Search results for "VDP::Mathematics and natural science: 400"

showing 10 items of 421 documents

A risk assessment of the effects of mercury on Baltic Sea, Greater North Sea and North Atlantic wildlife, fish and bivalves

2021

Abstract: A wide range of species, including marine mammals, seabirds, birds of prey, fish and bivalves, were investigated for potential population health risks resulting from contemporary (post 2000) mercury (Hg) exposure, using novel risk thresholds based on literature and de novo contamination data. The main geographic focus is on the Baltic Sea, while data from the same species in adjacent waters, such as the Greater North Sea and North Atlantic, were included for comparative purposes. For marine mammals, 23% of the groups, each composing individuals of a specific sex and maturity from the same species in a specific study region, showed Hg-concentrations within the High Risk Category (H…

010504 meteorology & atmospheric sciences[SDV]Life Sciences [q-bio]Wildlifechemistry.chemical_elementAnimals WildMarine mammal:Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480 [VDP]010501 environmental sciences01 natural sciencesRisk AssessmentRisk thresholdPredationMarine mammalbiology.animalAnimalsHumans14. Life underwaterBiological effectBiologylcsh:Environmental sciencesVDP::Mathematics and natural science: 4000105 earth and related environmental sciencesGeneral Environmental Sciencelcsh:GE1-350biologyBird of preyMarine mammal SeabirdFishesVDP::Matematikk og Naturvitenskap: 400SeabirdMercuryHgMercury (element)BivalviaFisheryChemistryGeographychemistryBaltic sea[SDE]Environmental SciencesNorth SeaBird of preySeabirdRisk assessment
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Non‐linearity in interspecific interactions in response to climate change: cod and haddock as an example

2020

Climate change has profound ecological effects, yet our understanding of how trophic interactions among species are affected by climate change is still patchy. The sympatric Atlantic haddock and cod are co-occurring across the North Atlantic. They compete for food at younger stages and thereafter the former is preyed by the latter. Climate change might affect the interaction and coexistence of these two species. Particularly, the increase in sea temperature (ST) has been shown to affect distribution, population growth and trophic interactions in marine systems. We used 33-year long time series of haddock and cod abundances estimates from two data sources (acoustic and trawl survey) to analy…

0106 biological sciences010504 meteorology & atmospheric sciencesClimate ChangePopulation DynamicsClimate change010603 evolutionary biology01 natural sciencesAbundance (ecology)AnimalsEnvironmental ChemistryPopulation growthEcosystemVDP::Mathematics and natural science: 4000105 earth and related environmental sciencesGeneral Environmental ScienceTrophic levelGlobal and Planetary ChangeEcologybiologyEcologyPopulation sizeBayes TheoremInterspecific competitionHaddockbiology.organism_classificationGadiformesSympatric speciationEnvironmental science
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Ocean acidification at a coastal CO2 vent induces expression of stress-related transcripts and transposable elements in the sea anemone Anemonia viri…

2019

Published version, available at: https://doi.org/10.1371/journal.pone.0210358 Ocean acidification threatens to disrupt interactions between organisms throughout marine ecosystems. The diversity of reef-building organisms decreases as seawater CO2 increases along natural gradients, yet soft-bodied animals, such as sea anemones, are often resilient. We sequenced the polyA-enriched transcriptome of adult sea anemone Anemonia viridis and its dinoflagellate symbiont sampled along a natural CO2 gradient in Italy to assess stress levels in these organisms. We found that about 1.4% of the anemone transcripts, but only ~0.5% of the Symbiodinium sp. transcripts were differentially expressed. Processe…

0106 biological sciences0301 basic medicineAtmospheric ScienceMolecular biologyMarine and Aquatic SciencesGene ExpressionRetrotransposonSea anemone01 natural sciencesAnemoniaSequencing techniquesMobile Genetic ElementsMultidisciplinarybiologyQREukaryotaOcean acidificationAnemoneRNA sequencingGenomicsChemistryRetrotransposonsPhysical SciencesMedicineTranscriptome AnalysisResearch ArticleScienceZoology010603 evolutionary biology03 medical and health sciencesGreenhouse GasesCnidariaGenetic ElementsSea WaterGeneticsVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470Environmental ChemistryAnimalsMarine ecosystemBiology and life sciencesEcology and Environmental SciencesDinoflagellateChemical CompoundsOrganismsTransposable ElementsCorrectionAquatic EnvironmentsComputational BiologyCarbon Dioxidebiology.organism_classificationGenome AnalysisMarine EnvironmentsInvertebratesVDP::Mathematics and natural science: 400::Basic biosciences: 470Research and analysis methods:Genetikk og genomikk: 474 VDP::Marinbiologi:497 VDP::Økologi:488 [VDP]030104 developmental biologySea AnemonesMolecular biology techniquesAtmospheric ChemistryEarth SciencesSeawater
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Demographic history has shaped the strongly differentiated corkwing wrasse populations in Northern Europe

2019

Understanding the biological processes involved in genetic differentiation and divergence between populations within species is a pivotal aim in evolutionary biology. One particular phenomenon that requires clarification is the maintenance of genetic barriers despite the high potential for gene flow in the marine environment. Such patterns have been attributed to limited dispersal or local adaptation, and to a lesser extent to the demographic history of the species. The corkwing wrasse (Symphodus melops) is an example of a marine fish species where regions of particular strong divergence are observed. One such genetic break occurred at a surprisingly small spatial scale (FST ~0.1), over a s…

0106 biological sciences0301 basic medicineGene FlowMaleReproductive IsolationDemographic historyphylogeography010603 evolutionary biology01 natural sciencesGene flow03 medical and health sciencesGenetic driftGeneticsAnimals14. Life underwaterEcology Evolution Behavior and Systematicspopulation genetics—empiricalLocal adaptationDemographyfishGenomebiologyEcologyGenetic DriftFisheslandscape geneticsVDP::Matematikk og Naturvitenskap: 400Reproductive isolationVDP::Mathematics and natural science: 400::Zoology and botany: 480::Zoogeography: 486VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Zoogeografi: 486biology.organism_classificationEuropePhylogeography030104 developmental biologyaquacultureEvolutionary biologyBiological dispersalFemaleCorkwing wrasse
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Resource polymorphism in European whitefish: Analysis of fatty acid profiles provides more detailed evidence than traditional methods alone

2019

Published version, licensed CC BY-NC-ND 4.0. , available at: http://dx.doi.org/10.1371/journal.pone.0221338 Resource polymorphism—whereby ancestral generalist populations give rise to several specialised morphs along a resource gradient—is common where species colonise newly formed ecosystems. This phenomenon is particularly well documented in freshwater fish populations inhabiting postglacial lakes formed at the end of the last ice age. However, knowledge on how such differential exploitation of resources across contrasting habitats might be reflected in the biochemical compositions of diverging populations is still limited, though such patterns might be expected. Here, we aimed to assess …

0106 biological sciencesComposite ParticlesMarine and Aquatic SciencesPredationGeneralist and specialist species01 natural sciencesFood chainIsotopesvatsaFood Web StructurelakesMedicine and Health SciencesCoregonus albulaVDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497Trophic levelMultidisciplinaryEcologyfood.dishPhysicsStable IsotopesQStomachREukaryotafood web structureselkärangattomatGastrointestinal Contents6. Clean waterFood webTrophic InteractionsFreshwater FishCommunity Ecologyfreshwater fishVertebratesPhysical Sciencesresource polymorphismFreshwater fishMedicinepredationAnatomyNutritive ValueSalmonidaestomachResearch ArticleFreshwater EnvironmentsAtomsFAFood ChainSciencestable isotopesZoologyScandinavian and Nordic CountriesCoregonus lavaretusBiologyfatty acidsjärvet010603 evolutionary biologyfoodCoregonus lavaretusAnimals14. Life underwaterParticle PhysicsravintoketjutVDP::Landbruks- og Fiskerifag: 900::Fiskerifag: 920Coregonus albulatrophic interactionsEcological nicheisotoopit010604 marine biology & hydrobiologyEcology and Environmental SciencesOrganismsAquatic EnvironmentsBiology and Life SciencesFeeding BehaviorBodies of WaterVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497invertebratesbiology.organism_classificationInvertebratessaalistusGastrointestinal TractLakesFishEuropean whitefishsiikaEarth SciencesDigestive SystemravintoverkotPLOS ONE
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Resource Partitioning in Food, Space and Time between Arctic Charr (Salvelinus alpinus), Brown Trout (Salmo trutta) and European Whitefish (Coregonus…

2017

Arctic charr and European whitefish are considered to be strong competitors in lakes, with the latter usually being the superior species. However, high niche plasticity and lake morphometry may suggestively facilitate resource partitioning and coexistence between charr and whitefish. Here, we explore the trophic niche utilization (diet and habitat use) of charr and whitefish co-occurring with brown trout in the deep and oligotrophic Lake Fyresvatnet, southern Norway (59˚05’N, 8˚10’E). Using CPUE, stomach contents and stable isotope analyses, a distinct resource partitioning was revealed between brown trout and the other two species. Brown trout typically occupied the littoral zone, feeding …

0106 biological sciencesComposite ParticlesTroutlcsh:MedicineMarine and Aquatic Sciences01 natural sciencesBrown troutIsotopesVDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497Salmolcsh:ScienceMultidisciplinarybiologyfood.dishEcologyEcologyNorwayPhysicsStable IsotopescoexistenceFishesPlanktonGastrointestinal ContentsTrophic InteractionsrinnakkaiseloFreshwater FishArctic charrTroutCommunity EcologyOsteichthyesVertebratesPhysical SciencesFreshwater fishEcological NichesSalmonidaeResearch ArticleFreshwater EnvironmentsAtoms010603 evolutionary biologyZooplanktonfoodCoregonus lavaretusAnimalsProfundal zoneParticle PhysicsSalmonidaeEcosystemSalvelinus010604 marine biology & hydrobiologylcsh:REcology and Environmental SciencesOrganismsBiology and Life SciencesAquatic EnvironmentsFeeding BehaviorVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497Bodies of Waterbiology.organism_classificationInvertebratesLakesFoodEuropean whitefishEarth Sciencesta1181lcsh:Q
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Northern refugia and recent expansion in the North Sea: The case of the wrasse Symphodus melops (Linnaeus, 1758)

2011

Pleistocene climate changes have imposed extreme conditions to intertidal rocky marine communities, forcing many species to significant range shifts in their geographical distributions. Phylogeographic analyses based on both mitochondrial and nuclear genetic markers provide a useful approach to unravel phylogeographic patterns and processes of species after this time period, to gain general knowledge of how climatic changes affect shifts in species distributions. We analyzed these patterns on the corkwing wrasse (Symphodus melops, Labridae), a rocky shore species inhabiting North Sea waters and temperate northeastern Atlantic Ocean from Norway to Morocco including the Azores, using a fragme…

0106 biological sciencesRange (biology)Intertidal zonePhylogenetic-Relationshipsphylogeography010603 evolutionary biology01 natural sciences03 medical and health sciencesRocky shoreRefugium (population biology)LabridaeMediterranean SeaNorth seaVDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 49714. Life underwaterGlacial periodglacial refugiaEcology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape ConservationMitochondrial-Dna Variation0303 health sciencesbiologyEcologyEcologyGenetic-structurePopulationsMtdnaLast Glacial Maximumbiology.organism_classificationBlenniidaePhylogeography13. Climate actionAtlantic coastInterglacialAtlanticspatial variation of genetic diversityCorkwing wrasseLipophrys-Pholis Pisces
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Genetic roadmap of the Arctic: plant dispersal highways, traffic barriers and capitals of diversity.

2013

This is the peer reviewed version of the following article: Eidesen, P.B., Ehrich, D., Bakkestuen, V., Alsos, I.G., Gilg, O., Taberlet, P. & Brochmann, C. (2013). Genetic roadmap of the Arctic: plant dispersal highways, traffic barriers and capitals of diversity. New Phytologist, 200(3), 898-910. https://doi.org/10.1111/nph.12412, which has been published in final form at https://doi.org/10.1111/nph.12412. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. We provide the first comparative multispecies analysis of spatial genetic structure and diversity in the circumpolar Arctic using a common strategy for sam…

0106 biological sciencescomparative phylogeographyPhysiologyGreenlandPlant Science01 natural sciencesGene flowrefugiaArcticRefugium (population biology)genetic structureVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Plantegeografi: 496Ice CoverAmplified Fragment Length Polymorphism AnalysisAtlantic OceanPhylogeny0303 health sciencesplant dispersalArctic RegionsEcologyDNA Chloroplastgenetic diversityPlantsPhylogeography[ SDV.GEN.GPO ] Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]GeographyInterglacialGenetic structuregeographic locationsGene Flowgeographical information system (GIS)Pleistocenemplified fragment length polymorphisms (AFLP)[SDV.BID]Life Sciences [q-bio]/Biodiversity010603 evolutionary biologyBeringia03 medical and health sciencesEcosystem030304 developmental biology[ SDV.BID ] Life Sciences [q-bio]/BiodiversityGenetic diversity[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyPolymorphism Genetic[SDV.GEN.GPO]Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]VDP::Mathematics and natural science: 400::Zoology and botany: 480::Plant geography: 49615. Life on landSiberiaHaplotypesArcticamplified fragment length polymorphisms (AFLP)[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Community structure affects trophic ontogeny in a predatory fish.

2016

While most studies have focused on the timing and nature of ontogenetic niche shifts, information is scarce about the effects of community structure on trophic ontogeny of top predators. We investigated how community structure affects ontogenetic niche shifts (i.e., relationships between body length, trophic position, and individual dietary specialization) of a predatory fish, brown trout (Salmo trutta). We used stable isotope and stomach content analyses to test how functional characteristics of lake fish community compositions (competition and prey availability) modulate niche shifts in terms of (i) piscivorous behavior, (ii) trophic position, and (iii) individual dietary specialization. …

0106 biological sciencesdietary switchZoologyPredation010603 evolutionary biology01 natural sciencesBrown troutPredatory fishindividual specializationinterindividual variationVDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497Salmofish assemblageEcology Evolution Behavior and SystematicsNature and Landscape ConservationSalvelinusOriginal ResearchEcologybiologyEcology010604 marine biology & hydrobiologySticklebackVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497biology.organism_classificationsaalistusTroutForage fishFreshwater fishta1181predationniche shiftEcology and evolution
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Arctic sea ice algae differ markedly from phytoplankton in their ecophysiological characteristics

2021

Photophysiological and biochemical characteristics were investigated in natural communities of Arctic sea ice algae and phytoplankton to understand their respective responses towards variable irradiance and nutrient regimes. This study revealed large differences in photosynthetic efficiency and capacity between the 2 types of algal assemblages. Sea ice algal assemblages clearly displayed increased photoprotective energy dissipation under the highest daily average irradiance levels (>8 µmol photons m-2 s-1). In contrast, phytoplankton assemblages were generally light-limited within the same irradiance ranges. Furthermore, phytoplankton assemblages exhibited more efficient carbon assimilat…

0106 biological sciencesgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesEcologybiology010604 marine biology & hydrobiologyClimate changePelagic zoneAquatic Sciencebiology.organism_classification01 natural sciencesAlgal bloomArctic ice packOceanographyArcticAlgae13. Climate actionPhytoplanktonSea iceEnvironmental scienceVDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 49714. Life underwaterEcology Evolution Behavior and Systematics0105 earth and related environmental sciences
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