Search results for "Wildlife Ecology and Conservation"

showing 10 items of 11 documents

Will legal international rhino horn trade save wild rhino populations?

2020

Wild vertebrate populations all over the globe are in decline, with poaching being the second-most-important cause. The high poaching rate of rhinoceros may drive these species into extinction within the coming decades. Some stakeholders argue to lift the ban on international rhino horn trade to potentially benefit rhino conservation, as current interventions appear to be insufficient. We reviewed scientific and grey literature to scrutinize the validity of reasoning behind the potential benefit of legal horn trade for wild rhino populations. We identified four mechanisms through which legal trade would impact wild rhino populations, of which only the increased revenue for rhino farmers cou…

0106 biological sciencesAquatic Ecology and Water Quality ManagementPopulationWildlifeRhinocerosConservation010603 evolutionary biology01 natural sciencesArticleSouth AfricaTraditional Chinese medicinesocioeconomicsWildlife crimelcsh:QH540-549.5uhanalaiset eläimetDevelopment economicsRevenueTraditional Chinese Medicinesalametsästyseducationkiinalainen lääketiedesosioekonomiset tekijätEcology Evolution Behavior and SystematicsNature and Landscape ConservationLegalizationeducation.field_of_studylajiensuojeluPlan_S-Compliant-TAEcologyCITES010604 marine biology & hydrobiologyLaw enforcementconservationsarvikuonotPoachingAquatische Ecologie en WaterkwaliteitsbeheerPE&RCVillieläimistön ja -kasviston uhanalaisten lajien kansainvälistä kauppaa koskeva yleissopimuswildlife crimekansainväliset sopimuksetCITESSocioeconomicsInternationalWildlife Ecology and ConservationWIASEtelä-AfrikkaBusinesslcsh:EcologyGlobal Ecology and Conservation
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Effects of a mobile disturbance pattern on dynamic patch networks and metapopulation persistence

2021

Abstract Motivation Certain early-succession habitats may emerge only at restricted locations following disturbance. Therefore, whether disturbances tend to occur at certain sites or not can significantly affect habitat availability and metapopulation persistence of early-successional habitat specialists. Available models that combine metapopulation and landscape processes do not address how to model mobile, spatially shifting disturbance intensities independent of factors of site suitability. We present a model that allows the study on how a mobile disturbance pattern, of either natural or anthropogenic origin, affects patch network and metapopulation dynamics in realistic, heterogeneous l…

0106 biological sciencesThe false heath fritillaryDisturbance (geology)Metapopulation dynamicsClimate changeHabitat suitability modelsMetapopulationhabitaatti010603 evolutionary biology01 natural sciencesMetapopulation modelsmetapopulaatiotMelitaea diaminaMelitaea diaminabiologyEcology010604 marine biology & hydrobiologyEcological Modelingtummaverkkoperhonen15. Life on landbiology.organism_classificationpopulaatiodynamiikkaHabitat dynamicsHeath fritillaryGeographyHabitatWildlife Ecology and ConservationButterflyPersistence (discontinuity)
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In utero behavioral imprinting to predation risk in pups of the bank vole

2020

Abstract In the predator–prey arms race, survival-enhancing adaptive behaviors are essential. Prey can perceive predator presence directly from visual, auditory, or chemical cues. Non-lethal encounters with a predator may trigger prey to produce special body odors, alarm pheromones, informing conspecifics about predation risks. Recent studies suggest that parental exposure to predation risk during reproduction affects offspring behavior cross-generationally. We compared behaviors of bank vole (Myodes glareolus) pups produced by parents exposed to one of three treatments: predator scent from the least weasel (Mustela nivalis nivalis); scent from weasel-exposed voles, i.e., alarm pheromones;…

0106 biological sciencesalarm pheromoneOffspringodormetsämyyräZoologyBiology010603 evolutionary biology01 natural sciencesPredationhaju03 medical and health sciencesALARMpredation riskOdorPredatorEcology Evolution Behavior and Systematics030304 developmental biologyferomonit0303 health sciencessaaliseläimetbiology.organism_classificationPE&RCOlfactionBank voleOdorAnimal ecologycross-generational effectsWildlife Ecology and ConservationAlarm pheromonePheromoneCross-generational effectsAnimal Science and ZoologyPredation riskolfactionBehavioral Ecology and Sociobiology
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Flexibility in otherwise consistent non-breeding movements of a long-distance migratory seabird, the long-tailed skua

2017

Quantifying within- and between-individual variation in animal migration strategies is a first step towards our understanding of the ability of migrants to adjust to changes in the en - vironment. We studied consistency (or, conversely, flexibility) in movement patterns at large (>1000 km) to meso-scales (100−1000 km) during the non-breeding season of the long-tailed skua Stercorarius longicaudus, a long-distance migratory Arctic seabird, using light-based geolocation. We obtained 97 annual tracks of 38 individuals and quantified similarity between routes. Overall, tracks of the same individual were generally within about 200 to 300 km of their previous year’s route, and more similar than t…

ATLANTIC0106 biological sciencesEnvironmental changeIndividual consistency · Repeatability · Stercorarius longicaudus · Seabirds · Tracking · Non-breeding movements · Flexibility:Zoology and botany: 480 [VDP]CONSERVATIONMODELSTRANS-EQUATORIAL MIGRATIONAquatic Science010603 evolutionary biology01 natural sciencesSkuaStercorarius longicaudusOnderzoeksformatieOCEANALBATROSSESindividual consistencyDISPERSALbiology.animalRepeatability:Zoologiske og botaniske fag: 480 [VDP]Ecology Evolution Behavior and SystematicsEcologybiologyEcology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]010604 marine biology & hydrobiologyFlexibility (personality)trackingbiology.organism_classificationTERNS STERNA-PARADISAEASeabirdsGeolocation[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]GeographyArcticWildlife Ecology and ConservationStercorarius longicaudusNAVIGATIONWIASnon-breeding movementsBiological dispersalSeabirdFlexibilityBEHAVIOR
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Mammal assemblage composition predicts global patterns in emerging infectious disease risk

2021

Abstract As a source of emerging infectious diseases, wildlife assemblages (and related spatial patterns) must be quantitatively assessed to help identify high‐risk locations. Previous assessments have largely focussed on the distributions of individual species; however, transmission dynamics are expected to depend on assemblage composition. Moreover, disease–diversity relationships have mainly been studied in the context of species loss, but assemblage composition and disease risk (e.g. infection prevalence in wildlife assemblages) can change without extinction. Based on the predicted distributions and abundances of 4466 mammal species, we estimated global patterns of disease risk through …

BiodiversityDIVERSITYAnimal Sciences DeskzoonoositCommunicable Diseases EmergingeläinmaantiedetartuntatauditBureau DierwetenschappenPrimary Research ArticleGeneral Environmental ScienceBODY-SIZEMammals2. Zero hungerGlobal and Planetary ChangeEcologyEcologyassemblage composition; climate change; emerging infectious diseases; habitat loss; infectious disease hotspots; species distributionsassemblage compositionPOPULATION-DENSITYeliöyhteisötriskinarviointiPE&RCEXTINCTION RISKclimate changespecies distributions1181 Ecology evolutionary biologyEmerging infectious diseaseWILDLIFEhabitat lossWildlifeContext (language use)Biologyemerging infectious diseasesEVENNESSnisäkkäätAnimalsEnvironmental ChemistryeläimistöEcosystemPATHOGENSSPECIES DISTRIBUTION MODELS15. Life on landilmastonmuutoksetPrimary Research ArticlesbiodiversiteettiHabitat destruction13. Climate actionInfectious disease (medical specialty)villieläimetWildlife Ecology and ConservationSpatial ecologyBIODIVERSITYSpecies richnessLIVING FASTEnvironmental Sciencesinfectious disease hotspots
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BioTIME: A database of biodiversity time series for the Anthropocene

2018

Abstract Motivation The BioTIME database contains raw data on species identities and abundances in ecological assemblages through time. These data enable users to calculate temporal trends in biodiversity within and amongst assemblages using a broad range of metrics. BioTIME is being developed as a community-led open-source database of biodiversity time series. Our goal is to accelerate and facilitate quantitative analysis of temporal patterns of biodiversity in the Anthropocene. Main types of variables included The database contains 8,777,413 species abundance records, from assemblages consistently sampled for a minimum of 2 years, which need not necessarily be consecutive. In addition, th…

Data Papers0106 biological sciencesRange (biology)QH301 BiologytemporalNERCBiodiversity:Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480 [VDP]BIALOWIEZA NATIONAL-PARKspecialcomputer.software_genre[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy01 natural sciencesspecies richnessSDG 15 - Life on LandbiodiversityGlobal and Planetary ChangeB003-ecologyDatabaseEcologySampling (statistics)SIMULATED HERBIVORYsupporting technologiesLAND-BRIDGE ISLANDS[SDV.BV.BOT]Life Sciences [q-bio]/Vegetal Biology/BotanicsPE&RCglobal/dk/atira/pure/thematic/inbo_th_00032PRIMEVAL TEMPERATE FORESTGeographyPOPULATION TRENDS/dk/atira/pure/discipline/B000/B003biodiversity; global; special; species richness; temporal; turnoverData PaperSECONDARY FORESTEvolutionESTUARINE COASTAL LAGOON010603 evolutionary biology/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterQH301[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsBehavior and SystematicsAnthropocenebiodiversity; global; spatial; species richness; temporal; turnover; Global and Planetary Change; Ecology Evolution Behavior and Systematics; EcologyVDP::Mathematics and natural science: 400::Zoology and botany: 480species richne14. Life underwaterSDG 14 - Life Below WaterNE/L002531/1ZA4450Relative species abundanceEcology Evolution Behavior and SystematicsZA4450 Databases010604 marine biology & hydrobiologyturnoverRCUKBiology and Life SciencesDAS/dk/atira/pure/technological/ondersteunende_technieken15. Life on landDECIDUOUS FORESTspatialTaxonFish13. Climate actionMCPWildlife Ecology and ConservationLONG-TERM CHANGESpecies richness[SDE.BE]Environmental Sciences/Biodiversity and EcologycomputerGlobal and Planetary ChangeBIRD COMMUNITY DYNAMICSVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480
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Harnessing the biodiversity value of Central and Eastern European farmland

2015

A large proportion of European biodiversity today depends on habitat provided by low‐intensity farming practices, yet this resource is declining as European agriculture intensifies. Within the European Union, particularly the central and eastern new member states have retained relatively large areas of species‐rich farmland, but despite increased investment in nature conservation here in recent years, farmland biodiversity trends appear to be worsening. Although the high biodiversity value of Central and Eastern European farmland has long been reported, the amount of research in the international literature focused on farmland biodiversity in this region remains comparatively ti…

[SDV]Life Sciences [q-bio]BiodiversityEuropean unionAccession[SHS]Humanities and Social SciencesAgricultural landAgricultural intensification; agri-environment schemes; common agricultural policy; European Union; high nature value farmlandspecies richnessintensificationmedia_common2. Zero hungerhigh nature value farmlandagri-environment schemesEcologyconservationCommon agricultural policyPE&RCcommon agricultural policyEastern europeanEcosystems ResearchAgri-environment schemesbuntings miliaria-calandra1181 Ecology evolutionary biologyeu accessionDierecologieAnimal EcologyCommon Agricultural PolicyHigh nature value farmlandResource (biology)agri environment schemesEnvironmental science4111 AgronomyAgricultural intensification agri-environment schemes common agricultural policy European Union high nature value farmlandmedia_common.cataloged_instanceEuropean unionland-use intensity/dk/atira/pure/core/keywords/biologyEcology Evolution Behavior and Systematics1172 Environmental scienceseuropean unionbusiness.industryAgricultural intensificationbird populationsagri-environmental measuresmember states15. Life on landMedio AmbienteAgricultureWildlife Ecology and Conservation570 Life sciences; biologyagricultural intensificationbusiness
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Effect of Land-Use Change on the Changes in Human Lyme Risk in the United States

2022

The spatial extent and incidence of Lyme disease is increasing in the United States, particularly in the Upper Midwest and Northeast. Many previous studies have explored the drivers of its spatial pattern, however, few studies tried to explore the drivers for the changes of Lyme disease. We here compared the spatial patterns of changes of human Lyme cases and incidence in the Northeast and Upper Midwest between 2003–2005 and 2015–2017, and applied two different approaches (i.e., a statistical regularization approach and model averaging) to investigate the climatic and landscape factors affecting the risk change between the two periods. Our results suggested that changes in land-use variable…

esiintyvyysLyme disease; <i>Borrelia burgdorferi</i>; landscape factors; climatic factors; risk changeympäristötekijätRenewable Energy Sustainability and the EnvironmentGeography Planning and Developmentlandscape factorszoonoositriskitekijätmaankäyttöilmastonmuutoksetManagement Monitoring Policy and LawPE&RCclimatic factorsBorrelia-bakteeritborrelioosiWildlife Ecology and ConservationBorrelia burgdorferiLymen borrelioosiLyme diseasesense organsLaboratory of Nematologyskin and connective tissue diseasesLaboratorium voor Nematologierisk changeSustainability
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Pre- and Postnatal Predator Cues Shape Offspring Anti-predatory Behavior Similarly in the Bank Vole

2021

Prey animals can assess the risks predators present in different ways. For example, direct cues produced by predators can be used, but also signals produced by prey conspecifics that have engaged in non-lethal predator-prey interactions. These non-lethal interactions can thereby affect the physiology, behavior, and survival of prey individuals, and may affect offspring performance through maternal effects. We investigated how timing of exposure to predation-related cues during early development affects offspring behavior after weaning. Females in the laboratory were exposed during pregnancy or lactation to one of three odor treatments: (1) predator odor (PO) originating from their most comm…

feromonitalarm pheromonesaaliseläimetEcologyjyrsijätmetsämyyräEvolutionlumikkoPE&RClisääntymineneläinten käyttäytyminenhajuWildlife Ecology and Conservationpredation riskcross-generational effectsrodentspetoeläimetconspecific alarm cueQH359-425odor cuesEcology Evolution Behavior and SystematicsQH540-549.5Frontiers in Ecology and Evolution
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Exposure to Chemical Cues from Predator-Exposed Conspecifics Increases Reproduction in a Wild Rodent

2018

Abstract Predation involves more than just predators consuming prey. Indirect effects, such as fear responses caused by predator presence, can have consequences for prey life history. Laboratory experiments have shown that some rodents can recognize fear in conspecifics via alarm pheromones. Individuals exposed to alarm pheromones can exhibit behavioural alterations that are similar to those displayed by predator-exposed individuals. Yet the ecological and evolutionary significance of alarm pheromones in wild mammals remains unclear. We investigated how alarm pheromones affect the behaviour and fitness of wild bank voles (Myodes glareolus) in outdoor enclosures. Specifically, we compared th…

feromonitmetsämyyrälcsh:Rbehavioural ecologylcsh:MedicinePE&RClisääntyminensaalistusevoluutioekologiaWildlife Ecology and ConservationMyodes glareolusLife Sciencelcsh:Qlcsh:ScienceScientific Reports
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