

2021

The presence of mycotoxins in cereals and cereal products remains a significant issue. The use of natural ingredients such as pumpkin and whey, which contain bioactive compounds, could be a strategy to reduce the use of conventional chemical preservatives. The aim of the present work was to study the bioaccessibility of aflatoxin B1 (AFB1) and ochratoxin (OTA) in bread, as well as to evaluate the effect of milk whey (with and without lactic acid bacteria fermentation) and pumpkin on reducing mycotoxins bioaccessibility. Different bread typologies were prepared and subjected to an in vitro digestion model. Gastric and intestinal extracts were analyzed by HPLC–MS/qTOF and mycotoxins bio…

animal structuresHealth Toxicology and Mutagenesisdigestive oral and skin physiologybreadwheyRfood and beveragesToxicologyBacterisbioaccessibilityCompostos orgànics Síntesifluids and secretionsaflatoxin B1pumpkinMedicinebioaccessibility; aflatoxin B1; ochratoxin A; bread; pumpkin; whey; lactic acid bacteriaochratoxin AProductes químics Efectes fisiològicsToxins; Volume 14; Issue 1; Pages: 6
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