Search results for "Biological dispersal"

showing 10 items of 326 documents

To Swim or Not to Swim: Potential Transmission of Balaenophilus manatorum (Copepoda: Harpacticoida) in Marine Turtles

2017

Species of Balaenophilus are the only harpacticoid copepods that exhibit a widespread, obligate association with vertebrates, i.e., B. unisetus with whales and B. manatorum with marine turtles and manatees. In the western Mediterranean, juveniles of the loggerhead sea turtle, Caretta caretta are the only available hosts for B. manatorum, which has been found occurring at high prevalence (>80%) on them. A key question is how these epibionts are transmitted from host to host. We investigated this issue based on experiments with live specimens of B. manatorum that were cultured with turtle skin. Specimens were obtained from head-started hatchlings of C. caretta from the western Mediterranean. …

0106 biological sciencesAvian clutch sizePhysiologyOvipositionlcsh:MedicinePathogenesisPathology and Laboratory Medicine01 natural sciencesLoggerhead sea turtlelaw.inventionlawReproductive PhysiologyMedicine and Health SciencesBiomechanicsTurtle (robot)lcsh:ScienceHarpacticoidaMusculoskeletal SystemMultidisciplinarybiologyOrganic CompoundsPlanktonTurtlesCrustaceansChemistryVertebratesHost-Pathogen InteractionsPhysical SciencesLegsAnatomyClutchesResearch ArticleArthropoda010603 evolutionary biologyCopepodsHost-Parasite InteractionsCopepodaSea WaterAnimalsSymbiosisHatchlingSwimmingEthanolBiological Locomotion010604 marine biology & hydrobiologylcsh:RLimbs (Anatomy)Organic ChemistryOrganismsChemical CompoundsBiology and Life SciencesReptilesbiology.organism_classificationInvertebratesFisheryBaleenTestudinesAlcoholsAmniotesEarth SciencesBiological dispersallcsh:QHydrologyhuman activitiesPLoS ONE
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A niche perspective on the range expansion of symbionts.

2020

Range expansion results from complex eco-evolutionary processes where range dynamics and niche shifts interact in a novel physical space and/or environment, with scale playing a major role. Obligate symbionts (i.e. organisms permanently living on hosts) differ from free-living organisms in that they depend on strong biotic interactions with their hosts which alter their niche and spatial dynamics. A symbiotic lifestyle modifies organism–environment relationships across levels of organisation, from individuals to geographical ranges. These changes influence how symbionts experience colonisation and, by extension, range expansion. Here, we investigate the potential implications of a symbiotic…

0106 biological sciencesBiotopeRange (biology)Enemy releaseNichePhoresyMetapopulationBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesHost switchingAnimalsSymbiosisEcosystem030304 developmental biologyDemography0303 health sciencesObligateHost (biology)EcologyBiological EvolutionNiche constructionSymbiont organisation levelsEcological fittingBiological dispersalMetapopulationNiche constructionEnvironmental stabilityGeneral Agricultural and Biological SciencesEcological fittingColonisation processBiological reviews of the Cambridge Philosophical SocietyXII. REFERENCES
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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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A multidisciplinary analytical framework to delineate spawning areas and quantify larval dispersal in coastal fish

2019

International audience; Assessing larval dispersal is essential to understand the structure and dynamics of marine populations. However, knowledge about early-life dispersal is sparse, and so is our understanding of the spawning process, perhaps the most obscure component of biphasic life cycles. Indeed, the poorly known species-specific spawning modality and early-life traits, along with the high spatio-temporal variability of the oceanic circulation experienced during larval drift, hamper our ability to properly appraise the realized connectivity of coastal fishes. Here, we propose an analytical framework which combines Lagrangian modeling, network theory, otolith analyses and biogeograph…

0106 biological sciencesConservation of Natural ResourcesOceans and SeasPopulation DynamicsCoastal fishEcosystem ManagementConservationAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesFish natal originsmedicineMediterranean SeaAnimalsDiplodus vulgarisMarine ecosystem14. Life underwaterEcosystemOtolithMarine Protected AreaLagrangian Flow Network[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmosphere[SDV.EE]Life Sciences [q-bio]/Ecology environmentFish natal originbiologyEcology010604 marine biology & hydrobiologyFishesMarine connectivityPelagic zoneGeneral MedicineDiplodusbiology.organism_classificationPollutionCoastal fishesCoastal fishemedicine.anatomical_structureLarvaBiological dispersalMarine protected areaModels-hydrodynamicsModels-hydrodynamic
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Large-scale distribution analysis of Antarctic echinoids using ecological niche modelling.

2012

Understanding the factors that determine the distribution of taxa at various spatial scales is a crucial challenge in the context of global climate change. This holds particularly true for polar marine biota that are composed of both highly adapted and vulnerable faunas. We analysed the distribution of 2 Antarctic echinoid species, Sterechinus antarcticus and S. neumayeri, at the scale of the entire Southern Ocean using 2 niche modelling procedures. The performance of distribution models was tested with regard to the known ecology of the species. The respective contributions of environmental parameters are discussed along with the putative roles played by biotic interactions and biogeograph…

0106 biological sciencesContext (language use)Aquatic ScienceHabitat suitability map010603 evolutionary biology01 natural sciences[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsGARPSea ice14. Life underwaterSouthern OceanEcology Evolution Behavior and SystematicsPolar frontEcological nichegeography[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologygeography.geographical_feature_categoryBiotic componentEcologybiologyEcology010604 marine biology & hydrobiologyEchinoidea15. Life on landbiology.organism_classificationSterechinus[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsSterechinusOceanographyArctic13. Climate actionEchinoidea [Sea urchins]Biological dispersal[SDE.BE]Environmental Sciences/Biodiversity and EcologyMaxent
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Impacts of agricultural intensification on bird communities: New insights from a multi-level and multi-facet approach of biodiversity

2016

International audience; Following the multiplicity of studies dealing with the effects of agricultural intensification on bird diversity, one of the lessons drawn is that these effects depend on both the taxonomic group, the component of diversity, the aspect of intensification, and the spatial scale. This often leads to disparate results among studies suggesting that the investigation of agriculture-biodiversity relationships suffers from scale-dependence, information redundancy, non-linearity problems, and thus, unpredictability.Here, we propose a multi-scale and multi-facet approach to clarify the impacts of agricultural intensification on biodiversity and possible mitigating actions. Ou…

0106 biological sciencesCrop practices010504 meteorology & atmospheric sciencesta1172BiodiversityBeta diversityScalesLand coverGeneralist and specialist speciesFarmland bird diversity010603 evolutionary biology01 natural sciences0105 earth and related environmental sciencesTrophic level2. Zero hungerEcologyAgroforestryEcologybusiness.industryAgricultural intensification15. Life on landGeographyLandscape homogenisationAgricultureSpatial ecologyta1181Biological dispersalAnimal Science and ZoologySpecies traits[SDE.BE]Environmental Sciences/Biodiversity and EcologybusinessAgronomy and Crop Science
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Introduced alien signal crayfish (Pacifastacus leniusculus) in Finland : uncontrollable expansion despite numerous crayfisheries strategies

2018

In Finland, massive signal crayfish introductions started towards the end of 1980s, with an estimated total of 2.2 million signal crayfish been stocked before year 2016. During that period, Finnish fisheries authorities have implemented three national management strategies setting guidelines for the crayfish introductions. The main aims of the strategies have been conservation of native noble crayfish stocks and a controlled spreading of the alien signal crayfish within a designated region. In this study, we report the current distribution of signal crayfish in Finland in comparison to the guidelines set in these three national strategies. The present distribution area of the signal crayfis…

0106 biological sciencesCurrent distributionistutusAlientäplärapuManagement Monitoring Policy and LawAquatic Science010603 evolutionary biology01 natural sciencesSignal crayfishPacifastacuslcsh:Aquaculture. Fisheries. Anglingnon-native crayfishStockingvieraslajitAlien speciesdispersalNature and Landscape ConservationWater Science and Technologylcsh:SH1-691Ecologybiology010604 marine biology & hydrobiologybiology.organism_classificationCrayfishFisheryGeographyintroductionarticlesta1181Biological dispersalstrategymanagementleviäminen
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Degradation of sexual reproduction in Veronica filiformis after introduction to Europe

2011

Abstract Background Baker’s law predicts that self-incompatible plant species are generally poor colonizers because their mating system requires a high diversity of genetically differentiated individuals and thus self-compatibility should develop after long-distance dispersal. However, cases like the introduction of the self-incompatible Veronica filiformis (Plantaginaceae) to Europe constitute an often overlooked alternative to this rule. This species was introduced from subalpine areas of the Pontic-Caucasian Mountains and colonized many parts of Central and Western Europe in the last century, apparently without producing seeds. To investigate the consequences of the absence of sexual rep…

0106 biological sciencesDNA PlantEvolutionIntroduced speciesFlowersBiologymedicine.disease_cause010603 evolutionary biology01 natural sciences03 medical and health sciencesGenetics (medical genetics to be 30107 and agricultural genetics to be 40402)PollenBotanyQH359-425medicineAmplified Fragment Length Polymorphism AnalysisOvuleCrosses GeneticEcology Evolution Behavior and Systematics030304 developmental biologyOvuleAnalysis of VarianceEvolutionary Biology0303 health sciencesGeographyEcologyObligateReproductionVeronica filiformisBotanyGenetic VariationSelf-Incompatibility in Flowering Plantsfood and beverages15. Life on landMating systembiology.organism_classificationVeronicaSexual reproductionEuropeSeedsPollenBiological dispersalIntroduced SpeciesResearch ArticleBMC Evolutionary Biology
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Quorum Sensing and Density-Dependent Dispersal in an Aquatic Model System

2012

International audience; Many organisms use cues to decide whether to disperse or not, especially those related to the composition of their environment. Dispersal hence sometimes depends on population density, which can be important for the dynamics and evolution of subdivided populations. But very little is known about the factors that organisms use to inform their dispersal decision. We investigated the cues underlying density-dependent dispersal in interconnected microcosms of the freshwater protozoan Paramecium caudatum. In two experiments, we manipulated (i) the number of cells per microcosm and (ii) the origin of their culture medium (supernatant from high-or low-density populations). …

0106 biological sciencesDYNAMICSAquatic OrganismsParameciumPopulation DynamicsEMIGRATIONlcsh:MedicineMarine and Aquatic Sciences01 natural sciencesPopulation densityBehavioral EcologySpatial and Landscape Ecologylcsh:ScienceOrganismFreshwater Ecology0303 health sciencesMultidisciplinarybiologyEcologyAnimal BehaviorEcologySwarm behaviourQuorum Sensing[SDE]Environmental SciencesMicrocosmResearch ArticleFreshwater EnvironmentsSignal TransductionMetapopulation DynamicsSTRATEGIESMovementMarine Biology010603 evolutionary biologyModels Biological03 medical and health sciencesRATESBiologySOCIAL INFORMATION;EVOLUTION;EMIGRATION;STRATEGIES;DYNAMICS;LIZARD;RATES030304 developmental biologyPopulation Biologylcsh:RSOCIAL INFORMATIONLIZARDbiology.organism_classificationEVOLUTIONQuorum sensingEarth SciencesBiological dispersallcsh:QParamecium caudatumAdaptation[SDE.BE]Environmental Sciences/Biodiversity and EcologyZoologyEcological Environments
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Spatial structure and β-diversity of phytoplankton in Tibetan Plateau lakes: nestedness or replacement?

2017

Spatial patterns and β-diversity of phytoplankton assemblages depend on the relative importance of species dispersal capacity and species-sorting. Variability in species composition, composed by differences in species richness (nestedness) and/or species replacement, may be caused by niche availability and environmental selection. A field survey was carried out in Tibetan plateau on 38 lakes. Tibetan plateau lakes, located at high elevation, are harsh ecosystems characterized by low temperatures, low available nutrients, high UV amount, and strong salinity gradients. Only well-adapted species can survive in these environments. We therefore hypothesized that environmental filtering was the m…

0106 biological sciencesEcological nicheDiversitygeographyPlateaugeography.geographical_feature_categoryNiche theoryEcology010604 marine biology & hydrobiologySpatial scalefungiAquatic ScienceBiology010603 evolutionary biology01 natural sciencesSettore BIO/03 - Botanica Ambientale E ApplicataPhytoplanktonSpatial ecologyBiological dispersalNestednessEcosystemHarsh environmentSpecies richnessEnvironmental filteringHydrobiologia
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