Search results for "Toxigenic fungi"

showing 6 items of 6 documents

Antifungal and antimycotoxigenic activity of hydrolyzed goat whey on Penicillium spp: An application as biopreservation agent in pita bread

2020

Abstract Whey is a by-product of the cheese industry, yet it contains proteins that have a high nutritional value and are an important source of antifungal peptides. Food deterioration caused by toxigenic fungi is one of the challenges of food safety. In this context, trypsin was used to hydrolyse goat milk whey at 37. The resultant peptides were characterised by LC–ESI–TOF-MS. Antifungal activity of the goat milk whey hydrolysate (HGW) was determined against 10 toxigenic fungi from the genus Penicillium, in solid and liquid media. Furthermore, HGW was used as an ingredient for bread elaboration. Bread elaborated with HGW and inoculated with toxigenic fungi was included in a shelf-life stud…

0106 biological sciencesContext (language use)01 natural sciencesHydrolysateAntifungal peptideBioactive peptideMinimum inhibitory concentrationchemistry.chemical_compoundIngredient0404 agricultural biotechnology010608 biotechnologyWheyFood scienceMycotoxinchemistry.chemical_classificationbiologyShelf-lifedigestive oral and skin physiologyfood and beverages04 agricultural and veterinary sciencesBiopreservationbiology.organism_classificationToxigenic fungi040401 food sciencechemistryPenicilliumPropionateFood Science
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Assessment of allyl isothiocyanate as a fumigant to avoid mycotoxin production during corn storage

2016

The occurrence of fungi and mycotoxins in foods modify sensorial properties and represents a health risk for consumers, and the use of natural antimicrobials may be an alternative to reduce this problem. The objective of this study was evaluate the potential of allyl isothiocyanate (AITC) in inhibit the production of mycotoxins in corn kernels by Aspergillus parasticus, Fusarium tricinctum, Fusarium verticillioides, Alternaria alternata and Gibberela zeae. Kernels were treated with gaseous AITC at 50, 100 or 500 μL/L during 48 h in hermetic flasks. Then, flasks were opened for 24 h and 100 g of corn were inoculated with 105 conidia/g of either fungal species. Flasks were kept at 23 °…

2. Zero hunger0301 basic medicineFusariumAspergillusbiology030106 microbiologyAntimicrobialbiology.organism_classificationAllyl isothiocyanateAlternaria alternataConidiumEssential oil Mycotoxigenic fungi Stored grains Natural compounds03 medical and health sciencesLaboratory flaskchemistry.chemical_compound030104 developmental biologychemistryBotanyFood scienceMycotoxinFood Science
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Mycotoxin Profile and Phylogeny of Pathogenic Alternaria Species Isolated from Symptomatic Tomato Plants in Lebanon

2021

The tomato is one of the most consumed agri-food products in Lebanon. Several fungal pathogens, including Alternaria species, can infect tomato plants during the whole growing cycle. Alternaria infections cause severe production and economic losses in field and during storage. In addition, Alternaria species represent a serious toxicological risk since they are able to produce a wide range of mycotoxins, associated with different toxic activities on human and animal health. Several Alternaria species were detected on tomatoes, among which the most important are A. solani, A. alternata, and A. arborescens. A set of 49 Alternaria strains isolated from leaves and stems of diseased tomato plant…

Alternaria arborescens0106 biological sciencesVeterinary medicineHealth Toxicology and MutagenesisAlternariolAlternaria mali morpho-speciesmultilocus gene sequencingToxicology<i>Alternaria mali</i> morpho-species01 natural sciencesAlternaria alternataArticletoxigenic fungi03 medical and health scienceschemistry.chemical_compoundSolanum lycopersicumPhylogeneticsotorhinolaryngologic diseasesTenuazonic acidGenetic variabilityLebanonMycotoxinPhylogenyPlant Diseases030304 developmental biology0303 health sciencesbiologyStrain (biology)RAlternariafood and beveragesMycotoxins<i>Alternaria alternata</i>biology.organism_classificationAlternariachemistryFruit<i>Alternaria arborescens</i>Alternaria alternataMedicine010606 plant biology & botanyToxins
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Inhibitory effect of sweet whey fermented by Lactobacillus plantarum strains against fungal growth: A potential application as an antifungal agent

2020

Abstract: The presence of mycotoxigenic fungi such as Aspergillus, Penicillium, and Fusarium genera represents a problem in food preservation and consequently, its spoilage. During the fermentation process with lactic acid bacteria, a range of secondary metabolites associated with beneficial health effects were released. In the present study, goat whey fermented by Lactobacillus plantarum (CECT 220, 221, 223, and 748) species has shown a satisfactory inhibitory effect against 28 fungi, showing for certain species of Fusarium genus and also, for Aspergillus steynii, a value of minimum inhibitory concentration until 1.95 g/L. In addition, phenyllactic acid was identified in each sample of fer…

FusariumPreservativeAntifungal Agentsfermentation proceFood spoilageMicrobial Sensitivity TestsShelf lifeFusariumWheymycotoxigenic fungiAnimalsFood sciencephenyllactic acidbiologyChemistryGoatsantifungal activitydigestive oral and skin physiologyPenicilliumFood preservationfood and beveragesbiology.organism_classificationAspergillusWhey ProteinsFermentationPenicilliumFermentationLactobacillus plantarumLactobacillus plantarumFood ScienceJournal of Food Science
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Predictive assessment of ochratoxin A accumulation in grape juice based-medium by Aspergillus carbonarius using neural networks

2009

Aims: To study the ability of multi-layer perceptron artificial neural networks (MLP-ANN) and radial-basis function networks (RBFNs) to predict ochratoxin A (OTA) concentration over time in grape-based cultures of Aspergillus carbonarius under different conditions of temperature, water activity (a(w)) and sub-inhibitory doses of the fungicide carbendazim. Methods and Results: A strain of A. carbonarius was cultured in a red grape juice-based medium. The input variables to the network were temperature (20-28 degrees C), a(w) (0 center dot 94-0 center dot 98), carbendazim level (0-450 ng ml(-1)) and time (3-15 days after the lag phase). The output of the ANNs was OTA level determined by liqui…

Ochratoxin AWater activityMycotoxigenic fungiAspergillus carbonariusModels BiologicalApplied Microbiology and BiotechnologyGrape-based productsTECNOLOGIA ELECTRONICAchemistry.chemical_compoundPredictive mycologyPredictive Value of TestsComputer SimulationVitisFood scienceMycotoxinOchratoxinArtificial neural networkbiologyCarbendazimAspergillus nigerTemperatureWaterOchratoxin AGeneral MedicineMycotoxinsbiology.organism_classificationOchratoxinsCulture MediaFungicides IndustrialFungicideAspergilluschemistryFood MicrobiologyBenzimidazolesCarbamatesNeural Networks ComputerNeural networksBiotechnology
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Application of White Mustard Bran and Flour on Bread as Natural Preservative Agents.

2021

In this study, the antifungal activity of white mustard bran (MB), a by-product of mustard (Sinapis alba) milling, and white mustard seed flour (MF) was tested against mycotoxigenic fungi in the agar diffusion method. The results obtained were posteriorly confirmed in a quantitative test, determining the minimum concentration of extract that inhibits the fungal growth (MIC) and the minimum concentration with fungicidal activity (MFC). Since MF demonstrated no antifungal activity, the MB was stored under different temperature conditions and storage time to determine its antifungal stability. Finally, an in situ assay was carried out, applying the MB as a natural ingredient into the dough to …

PreservativeHealth (social science)food.ingredientPlant Sciencelcsh:Chemical technologyShelf life01 natural sciencesHealth Professions (miscellaneous)MicrobiologyArticleIngredientchemistry.chemical_compound0404 agricultural biotechnologyfoodmustard branmycotoxinsby-productmycotoxigenic fungilcsh:TP1-1185Food scienceAgar diffusion testbakery productsbiologyBran010401 analytical chemistryfood and beverages04 agricultural and veterinary sciencesMustard seedbiology.organism_classification040401 food sciencemustard flour0104 chemical sciencesshelf-lifefood safetychemistrySodium propionateSinapis albaWhite mustardantifungal<i>Sinapis alba</i>Food ScienceFoods (Basel, Switzerland)
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