Search results for "Distance"

showing 10 items of 1009 documents

Barcoding of parasitoid wasps (Braconidae and Chalcidoidea) associated with wild and cultivated olives in the Western Cape of South Africa

2019

Wild and cultivated olives harbor and share a diversity of insects, some of which are considered agricultural pests, such as the olive fruit fly. The assemblage of olive-associated parasitoids and seed wasps is rich and specialized in sub-Saharan Africa, with native species possibly coevolving with their hosts. Although historical entomological surveys reported on the diversity of olive wasp species in the Western Cape Province of South Africa, no comprehensive study has been performed in the region in the molecular era. In this study, a dual approach combining morphological and DNA-based methods was used for the identification of adult specimens reared from olive fruits. Four species of B…

0106 biological sciences0301 basic medicineOlive fruit flyWaspsParasitismmedicine.disease_cause010603 evolutionary biology01 natural sciencesDNA barcodingParasitoid03 medical and health sciencesSouth AfricaOleaBotanyInfestationGeneticsmedicineAnimalsDNA Barcoding TaxonomicMolecular BiologyPhylogenybiologyfungiGeneral MedicineBiodiversityDNAbiology.organism_classification030104 developmental biologyGenetic distanceTaxonomy (biology)BraconidaeBiotechnologyGenome
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Propagule pressure increase and phylogenetic diversity decrease community’s susceptibility to invasion

2017

Background Invasions pose a large threat to native species, but the question of why some species are more invasive, and some communities more prone to invasions than others, is far from solved. Using 10 different three-species bacterial communities, we tested experimentally if the phylogenetic relationships between an invader and a resident community and the propagule pressure affect invasion probability. Results We found that greater diversity in phylogenetic distances between the members of resident community and the invader lowered invasion success, and higher propagule pressure increased invasion success whereas phylogenetic distance had no clear effect. In the later stages of invasion,…

0106 biological sciences0301 basic medicinePhylogenetic similarity and propagule pressuremedia_common.quotation_subjectPhylogenetic distanceIntroduced speciesphylogenetic distanceBiologyBacterial Physiological Phenomena010603 evolutionary biology01 natural sciencesCompetition (biology)bakteerit03 medical and health sciencesInvasionphylogenetic similarity and propagule pressureAnimalsPhylogenySerratia marcescensQH540-549.5Ecology Evolution Behavior and SystematicsGeneral Environmental Sciencemedia_commonBacteriaCompetitionEcologyPhylogenetic treeEcologyCommunity identityPropagule pressureGenetic Variation15. Life on landinvasionPhylogenetic diversity030104 developmental biologyPhylogenetic distancecompetitionResearch ArticleBMC Ecology
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Low but contrasting neutral genetic differentiation shaped by winter temperature in European great tits.

2016

Gene flow is usually thought to reduce genetic divergence and impede local adaptation by homogenising gene pools between populations. However, evidence for local adaptation and phenotypic differentiation in highly mobile species, experiencing high levels of gene flow, is emerging. Assessing population genetic structure at different spatial scales is thus a crucial step towards understanding mechanisms underlying intraspecific differentiation and diversification. Here, we studied the population genetic structure of a highly mobile species - the great tit Parus major - at different spatial scales. We analysed 884 individuals from 30 sites across Europe including 10 close-by sites (< 50 km), u…

0106 biological sciences0301 basic medicineSELECTIONZOOLOGIA[SDV]Life Sciences [q-bio]FLOWSOFTWARE01 natural sciencesmicrosatellitesBehavioral EcologyLOCAL ADAPTATIONParus majorComputingMilieux_MISCELLANEOUSeducation.field_of_studyLatitudeCLIMATE-CHANGEEcologyIsolation-by-distancelatitudePE&RCGedragsecologieWILD BIRD POPULATIONinternationalGenetic structureGene poolwinter severityPopulationAnimal Breeding and GenomicsBiologyPARUS-MAJOR010603 evolutionary biology03 medical and health sciencesPopulation genetic structureFokkerij en GenomicaMicrosatelliteseducationBiologyEcology Evolution Behavior and SystematicsLocal adaptationIsolation by distanceisolation-by-distance[SDV.GEN]Life Sciences [q-bio]/GeneticsGenetic diversityF-statisticsGenetic divergenceWinter severity030104 developmental biologyPARTIAL MIGRATIONF-statisticsNATAL DISPERSALRE-IMPLEMENTATIONWIAS570 Life sciences; biologyta1181Biological Journal of the Linnean Society
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Contrasting biogeographical patterns in Margarella (Gastropoda: Calliostomatidae: Margarellinae) across the Antarctic Polar Front

2021

International audience; Members of the trochoidean genus Margarella (Calliostomatidae) are broadly distributed across Antarctic and sub-Antarctic ecosystems. Here we used novel mitochondrial and nuclear gene sequences to clarify species boundaries and phylogenetic relationships among seven nominal species distributed on either side of the Antarctic Polar Front (APF). Molecular reconstructions and species-delimitation analyses recognized only four species: M. antarctica (the Antarctic Peninsula), M. achilles (endemic to South Georgia), M. steineni (South Georgia and Crozet Island) and the morphologically variable M. violacea (=M. expansa, M. porcellana and M. pruinosa), with populations in s…

0106 biological sciences0301 basic medicineTime FactorsAntarctic Polar FrontGastropodalong-distance dispersalAntarctic RegionsBiology010603 evolutionary biology01 natural sciencesDNA MitochondrialPorcellanaCalliostomatidae03 medical and health sciencesSpecies SpecificityGastropodaGeneticsAnimals14. Life underwaterGlacial periodMargarellaSouthern OceanMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyPolar frontGenetic diversityPolymorphism GeneticEcologyBayes TheoremDNA15. Life on landSouth Americabiology.organism_classificationbenthic-protected developmentraftingPhylogeographyMESH: Océan Austral front polaire antarctique dispersion à longue distance développement protégé benthique incubation rafting Margarella030104 developmental biologyBiological dispersalTaxonomy (biology)[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Absence inattendue d'espèces endémiques insulaires: Dissémination sur de longues distances chez des espèces de Siphonaria sub-antarctique de haute la…

2018

International audience; Aim: We assess biogeographical patterns, population structure and the range of species in the pulmonate genus Siphonaria across the sub‐Antarctic. We hypothesized that locally endemic cryptic species will be found across the distribution of these direct‐developing limpets in the sub‐Antarctic.Location: The sub‐Antarctic coasts of the Southern Ocean including South America, the Falkland/Malvinas, South Georgia, Kerguelen and Macquarie Islands.Methods: Multi‐locus phylogenetic reconstructions, mtDNA time‐calibrated divergence time estimations and population‐based analyses of Siphonaria populations were used at the scale of the Southern Ocean.Results: We resolve two wid…

0106 biological sciences0301 basic medicinelong-distance dispersal010603 evolutionary biology01 natural sciencesSiphonariaLatitude03 medical and health sciencesSiphonariaGastropodaAntarctic circumpolar currentdirect developers14. Life underwaterpulmonateEndemismEcology Evolution Behavior and Systematics[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologysub-AntarcticEcologybiologyEcologyEuthyneura15. Life on landbiology.organism_classificationSub antarcticrafting030104 developmental biologyGeographyBiological dispersal[SDE.BE]Environmental Sciences/Biodiversity and Ecologyoceanic biogeography
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Adaptation to a seasonally varying environment: a strong latitudinal cline in reproductive diapause combined with high gene flow inDrosophila montana

2011

Adaptation to seasonal changes in the northern hemisphere includes an ability to predict the forthcoming cold season from gradual changes in environmental cues early enough to prepare for the harsh winter conditions. The magnitude and speed of changes in these cues vary between the latitudes, which induces strong selection pressures for local adaptation. We studied adaptation to seasonal changes in Drosophila montana, a northern maltfly, by defining the photoperiodic conditions leading to adult reproductive diapause along a latitudinal cline in Finland and by measuring genetic differentiation and the amount of gene flow between the sampling sites with microsatellites. Our data revealed a cl…

0106 biological sciences0303 health sciencesEcologyEcologyNorthern HemisphereCline (biology)15. Life on landDiapauseBiology010603 evolutionary biology01 natural sciencesGene flowLatitude03 medical and health sciences13. Climate actionGenetic variationEcology Evolution Behavior and Systematics030304 developmental biologyNature and Landscape ConservationIsolation by distanceLocal adaptationEcology and Evolution
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Effects of habitat fragmentation on the genetic structure of the monophagous butterfly Polyommatus coridon along its northern range margin

2004

Population genetic patterns of species at their range margin have important implications for species conservation. We performed allozyme electrophoresis of 19 loci to investigate patterns of the genetic structure of 17 populations (538 individuals) of the butterfly Polyommatus coridon, a monophagous habitat specialist with a patchy distribution. The butterfly and its larval food plant Hippocrepis comosa reach their northern distribution margin in the study region (southern Lower Saxony, Germany). Butterfly population size increased with host plant population size. The genetic differentiation between populations was low but significant (FST = 0.013). No isolation-by-distance was found. Hiera…

0106 biological sciences0303 health sciencesGenetic diversityeducation.field_of_studyHabitat fragmentationbiologyEcologyPopulation sizePopulation15. Life on landbiology.organism_classification010603 evolutionary biology01 natural sciences03 medical and health sciencesGenetic structureGeneticsHippocrepis comosaGenetic variabilityeducationEcology Evolution Behavior and Systematics030304 developmental biologyIsolation by distanceMolecular Ecology
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Microevolutionary relationships between phylogeographical history, climate change and morphological variability in the common vole (Microtus arvalis)…

2011

Aim In this study, we analyse microevolutionary processes in common voles (Microtus arvalis) through the investigation of tooth morphological structure, in order to assess the relative impact of climate and phylogeographical history. Microevolutionary studies have shown that climate change may play a role in both population phylogeography and phenotypic differentiation. However, relatively little is known about the precise relationship between phylogeography and phenotypic variability and about how organisms respond to climate change. Location France, from sea level to the Alps (5 to > 2300 m a.s.l.). Methods This morphological analysis is based on first lower molar measurements from 16 geo…

0106 biological sciences0303 health scienceseducation.field_of_studyEcologybiologyEcologyPopulationMicroevolutionClimate change15. Life on landbiology.organism_classification010603 evolutionary biology01 natural sciences03 medical and health sciencesPhylogeography13. Climate actionGeographical distanceGenetic structureVoleMicrotuseducationEcology Evolution Behavior and Systematics030304 developmental biologyJournal of Biogeography
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Effects of predation pressure and resource use on morphological divergence in omnivorous prey fish

2013

Background. Body shape is one of the most variable traits of organisms and responds to a broad array of local selective forces. In freshwater fish, divergent body shapes within single species have been repeatedly observed along the littoral-pelagic axes of lakes, where the structural complexity of near shore habitats provides a more diverse set of resources compared to the open-water zones. It remains poorly understood whether similar resource-driven polymorphism occurs among lakes that vary in structural complexity and predation pressure, and whether this variation is heritable. Here, we analyzed body shape in four populations of omnivorous roach (Rutilus rutilus) inhabiting shallow lakes.…

0106 biological sciencesAFLPStable isotope analysisGenotypeOutlier lociCyprinidaePredationZoology010603 evolutionary biology01 natural sciencesPredation03 medical and health sciencesAdaptive divergencemorfologiaGenetic driftvakaat isotoopitparasitic diseasesAnimals14. Life underwatersärkiAmplified Fragment Length Polymorphism AnalysisEcosystemEcology Evolution Behavior and Systematics030304 developmental biologyIsolation by distance0303 health sciencesGeometric morphometricsbiologyEcologyGenetic DriftShallow lakesbiology.organism_classificationBiological EvolutionGut content analysis6. Clean watersaalistusLakesPhenotypematalat järvetHabitatPredatory BehaviorPredator induced morphological defenseForage fishFreshwater fishpredaatioRutilus rutilusOmnivoreRutilusResearch ArticleBMC Evolutionary Biology
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Phenological sensitivity to climate change is higher in resident than in migrant bird populations among European cavity breeders

2018

Many organisms adjust their reproductive phenology in response to climate change, but phenological sensitivity to temperature may vary between species. For example, resident and migratory birds have vastly different annual cycles, which can cause differential temperature sensitivity at the breeding grounds, and may affect competitive dynamics. Currently, however, adjustment to climate change in resident and migratory birds have been studied separately or at relatively small geographical scales with varying time series durations and methodologies. Here, we studied differential effects of temperature on resident and migratory birds using the mean egg laying initiation dates from 10 European n…

0106 biological sciencesBLUE TITadaptation01 natural sciencesNesting Behavior010605 ornithologyGEOGRAPHICAL VARIATIONadaptation birds climate change competition information use laying date nest boxes timingtimingClimate changePasseriformesGeneral Environmental ScienceTrophic levelmedia_commonGlobal and Planetary ChangeEcologyEcologyPhenologyReproductionTemperatureEuropeNEST-SITE SELECTIONclimate changeMIGRATORY BIRDSinternationalTROPHIC LEVELSSeasonslaying datecompetitionnest boxesmedia_common.quotation_subjectta1172Climate changeBiologySPRING TEMPERATURE010603 evolutionary biologyCompetition (biology)BirdsLONG-DISTANCE MIGRANTmedicineAnimalsEnvironmental ChemistryTIT PARUS-MAJORAdaptationNest boxCompetitionSHIFTSInterspecific competitioninformation use15. Life on landSeasonalitymedicine.disease13. Climate actionbirdsFLYCATCHERS FICEDULA-HYPOLEUCAta1181Animal MigrationAdaptationGlobal Change Biology
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