Search results for "Climat"

showing 10 items of 5990 documents

Multiple paths to cold tolerance: the role of environmental cues, morphological traits and the circadian clock gene vrille

2021

AbstractBackgroundTracing the association between insect cold tolerance and latitudinally and locally varying environmental conditions, as well as key morphological traits and molecular mechanisms, is essential for understanding the processes involved in adaptation. We explored these issues in two closely-related species, Drosophila montana and Drosophila flavomontana, originating from diverse climatic locations across several latitudes on the coastal and mountainous regions of North America. We also investigated the association between sequence variation in one of the key circadian clock genes, vrille, and cold tolerance in both species. Finally, we studied the impact of vrille on fly cold…

0106 biological sciencesCircadian clockInsect01 natural scienceskylmänkestävyysCCRTQH540-549.5vuorokausirytmimedia_commonsopeutuminenphotoperiodism0303 health sciencesluonnonvalintaNatural selectionLatitudeEcologyEcologylatitudeCold TemperatureBody colourDrosophilaCuesResearch ArticleRNA interference (RNAi)RNA-interferenssimahlakärpäsetympäristötekijätEvolutionmedia_common.quotation_subjectGrowing seasonBiology010603 evolutionary biologyLatitudebody weight03 medical and health sciencesmorfologiabioclimatic variablesDrosophila montanaBioclimatic variablesCircadian ClocksCold acclimationQH359-425AnimalsCircadian rhythmCTmin030304 developmental biologygeenitDrosophila flavomontanafungibody colour15. Life on landBody weight13. Climate actionNorth AmericaBMC Ecology and Evolution
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Predator–vole interactions in northern Europe: the role of small mustelids revised

2014

The cyclic population dynamics of vole and predator communities is a key phenomenon in northern ecosystems, and it appears to be influenced by climate change. Reports of collapsing rodent cycles have attributed the changes to warmer winters, which weaken the interaction between voles and their specialist subnivean predators. Using population data collected throughout Finland during 1986–2011, we analyse the spatio-temporal variation in the interactions between populations of voles and specialist, generalist and avian predators, and investigate by simulations the roles of the different predators in the vole cycle. We test the hypothesis that vole population cyclicity is dependent on predator…

0106 biological sciencesClimate ChangePopulation DynamicsPopulationBiologyGeneralist and specialist species010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPredationBirdsAnimalsPopulation growthpopulation growth rateeducationResearch ArticlesGeneral Environmental ScienceMammalsPopulation Densityeducation.field_of_studyGeneral Immunology and MicrobiologyArvicolinaeEcology010604 marine biology & hydrobiologyGeneral MedicineModels Theoreticalbiology.organism_classificationpopulaatiodynamiikkaEuropeDensity dependence13. Climate actiondensity dependencePredatory BehaviorDelayed density dependencePopulation cycleta1181Volepopulation cyclesGeneral Agricultural and Biological Sciences
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Nonlinear effects of climate on boreal rodent dynamics: mild winters do not negate high-amplitude cycles

2013

Small rodents are key species in many ecosystems. In boreal and subarctic environments, their importance is heightened by pronounced multiannual population cycles. Alarmingly, the previously regular rodent cycles appear to be collapsing simultaneously in many areas. Climate change, particularly decreasing snow quality or quantity in winter, is hypothesized as a causal factor, but the evidence is contradictory. Reliable analysis of population dynamics and the influence of climate thereon necessitate spatially and temporally extensive data. We combined data on vole abundances and climate, collected at 33 locations throughout Finland from 1970 to 2011, to test the hypothesis that warming winte…

0106 biological sciencesClimate ChangePopulation DynamicsPopulationClimate changeGrowing season010603 evolutionary biology01 natural sciencesAnimalsEnvironmental ChemistryeducationGeneral Environmental ScienceGlobal and Planetary Changeeducation.field_of_studyEcologybiologyArvicolinae010604 marine biology & hydrobiology15. Life on landbiology.organism_classificationSubarctic climateCold TemperatureDensity dependenceBoreal13. Climate actionClimatologyPopulation cycleta1181Environmental scienceVoleSeasonsGlobal Change Biology
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Accounting for species interactions is necessary for predicting how arctic arthropod communities respond to climate change

2021

Species interactions are known to structure ecological communities. Still, the influence of climate change on biodiversity has primarily been evaluated by correlating individual species distributions with local climatic descriptors, then extrapolating into future climate scenarios. We ask whether predictions on arctic arthropod response to climate change can be improved by accounting for species interactions. For this, we use a 14-year-long, weekly time series from Greenland, resolved to the species level by mitogenome mapping. During the study period, temperature increased by 2 degrees C and arthropod species richness halved. We show that with abiotic variables alone, we are essentially un…

0106 biological sciencesClimate ResearchArthropodaBiodiversityClimate changeAccounting010603 evolutionary biology01 natural sciencesArcticniveljalkaisetTrophic cascade1172 Environmental sciencesEcology Evolution Behavior and SystematicsTrophic levelAbiotic componentarktinen alueEcologyfood webEcologybusiness.industry010604 marine biology & hydrobiologyeliöyhteisötilmastonmuutokset15. Life on landFood webjoint species distribution modelbiodiversiteettitrophic cascadeclimate changeGeographyArctic13. Climate actioncommunity assemblySpecies richnessbusinessravintoverkotEcography
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Linking extreme seasonality and gene expression in arctic marine protists

2021

ABSTRACTAt high latitudes, strong seasonal differences in light availability affect marine organisms and restrict the timing of ecosystem processes. Marine protists are key players in Arctic aquatic ecosystems, yet little is known about their ecological roles over yearly cycles. This is especially true for the dark polar night period, which up until recently was assumed to be devoid of biological activity. A 12 million transcripts catalogue was built from 0.45-10 μm protist assemblages sampled over 13 months in a time series station in an arctic fjord in Svalbard. Community gene expression was correlated with seasonality, with light as the main driving factor. Transcript diversity and evenn…

0106 biological sciencesClimate changemicrobial eukaryotesBiologyunicellular eukaryotesmedicine.disease_cause01 natural sciences03 medical and health sciencespolar daymedicineEcosystem14. Life underwater030304 developmental biology[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesmetatranscriptomicsPolar nightpolar nightEcology010604 marine biology & hydrobiologyAquatic ecosystemProtistSeasonalitymedicine.disease[SDV.BIBS]Life Sciences [q-bio]/Quantitative Methods [q-bio.QM]Arctic13. Climate actionSpecies evennesstime seriesgeographic locations
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From arctic lemmings to adaptive dynamics: Charles Elton's legacy in population ecology.

2001

We shall examine the impact of Charles S. Elton's 1924 article on periodic fluctuations in animal populations on the development of modern population ecology. We argue that his impact has been substantial and that during the past 75 years of research on multi-annual periodic fluctuations in numbers of voles, lemmings, hares, lynx and game animals he has contributed much to the contemporary understanding of the causes and consequences of population regulation. Elton was convinced that the cause of the regular fluctuations was climatic variation. To support this conclusion, he examined long-term population data then available. Despite his firm belief in a climatic cause of the self-repeating …

0106 biological sciencesClimatePopulationCarnivoraPopulation DynamicsBiologyEcological systems theory010603 evolutionary biology01 natural sciencesModels BiologicalGeneral Biochemistry Genetics and Molecular BiologyAnimalsSpecial casePositive economicsSpeculationeducationBiologyMammalseducation.field_of_studyEcologyEcologyArvicolinae010604 marine biology & hydrobiologyLagomorphaPopulation ecologyBiological SciencesHistory 20th CenturyAdaptation PhysiologicalBiological Evolution010601 ecologyDensity dependenceSpatial ecologyPopulation cycleGeneral Agricultural and Biological SciencesBiological reviews of the Cambridge Philosophical Society
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Effects of global warming on reproduction and potential dispersal of Mediterranean Cnidarians

2019

Water temperature directly affects life cycles, reproductive periods, and metabolism of organisms living the oceans, especially in the surface zones. Due to the ocean warming, changes in water stratification and primary productivity are affecting trophic chains in sensitive world areas, such as the Mediterranean Sea. Benthic and pelagic cnidarians exhibit complex responses to climatic conditions. For example, the structure and phenology of the Mediterranean hydrozoan community displayed marked changes in species composition, bathymetric distribution, and reproductive timing over the last decades. The regional species pool remained stable in terms of species numbers but not in terms of speci…

0106 biological sciencesCnidariaMediterranean climatemedia_common.quotation_subjectEffects of global warming on oceansClimate change010603 evolutionary biology01 natural sciencesreproductionCnidarialarvaEffects of global warminglcsh:ZoologyClimate changelcsh:QL1-99114. Life underwatermedia_commontrophic ecologyLarvabiologyEcology010604 marine biology & hydrobiologyfungibiology.organism_classificationClimate change Cnidaria larva reproduction trophic ecology13. Climate actionBiological dispersalEnvironmental scienceAnimal Science and Zoologysense organsReproductiongeographic locationsThe European Zoological Journal
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Are coastal communities able to pay for the protection of fish resources impacted by climate change?

2020

Abstract The purpose of this study is to examine inhabitants’ motivation and their willingness to pay to mitigate the impact of climate change on fish resources. Willingness to pay was tested empirically using survey data from 333 inhabitants of Sciacca, a fishing community in Sicily, Italy, which has the island’s second largest fishing fleet. People’s attitudes towards climate change, their degree of involvement in the issue, and their concerns about this phenomenon’s potential impact on the marine environment are the key factors affecting their willingness to pay. It was further found that respondents are willing to pay an average of €6.81 per month to support mitigation policies in the f…

0106 biological sciencesCoastal populationbusiness.industryNatural resource economics010604 marine biology & hydrobiologyFishingClimate change04 agricultural and veterinary sciencesAquatic Science01 natural sciencesBody of knowledgeTheory of reasoned actionMitigation policieConceptual frameworkWillingness to payFishing industryTheory of reasoned action040102 fisheries0401 agriculture forestry and fisheriesSurvey data collectionWillingness to payBusinessConstrual level theory
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Taxonomy 2.0: computer-aided identification tools to assist Antarctic biologists in the field and in the laboratory

2020

Species inventories are essential to the implementation of conservation policies to mitigate biodiversity loss and maintain ecosystem services and their value to the society. This is particularly topical with respect to climate change and direct anthropogenic effects on Antarctic biodiversity, with the identification of the most at-risk taxa and geographical areas becoming a priority. Identification tools are often neglected and considered helpful only for taxonomists. However, the development of new online information technologies and computer-aided identification tools provides an opportunity to promote them to a wider audience, especially considering the emerging generation of scientists…

0106 biological sciencesComputer science[SDV]Life Sciences [q-bio]BiodiversityEvolution des espècesOceanography010603 evolutionary biology01 natural sciencesEcosystem servicesDatabaseKnowledge baseBiodiversity conservationOcéanographie physique et chimique14. Life underwaterGéologieComputingMilieux_MISCELLANEOUSEcology Evolution Behavior and SystematicsXper3Taxonomic keyEcologiebiologybusiness.industry010604 marine biology & hydrobiologyOdontasteridaeInformation technologyGeologyField guides15. Life on landbiology.organism_classificationData scienceKnowledge base13. Climate action[SDE]Environmental SciencesManagement systemComputer-aidedbusinessSoftwareAntarctic Science
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Degradation in landscape matrix has diverse impacts on diversity in protected areas.

2017

Introduction: A main goal of protected areas is to maintain species diversity and the integrity of biological assemblages. Intensifying land use in the matrix surrounding protected areas creates a challenge for biodiversity conservation. Earlier studies have mainly focused on taxonomic diversity within protected areas. However, functional and especially phylogenetic diversities are less studied phenomena, especially with respect to the impacts of the matrix that surrounds protected areas. Phylogenetic diversity refers to the range of evolutionary lineages, the maintenance of which ensures that future evolutionary potential is safeguarded. Functional diversity refers to the range of ecologic…

0106 biological sciencesConservation geneticsConservation BiologyBiodiversitylcsh:MedicinemaankäyttöForestsAnimal Phylogenetics01 natural scienceslcsh:ScienceSpecies diversityConservation ScienceData ManagementMultidisciplinaryEcologyEcologyEukaryotaBiodiversityrespiratory systemta4112Terrestrial EnvironmentsPhylogeneticsGeographyHabitatVertebratesConservation GeneticsConservation geneticsResearch ArticleComputer and Information SciencesConservation of Natural ResourcesEcological MetricsForest managementAnimal phylogenetics010603 evolutionary biologyEcosystemsBirdssuojelualueetGeneticsAnimalsEcosystemEvolutionary SystematicsEcosystemTaxonomyEvolutionary BiologyLand use010604 marine biology & hydrobiologyEcology and Environmental Scienceslcsh:ROrganismsSpecies diversityland useBiology and Life SciencesSpecies Diversity15. Life on landbiodiversiteettiPhylogenetic diversity13. Climate actionConservation scienceAmniotesta1181lcsh:Qprotected areasZoologyhuman activitiesPLoS ONE
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