Search results for "Population-dynamics"

showing 4 items of 4 documents

Assessing non-chemical weeding strategies through mechanistic modelling of blackgrass (Alopecurus myosuroides Huds.) dynamics

2010

 ; Because of environmental and health safety issues, it is necessary to develop strategies that do not rely on herbicides to manage weeds. Introducing temporary grassland into annual crop rotations and mechanical weeding are the two main features that are frequently used in integrated and organic cropping systems for this purpose. To evaluate the contribution of these two factors in interaction with other cropping system components and environmental conditions, the present study updated an existing biophysical model (i.e. AlomySys) that quantifies the effects of cropping system on weed dynamics. Based on previous experiments, new sub-models were built to describe the effects on plant survi…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences0106 biological sciencesgeneric modelbusiness.product_categorynitrogen balancescrop-rotationGRASSLANDMECHANICAL WEEDINGSoil SciencePlant ScienceVULPIN DES CHAMPS01 natural sciencesPloughATV Farm Technologyseed characteristicsCropping system[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesMathematics2. Zero hungerCROPPING SYSTEMSowingpopulation-dynamics04 agricultural and veterinary sciences15. Life on landCrop rotationWeed controlPE&RCsimulationCrop protectionTillageMODELsoil climateAgronomyINTEGRATED CROP PROTECTION040103 agronomy & agriculturetillage0401 agriculture forestry and fisheriessystemsWEED DYNAMICSWeedbusinessAgronomy and Crop Sciencemanagement010606 plant biology & botany
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Persistence of Two Non-Saccharomyces Yeasts (Hanseniaspora and Starmerella) in the Cellar

2016

International audience; Different genera and/or species of yeasts present on grape berries, in musts and wines are widely described. Nevertheless, the community of non-Saccharomyces yeasts present in the cellar is still given little attention. Thus it is not known if the cellar is a real ecological niche for these yeasts or if it is merely a transient habitat for populations brought in by grape berries during the winemaking period. This study focused on three species of non-Saccharomyces yeasts commonly encountered during vinification: Starmerella bacillaris (synonymy with Candida zemplinina), Hanseniaspora guilliermondii and Hanseniaspora uvarum. More than 1200 isolates were identified at …

0301 basic medicineMicrobiology (medical)Grape berriesCerevisiaeWine yeast[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutrition030106 microbiologyStarmerellalcsh:QR1-502StrainsCandida-stellataHanseniasporaMicrobiologySaccharomyceslcsh:MicrobiologyHanseniaspora03 medical and health sciences[ SDV.MP ] Life Sciences [q-bio]/Microbiology and ParasitologycellarBotanyOriginal ResearchWinemakingDiversitybiologyfungifood and beveragespersistenceEnological propertiesbiology.organism_classificationSulfur-dioxideYeastCandida zemplininaYeast in winemaking[SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitologynon-Saccharomyces strainsStarmerellaHanseniaspora guilliermondiiAlcoholic fermentationPopulation-dynamicsFrontiers in Microbiology
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Drivers of shell growth of the bivalve, Callista chione (L. 1758) - Combined it environmental and biological factors

2018

WOS:000426027100014; Seasonal shell growth patterns were analyzed using the stable oxygen and carbon isotope values of live-collected specimens of the bivalve Callista chione from two sites in the Adriatic Sea (Pag and Cetina, Croatia). Micromilling was performed on the shell surface of three shells per site and shell oxygen isotopes of the powder samples were measured. The timing and rate of seasonal shell growth was determined by aligning the delta O-18(shell)-derived temperatures so that the best fit was achieved with the instrumental temperature curve. According to the data, shells grew only at very low rates or not at all during the winter months, i.e., between January and March. Shell…

0106 biological sciences010504 meteorology & atmospheric sciencesmussel mytilus-galloprovincialisCroatiaShell (structure)Oxygen IsotopesAquatic ScienceEnvironmentOceanography01 natural sciencesIsotopes of oxygenChionespisula-solidissimaBiological Factorswater temperatureSclerochronologySeasonal shell growth patternsSclerochronologycontinental-shelfBivalve molluskAnimals14. Life underwaterArctica islandicaparticulate organic-matter0105 earth and related environmental sciencesStable isotopesCarbon IsotopesBivalve mollusk ; Seasonal shell growth patterns ; Stable isotopes ; Sclerochronology ; Environment ; Biology ; Life history traitbiologyStable isotope ratiostable-isotope ratios010604 marine biology & hydrobiologyACLpopulation-dynamicsGeneral Medicineglycymeris-glycymerisLife history traitsbiology.organism_classificationPollutionBivalviaphacosoma-japonicumOceanographyIsotopes of carbonEnvironmental scienceSeawaterarctica-islandica[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Predicting habitat suitability for Ixodes ricinus and Ixodes persulcatus ticks in Finland

2022

AbstractBackgroundTicks are responsible for transmitting several notable pathogens worldwide. Finland lies in a zone where two human-biting tick species co-occur:IxodesricinusandIxodespersulcatus. Tick densities have increased in boreal regions worldwide during past decades, and tick-borne pathogens have been identified as one of the major threats to public health in the face of climate change.MethodsWe used species distribution modelling techniques to predict the distributions ofI.ricinusandI.persulcatus,using aggregated historical data from 2014 to 2020 and new tick occurrence data from 2021. By aiming to fill the gaps in tick occurrence data, we created a new sampling strategy across Fin…

1171 GeosciencesmallintaminenPOPULATION-DYNAMICSIxodes ricinusVECTORBORRELIAIxodes persulcatusBorreliaburgdorferi sensu latozoonoositpaikkatietoanalyysipuutiaisetpuutiaisaivotulehdusBURGDORFERI SENSU-LATOEncephalitis Viruses Tick-BorneSpecies distribution modellingAnimalsHumansQUESTING ACTIVITYEcosystemFinland11832 Microbiology and virologyIxodesDeerixodes persulcatusTick-borne pathogenIXODES-RICINUS TICKSEnsemble predictionennusteetlevinneisyysBORNE ENCEPHALITIS-VIRUSHares11831 Plant biologyixodes ricinusspecies distribution modellingpunkitCLIMATEBorrelia-bakteeritInfectious Diseasestaudinaiheuttajattick-borne pathogenborrelioosiIXODIDAEParasitologyABUNDANCEBorrelia burgdorferi sensu latoensemble prediction
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