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Local and Landscape‐Level Environmental Conditions Drive Habitat Selection Across Terrestrial Mammal Species

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79Institutions déclarées
22Pays d’affiliation déclarés

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ABSTRACT Aim Animal movements are a fundamental process affecting communities and ecosystems. Quantifying habitat selection across species and habitats is key for understanding how animals respond to environmental change. Currently, we lack comparative studies that examine how habitat selection varies across species traits and landscapes. We aim to quantify global patterns of habitat selection to help understand the fundamental drivers of movement behaviour. Location Global. Time Period Contemporary. Major Taxa Studied Terrestrial mammals. Methods We estimated selection coefficients for terrain ruggedness, vegetation productivity, human population density and distance to roads of individual terrestrial mammals through step‐selection analysis of 1344 GPS tracks across 48 species. We quantified intra‐ and interspecific variation and tested whether selection coefficients were associated with species traits and habitat availability. Results We observe an overall avoidance of roads and areas of high human population density as well as rugged terrain, with a large proportion of individuals selecting for areas of intermediate NDVI. However, we also found large intraspecific variation in habitat selection and show that this variation is predicted by local and landscape‐level environmental conditions rather than species traits. Individuals in more remote areas exhibited weaker functional responses to human presence than those in more disturbed areas. Avoidance of rugged terrain is also context‐dependent, with stronger avoidance when local ruggedness is high. The only exception to the observed intraspecific variability is consistent species‐level responses to road proximity. Main Conclusions Our findings contribute to the understanding of habitat selection by terrestrial mammals, showing that selection is largely shaped by environmental conditions and that animals exhibit high plasticity in their responses. Our results also provide further evidence for the significant impact of roads on animal movement. These insights can help us to understand the potential effects of environmental change on the behaviour of mammal species around the world.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Local and Landscape‐Level Environmental Conditions Drive Habitat Selection Across Terrestrial Mammal Species
Date Crossref
01/03/2026
Éditeur
Wiley
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.

Institutions déclarées

Radboud University NijmegenRadboud University Medical CenterRadboud Institute for Molecular Life SciencesNetherlands Environmental Assessment AgencyAlberta Environment and Protected AreasUniversity of British ColumbiaAlberta Biodiversity Monitoring InstituteUniversity of British Columbia, Okanagan CampusSwansea UniversityUniversity of MinnesotaMinnesota Department of Natural ResourcesSenckenberg Biodiversity and Climate Research CentreGoethe University FrankfurtUtah State UniversityUniversity of WashingtonAmerican Sentinel UniversityBotswana Predator Conservation TrustInstituto de Conservação de Animais SilvestresRoyal Veterinary CollegeAarhus UniversityMichigan Department of Natural ResourcesUniversity of PotsdamCheetah Conservation FundFondazione Edmund MachUniversity of PalermoCentre National de la Recherche ScientifiqueÉcole Pratique des Hautes ÉtudesUniversité de MontpellierCentre d'Écologie Fonctionnelle et ÉvolutiveInstitut de Recherche pour le DéveloppementRoyal Dutch Athletics FederationInstituto de Pesquisas EcológicasUniversity College DublinAnhalt University of Applied SciencesCompassionate Cancer CareUniversity of ZurichWorld Wide Fund for NatureIowa State UniversityPanthera CorporationUniversity of MontanaUniversity of FreiburgBavarian Forest National ParkUniversity of Education FreiburgUniversité Fédérale de Toulouse Midi-PyrénéesInstitut National de Recherche pour l'Agriculture, l'Alimentation et l'EnvironnementUniversity of California, DavisUnited States Geological SurveyWyoming Game and Fish DepartmentSteinhauser (Czechia)Alberta Conservation AssociationEcofys (Netherlands)University of Inland NorwayNorwegian Institute for Nature ResearchStony Brook UniversityUniversity of South AfricaCSIRO Land and WaterNorwegian Institute of Bioeconomy ResearchUniversity of AlbertaBrazilian Agricultural Research CorporationUniversity of OsloSmithsonian Conservation Biology InstituteNational Zoological ParkConservation Biology InstituteNational University of MisionesInstituto de Biología SubtropicalNorthern Michigan UniversityMontana Fish, Wildlife & ParksPrinceton UniversityFondation Pour la Recherche Sur la BiodiversitéWestern EcoSystems Technology (United States)Consejo Superior de Investigaciones CientíficasEstación Biológica de DoñanaInstitute of Nature ConservationPolish Academy of SciencesUniversity of Applied Sciences PotsdamGuyra ParaguayNational University of MongoliaUniversity of Veterinary Medicine Hannover, FoundationRoztocze National Park

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Sujets associés

Wildlife-Road Interactions and ConservationWildlife Ecology and ConservationAnimal Ecology and Behavior Studies

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