0000000000303421

AUTHOR

M. Bensoussan

showing 5 related works from this author

Influence of temperature, copper and CO2on spore counts and geosmin production byPenicillium expansum

2012

Background and Aim: Musts and wines produced from rotten grapes often have an earthy/musty odour, with geosmin the responsible compound. Penicillium expansum is considered a potential source of geosmin in rotten grapes from vineyards treated with copper-based fungicides. Methods and Results: The laboratory study assessed the influence of temperature (10‐30°C), copper concentration (0‐76.50 mg/L) and CO 2 in the headspace (0.03‐3%) on the spore count and the production of geosmin by P. expansum according to a Doehlert design. The spore count and the production of geosmin (ng/mg biomass) were significantly correlated (r = 0.78). Copper had no significant effect on the spore count but was the …

0303 health sciencesfood.ingredientbiology030306 microbiologyChemistrychemistry.chemical_elementHorticulturebiology.organism_classificationSpore CountCopperGeosminSporeFungicide03 medical and health scienceschemistry.chemical_compoundfoodBotanyAgarFood sciencePenicillium expansum030304 developmental biologyHigh copperAustralian Journal of Grape and Wine Research
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Unsaturated fatty acid bioconversion by apple pomace enzyme system. Factors influencing the production of aroma compounds

1996

Productions of volatile compounds (hexanal and 2,4-decadienal) obtained from polyunsaturated fatty acids by action of specific apple pomace enzyme system were quantitatively improved by increasing substrate and enzyme concentrations in the reaction medium. The importance of an exogenous supply of oxygen during bioconversion was also shown. Some physico-chemical factors involved in the pomace enzyme system expression were screened. A temperature of 25°C was favourable to the bioconversion. The control of alkaline or acidic conditions in the reaction medium may orientate the reaction preferentially to the production of one or other aldehyde.

chemistry.chemical_classificationbiologyChemistryBioconversionPomaceSubstrate (chemistry)General Medicinebiology.organism_classificationHexanalAnalytical Chemistrychemistry.chemical_compoundBiotransformationOrganic chemistryFood scienceUnsaturated fatty acidAromaFood SciencePolyunsaturated fatty acidFood Chemistry
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Growth characteristics of Aspergillus chevalieri and other fungi from under-coating of chocolate truffles

1997

Growth characteristics of fungi, which occasionally affected chocolate truffles, have been studied, using moulded and non-moulded samples. A whitish mycelial growth, located at the filling-coating interface is identified as Eurotium/Aspergillus chevalieri. The spores of other xerophilic molds (Aspergillus fumigatus, A. penicilloides and Penicillium verrucosum) were also found at the filling-coating interface. The water activity of chocolate coating was low enough to prevent fungal growth on the external surface of the truffles. However, the water activity of the filling, due to presence of cream, is sufficient enough to allow the growth of xerophilic moulds. The data on growth characteristi…

Aspergillus chevalieriFungal growthWater activitybiologyChemistryengineering.materialbiology.organism_classificationAspergillus fumigatusSporeCoatingBotanyengineeringPenicillium verrucosumFood scienceMycelium
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Solid-State Fermentations of the Genus Aspergillus

1994

For the majority of filamentous fungal species, solid-state media are the natural life media. Growth can occur on the surface or within the whole substrate, depending on the porosity. Industrial solid-state fermentations have been developed largely in traditional food industries such as cheese, Oriental fermentations, fermented vegetables, meat, and other products, and in modern biotechnological industries such as antibiotics and enzymes. At the industrial scale, the latter fermentations allow for a decrease in the drying costs of the final products.

AspergillusbiologyWater activityChemistryAspergillus nigerIndustrial scaleSolid-statefood and beveragesFermentationNatural lifeFood scienceSubstrate (biology)biology.organism_classification
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The diversity of the population of Botrytis cinerea collected from french vineyards

2000

[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio]FLUX DE GENE[SDE]Environmental SciencesRADP
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