Skip to main navigation Skip to search Skip to main content

Positive impacts of important bird and biodiversity areas on wintering waterbirds under changing temperatures throughout Europe and North Africa

  • Diego Pavón-Jordán*
  • , Web Abdou
  • , Hichem Azafzaf
  • , Michal Balaž
  • , Taulant Bino
  • , John J. Borg
  • , Luca Božič
  • , Stuart H.M. Butchart
  • , Preben Clausen
  • , Laimonas Sniauksta
  • , Mohamed Dakki
  • , Koen Devos
  • , Cristi Domsa
  • , Vitor Encarnaçao
  • , Khaled Etayeb
  • , Sándor Faragó
  • , Anthony D. Fox
  • , Teresa Frost
  • , Clemence Gaudard
  • , Valeri Georgiev
  • Irakli Goratze, Menno Hornman, Verena Keller, Vasiliy Kostiushyn, Tom Langendoen, Łukasz Ławicki, Christina Ieronymidou, Lesley J. Lewis, Svein Håkon Lorentsen, Leho Luigujoe, Wlodzimierz Meissner, Tibor Mikuska, Blas Molina, Petr Musil, Zuzana Musilova, Szabolcs Nagy, Viktor Natykanets, Leif Nilsson, Jean Yves Paquet, Danae Portolou, Josef Ridzon, Andrea Santangeli, Samir Sayoud, Marko Šćiban, Antra Stīpniece, Norbert Teufelbauer, Goran Topić, Danka Uzunova, Andrej Vizi, Johannes Wahl, Kiraz E. Yavuz, Marco Zenatello, Aleksi Lehikoinen
*Corresponding author for this work
  • Norwegian Institute for Nature Research
  • University of Helsinki
  • Ministry of Environment
  • Les Amies des Oiseaux (AAO)
  • Catholic University
  • Albaninan Ornithological Society
  • BirdLife Malta
  • Društvo za opazovanje in proučevanje ptic Slovenije (DOPPS)
  • BirdLife International
  • University of Cambridge
  • Aarhus University
  • Groupe de Recherche pour la Protection des Oiseaux au Maroc (GREPOM)
  • Belgian National Fund for Scientific Research
  • Romanian Ornithological Society
  • Institute for Nature Conservation and Forests
  • University of Tripoli
  • University of Sopron
  • British Trust for Ornithology
  • Fonderies Royales
  • Ministry of Environment and Water
  • Environemntal Association PSOVI
  • SOVON Vogelonderzoek Nederland
  • Swiss Ornithological Institute
  • National Academy of Sciences of Ukraine
  • Wetlands International
  • West Pomeranian Nature Society
  • BirdLife Cyprus
  • BirdWatch Ireland
  • Estonian University of Life Sciences
  • University of Gdańsk
  • Croatian Society for Bird and Nature Protection
  • Sociedad Española de Ornitología (SEO/BirdLife)
  • Czech University of Life Sciences Prague
  • Belarus Academy of Sciences
  • Lund University
  • Département Études Aves-Natagora
  • Hellenic Ornithological Society, Athens
  • SOS/BirdLife Slovakia
  • Direction Générale des Forêts
  • Bird Protection and Study Society of Serbia
  • BirdLife Österreich
  • Nase Ptice Ornithological Society
  • Macedonian Ecological Society
  • Natural History Museum of Montenegro
  • Dachverband Deutscher Avifaunisten e.V. (DDA)
  • Ondokuz Mayis University
  • Italian Institute for Environmental Protection and Research

Research output: Contribution to journalArticlepeer-review

44 Citations (Scopus)

Abstract

Migratory waterbirds require an effectively conserved cohesive network of wetland areas throughout their range and life-cycle. Under rapid climate change, protected area (PA) networks need to be able to accommodate climate-driven range shifts in wildlife if they are to continue to be effective in the future. Thus, we investigated geographical variation in the relationship between local temperature anomaly and the abundance of 61 waterbird species during the wintering season across Europe and North Africa during 1990–2015. We also compared the spatio-temporal effects on abundance of sites designated as PAs, Important Bird and Biodiversity Areas (IBAs), both, or neither designation (Unlisted). Waterbird abundance was positively correlated with temperature anomaly, with this pattern being strongest towards north and east Europe. Waterbird abundance was higher inside IBAs, whether they were legally protected or not. Trends in waterbird abundance were also consistently more positive inside both protected and unprotected IBAs across the whole study region, and were positive in Unlisted wetlands in southwestern Europe and North Africa. These results suggest that IBAs are important sites for wintering waterbirds, but also that populations are shifting to unprotected wetlands (some of which are IBAs). Such IBAs may therefore represent robust candidate sites to expand the network of legally protected wetlands under climate change in north-eastern Europe. These results underscore the need for monitoring to understand how the effectiveness of site networks is changing under climate change.

Original languageEnglish
Article number108549
JournalBiological Conservation
Volume246
DOIs
Publication statusPublished - Jun 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 15 - Life on Land
    SDG 15 Life on Land

OECD Field of Science

  • 1.6 Biological Sciences

Keywords

  • Abundance trends
  • Climate change
  • Important Bird and Biodiversity Areas (IBAs)
  • Protected areas
  • Range shift
  • Wetland conservation

Fingerprint

Dive into the research topics of 'Positive impacts of important bird and biodiversity areas on wintering waterbirds under changing temperatures throughout Europe and North Africa'. Together they form a unique fingerprint.

Cite this