Search results for "Spores"

showing 10 items of 96 documents

Inoculation of airborne conidia of Penicillium chrysogenum on the surface of a solid medium

2016

International audience; To reproduce a fungal contamination of food products by airborne conidia, a method to inoculate a few number (in the range 1-9) of conidia on the surface of agar media was developed. This technique would allow to determine accurately the time to detection of fungal colonies, then the mould free shelf-life of food products by using dry conidia. The method was based on dry-harvesting the conidia in the lid by gently taping the bottom of the dishes where sporulating mycelium was grown, retaining the conidia on glass beads, and, aseptically transferring the beads to successive Petri dishes to "dilute" the samples. Among the eleven factors tested by means of an experiment…

0301 basic medicineSporesfood.ingredientSerial dilutiongrowth030106 microbiologyGerminationPenicillium chrysogenumMicrobiologyConidiumlaw.inventionMolds03 medical and health sciencesfoodPredictive mycologylaw[SDV.IDA]Life Sciences [q-bio]/Food engineeringBotanyAgarRelative-humidityskin and connective tissue diseasesMyceliumDry harvestbiologyShelf-lifeSpoilagePetri dishfungi[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringPenicillium chrysogenumbiology.organism_classificationExperimental designSporeHorticultureFood productsAspergillusImpactGerminationAir-qualityFood ScienceWater activity
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Modelling the effect of temperature, pH, water activity, and organic acids on the germination time of Penicillium camemberti and Penicillium roquefor…

2017

International audience; In this study, the influence of environmental factors on the germination time of Penicillium camemberti and Penicillium roqueforti conidia was evaluated. To do so, the effects of i/temperature, pH, water activity, and ii/organic acids were determined using models based on i/cardinal values, and ii/minimum inhibitory concentration (MIC) respectively. Cardinal values for germination of conidia were not observed to be species dependent. Minimum temperatures were estimated to be below the freezing point, with an optimum of 26.9 degrees C, and a maximum of 33.5 degrees C. For both species, minimal and optimal a(w) values were found to be 0.83 and 0.99, respectively, while…

0301 basic medicineStarter culturesWater activity030106 microbiologyFungal startersStrainsFood spoilage moldsMicrobial Sensitivity TestsSodium ChlorideMicrobiologyAflatoxin productionFungal growthModels Biological03 medical and health scienceschemistry.chemical_compoundPredictive mycologyCheeseBotany[SDV.IDA]Life Sciences [q-bio]/Food engineeringSpore germinationChrysogenumFood scienceLactic AcidSpore germinationOrganic ChemicalsbiologyMycelium[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringPenicilliumTemperatureWaterPenicillium roquefortiGeneral MedicineHydrogen-Ion ConcentrationSpores Fungalbiology.organism_classificationPropionic acidLactic acidFreezing pointAspergillus-parasiticus030104 developmental biologychemistryGerminationPenicillium camembertiPenicilliumGrowth-rateFood MicrobiologyPropionatesFood ScienceInternational journal of food microbiology
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Nanoparticle decoration impacts airborne fungal pathobiology

2018

Airborne fungal pathogens, predominantly Aspergillus fumigatus, can cause severe respiratory tract diseases. Here we show that in environments, fungal spores can already be decorated with nanoparticles. Using representative controlled nanoparticle models, we demonstrate that various nanoparticles, but not microparticles, rapidly and stably associate with spores, without specific functionalization. Nanoparticle-spore complex formation was enhanced by small nanoparticle size rather than by material, charge, or "stealth" modifications and was concentration-dependently reduced by the formation of environmental or physiological biomolecule coronas. Assembly of nanoparticle-spore surface hybrid s…

0301 basic medicineTHP-1 CellsComplex formationMedizinNanoparticleMicrobiologyAspergillus fumigatusMice03 medical and health sciencesmedicineAnimalsHumansLungMultidisciplinaryLungbiologyChemistryAspergillus fumigatusfungiSpores FungalBiological Sciencesbiology.organism_classificationSpore030104 developmental biologymedicine.anatomical_structureA549 CellsCell toxicityCytokinesNanoparticlesNanomedicineProtein CoronaPulmonary AspergillosisRespiratory tractProceedings of the National Academy of Sciences
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Soil fungi invest into asexual sporulation under resource scarcity, but trait spaces of individual isolates are unique

2022

During the last few decades, a plethora of sequencing studies provided insight into fungal community composition under various environmental conditions. Still, the mechanisms of species assembly and fungal spread in soil remain largely unknown. While mycelial growth patterns are studied extensively, the abundant formation of asexual spores is often overlooked, though representing a substantial part of the fungal life cycle relevant for survival and dispersal. Here, we explore asexual sporulation (spore abundance, size and shape) in 32 co-occurring soil fungal isolates under varying resource conditions, to answer the question whether resource limitation triggers or inhibits fungal investment…

570ympäristötekijätReproductionFungi500 Naturwissenschaften und Mathematik::570 Biowissenschaften; Biologie::570 Biowissenschaften; BiologiemaaperäeliöstöSpores FungallisääntyminenMicrobiologySoilfungal spreadPhenotypefungal community compositionReproduction Asexualsoil fungisuvuton lisääntyminensienetEcology Evolution Behavior and SystematicsitiötEnvironmental Microbiology
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Achlya spiralis, a new aquatic oomycete with bent oogonial stalks, isolated from the Burgundian region of France

2008

Achlya spiralis sp. nov. was isolated from water samples collected in the river Tille in the Burgundian region of France. The new oomycete is described, illustrated and compared with related species of the genus Achlya. It is characterized by the presence of smooth-walled oogonia that are usually borne on bent or twisted oogonial stalks; mainly monoclinous, androgynous and diclinous antheridial branches and eccentric oospores which generally do not mature or mature after a long period of time. The internal transcribed spacer (ITS) region of its rRNA is comprised of 671 bases. The taxonomic description of this new species, its comparison with related oomycetes and the sequence of the ITS reg…

Achlya spiralisAntheridiaMolecular Sequence DataFresh WaterMicrobiologyDNA AlgalOogoniaRiversGenusDNA Ribosomal SpacerBotanyGeneticsAchlya spiralisCiencias NaturalesInternal transcribed spacerrRNAMolecular BiologyOomyceteMicroscopybiologyITS regionSequence Analysis DNAAchlyaOosporesRibosomal RNAbiology.organism_classificationAchlyaAntheridiumOosporeFrance
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Mechanisms of nanotoxicity – biomolecule coronas protect pathological fungi against nanoparticle-based eradication

2020

Whereas nanotoxicity is intensely studied in mammalian systems, our knowledge of desired or unwanted nano-based effects for microbes is still limited. Fungal infections are global socio-economic health and agricultural problems, and current chemical antifungals may induce adverse side-effects in humans and ecosystems. Thus, nanoparticles are discussed as potential novel and sustainable antifungals via the desired nanotoxicity but often fail in practical applications. In our study, we found that nanoparticles' toxicity strongly depends on their binding to fungal spores, including the clinically relevant pathogen

Antifungal AgentsSurface PropertiesBiomedical EngineeringMedizinNanoparticleNanotechnology02 engineering and technology010501 environmental sciencesToxicologyModels Biological01 natural sciencesDrug Resistance FungalAnimalsHumansEcosystem0105 earth and related environmental scienceschemistry.chemical_classificationMicrobial ViabilityBiomoleculeSpores FungalSilicon Dioxide021001 nanoscience & nanotechnologychemistryNanotoxicologyNanoparticlesNanomedicineAdsorptionBotrytis0210 nano-technologyBiologie
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Effect of storage conditions (relative humidity, duration, and temperature) on the germination time of Aspergillus carbonarius and Penicillium chryso…

2012

Fungal conidia are disseminated, often in the air, for a certain period of time, prior to contaminating food products. The objective of this study was to examine the effects of the relative humidity, RH (%), time (day), and temperature (°C) during this period of time, called "storage", on the germination time, τ (h), of Aspergillus carbonarius and Penicillium chrysogenum. A Doehlert design was used in the range, 20-100% RH, 2-28 days, and 5-25 °C. As compared to un-stored conidia, the germination time of conidia stored at 60% RH, 15 days, 5 °C was increased by 23 and 28%, for A. carbonarius and P. chrysogenum, respectively. Stored conidia exhibited a minimum τ value at 60% RH, and 100% RH f…

AspergillusTime FactorsbiologyFood preservationTemperatureHumidityHumidityGeneral MedicinePenicillium chrysogenumSpores FungalPenicillium chrysogenumbiology.organism_classificationMicrobiologyConidiumHorticultureKineticsAspergillusGerminationFood PreservationBotanyFood MicrobiologyFood microbiologyRelative humidityFood ScienceInternational journal of food microbiology
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Direct investigation of viscosity of an atypical inner membrane of Bacillus spores: A molecular rotor/FLIM study

2013

Abstract We utilize the fluorescent molecular rotor Bodipy-C12 to investigate the viscoelastic properties of hydrophobic layers of bacterial spores Bacillus subtilis. The molecular rotor shows a marked increase in fluorescence lifetime, from 0.3 to 4 ns, upon viscosity increase from 1 to 1500 cP and can be incorporated into the hydrophobic layers within the spores from dormant state through to germination. We use fluorescence lifetime imaging microscopy to visualize the viscosity inside different compartments of the bacterial spore in order to investigate the inner membrane and relate its compaction to the extreme resistance observed during exposure of spores to toxic chemicals. We demonstr…

BiophysicsAnalytical chemistryBacillus subtilis010402 general chemistry01 natural sciencesBiochemistryEndosporeMicroviscosity03 medical and health sciencesViscosityLipid bilayer030304 developmental biologySpores Bacterial0303 health sciencesFluorescence Lifetime Imaging (FLIM)biologyViscosityfungiCell BiologyLipid membranesbiology.organism_classification0104 chemical sciencesSporeMicroviscosityMembraneMicroscopy FluorescenceMolecular rotorsBiophysicsBacterial sporeBacillus subtilis sporesBacillus subtilisBiochimica et Biophysica Acta (BBA) - Biomembranes
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Aproximación a las comunidades de carófitos que existieron en la albufera de valencia a partir del estudio de las oósporas del sedimento

2009

14 páginas, 8 figuras, 3 tablas.

CarófitosTolypellaEspañaPlant ScienceValènciaNitellaCharaCharophytCarófitos; Oósporas; La Albufera; Valencia; España; Chara; Nitella; Tolypella; LamprothamniumAbundance (ecology)lcsh:BotanyBotany:CIENCIAS DE LA VIDA::Biología vegetal (Botánica) ::Biología marina [UNESCO]BalticaLamprothamniumNitellaEcology Evolution Behavior and SystematicsCharabiologyL’AlbuferaEcologySedimentLa AlbuferaVegetationOosporesOósporasbiology.organism_classificationlcsh:QK1-989SpainOosporeUNESCO::CIENCIAS DE LA VIDA::Biología vegetal (Botánica) ::Biología marinaValenciaCharophyteEutrophication
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Cytology of Thamnidium elegans Link. II. Distribution and behaviour of nuclei in hyphae, sporangiophores and sporangiospores.

1976

The resting nuclei in hyphae, sporangiophores and sporangiospores of sporangia and sporangiola of Thamnidium elegans consist of a large centrals nucleolus and a shell of chromatin surrounding the nucleolus. Division of the nucleus in hyphae and sporangiospores is achieved by elongation and constriction.

Cell NucleusHyphaNucleolusSporangiumFungiGeneral MedicineThamnidium elegansBiologySpores FungalBiochemistryMicrobiologyCell biologyNuclear divisionmedicine.anatomical_structureCytologyGeneticsmedicineMucoralesMolecular BiologyNucleusCell DivisionArchives of microbiology
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