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Accès ouvert déclaré 2026 article

Micro‐Refuges or Ecological Traps: Context‐Dependent Effects of Rock Pools on Intertidal Biodiversity Across Latitudes

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60Institutions déclarées
27Pays d’affiliation déclarés

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ABSTRACT Aim We investigated how local‐scale environmental heterogeneity influences biodiversity patterns across broad biogeographic gradients, using intertidal microhabitats as a model system within one of the most environmentally stressful ecosystems on Earth. Location Intertidal habitats at 26 locations (two rocky shore sites per location) across six continents, spanning 98° of latitude (38°S to 60°N). Time Period 2019–2022. Major Taxa Studied Algae, sessile and mobile invertebrates. Methods We compared biodiversity and thermal environments across contrasting microhabitats (rock pools and adjacent emergent rock) along a latitudinal gradient, sampling during environmentally ‘milder’ and ‘harsher’ periods. Biodiversity was quantified using multiple richness metrics (mean, total, unique taxa) and functional diversity. Results Microhabitat differences strongly influenced biodiversity patterns across latitude. Rock pools consistently supported higher taxonomic and functional diversity than emergent rock, irrespective of sampling period, reflecting their ability to buffer thermal extremes, particularly under harsher conditions. Mean species richness exhibited a non‐linear, s‐shaped latitudinal pattern, with lowest values near the equator and higher richness at mid‐latitudes, diverging from classical Latitudinal Diversity Gradient expectations. Biodiversity differences between microhabitats were greatest in temperate regions and diminished at low latitudes, where extreme conditions constrained diversity across habitats. Main Conclusions Local environmental heterogeneity can substantially modify, and in some cases obscure large‐scale biodiversity patterns. By mediating exposure to environmental stress, intertidal microhabitats provide insight into how fine‐scale variability interacts with latitudinal stress gradients to shape biodiversity distributions. Incorporating microhabitat variability into biogeographic frameworks is important for understanding global biodiversity patterns and predicting ecological responses to climate change.

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Contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Micro‐Refuges or Ecological Traps: Context‐Dependent Effects of Rock Pools on Intertidal Biodiversity Across Latitudes
Date Crossref
01/02/2026
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

University College CorkUniversity of PlymouthUniversity of ŁódźUniversity of AucklandMassey UniversityMetropolitan UniversityUniversidad de Costa RicaUniversity of JohannesburgUniversiti Sains MalaysiaNorwegian Institute for Water ResearchFederal Institute of São PauloUniversidade Federal de São PauloIfremerMacquarie UniversityLuxel (United States)Indigenous Education InstituteOcean University of ChinaInstitut Agro Rennes-AngersInstitut National de Recherche pour l'Agriculture, l'Alimentation et l'EnvironnementUniversidad de SevillaSwansea UniversityMarine Biological Association of the United KingdomNational Oceanography CentreUniversity of SouthamptonUniversity of TsukubaUniversity of Washington TacomaSungkyunkwan UniversityThe University of MelbourneUniversity of Hong KongUniversidade do PortoUniversity of Alaska FairbanksSaurashtra UniversityTokyo University of Marine Science and TechnologyCity University of Hong KongHainan UniversityAnhui Academy of Agricultural SciencesInstitute of the Estonian LanguageUniversity of TartuUNSW SydneySydney Institute of Marine ScienceUniversity of AlgarveRhodes UniversityNewcastle UniversityUniversity of Dar es SalaamInstituto de Física de CantabriaIHCantabria - Instituto de Hidráulica Ambiental de la Universidad de CantabriaCatholic University of the MauleBernardino Rivadavia Natural Sciences MuseumUniversity of Argentine Social MuseumInstituto de Engenharia de Sistemas e Computadores Investigação e DesenvolvimentoUniversity of LisbonInstituto Politécnico de LisboaUniversity of TasmaniaCentre for Marine SocioecologyNational University of SingaporeUniversity of WashingtonPrince of Songkla UniversityUniversity of HullHeriot-Watt UniversityKing Abdullah University of Science and Technology

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Marine and coastal plant biologyMarine Biology and Ecology ResearchCoral and Marine Ecosystems Studies

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