6533b834fe1ef96bd129e276
RESEARCH PRODUCT
Modelling the effect of ascorbic acid, sodium metabisulphite and sodium chloride on the kinetic responses of lactic acid bacteria and yeasts in table olive storage using a specifically implemented Quasi-chemical primary model
Francisco Noé Arroyo-lópezAntonio Garrido-fernándezR. EchevarriaJoaquín Bautista-gallegosubject
Food HandlingTable oliveSodiumColony Count MicrobialQuasi-chemical modelchemistry.chemical_elementAscorbic AcidSodium ChlorideModels BiologicalMicrobiologychemistry.chemical_compoundOleaYeastsLactic acid bacteriaSulfitesPrimary modellingFood sciencebiologyFood preservationGeneral MedicineSodium metabisulfiteLactobacillaceaebiology.organism_classificationAscorbic acidYeastLactic acidchemistryBiochemistryLactobacillaceaeFruitFermentationFood MicrobiologyFermentationFood Sciencedescription
he goal of this work was to apply the Quasi-chemical primary model (a system of four ordinary differential equations that derives from a hypothetical four-step chemical mechanism involving an antagonistic metabolite) in the study of the evolution of yeast and lactic acid bacteria populations during the storage of Manzanilla–Aloreña table olives subjected to different mixtures of ascorbic acid, sodium metabisulphite and NaCl. Firstly, the Quasi-chemical model was applied to microbial count data to estimate the growth–decay biological parameters. The model accurately described the evolution of both populations during storage, providing detailed information on the microbial behaviour. Secondly, these parameters were used as responses and analysed according to a mixture design experiment (secondary model). The contour lines of the corresponding response surfaces clearly disclosed the relationships between growth and environmental conditions, showing the stimulating and inhibitory effect of ascorbic acid and sodium metabisulphite, respectively, on both populations of microorganisms. This work opens new possibilities for the potential use of the Quasi-chemical primary model in the study of table olive fermentations.
year | journal | country | edition | language |
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2010-04-15 | International Journal of Food Microbiology |