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Climate change drives migratory range shift via individual plasticity in shearwaters

  • Patrick J. Lewin
  • , Joe Wynn
  • , José Manuel Arcos
  • , Rhiannon E. Austin
  • , Josephine Blagrove
  • , Sarah Bond
  • , Gemma Carrasco
  • , Karine Delord
  • , Lewis Fisher-Reeves
  • , David García
  • , Natasha Gillies
  • , Tim Guilford
  • , Isobel Hawkins
  • , Paris Jaggers
  • , Christian Kirk
  • , Maite Louzao
  • , Lou Maurice
  • , Miguel McMinn
  • , Thierry Micol
  • , Joe Morford
  • Greg Morgan, Jason Moss, Elisa Miquel Riera, Ana Rodriguez, Katrina Siddiqi-Davies, Henri Weimerskirch, Russell B. Wynn, Oliver Padget
  • University of Oxford
  • Sociedad Española de Ornitología/BirdLife
  • University of Liverpool
  • Iniciativa de Recerca de la Biodiversitat de les Illes
  • Centre d’Etudes Biologiques de Chizé
  • AZTI Fundazioa
  • British Geological Survey
  • Universitat de les Illes Balears
  • Ligue pour la Protection des Oiseaux
  • Royal Society for the Protection of Birds
  • National Oceanography Centre, Southampton

Research output: Contribution to journalArticlepeer-review

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Abstract

How individual animals respond to climate change is key to whether populations will persist or go extinct. Yet, few studies investigate how changes in individual behavior underpin these population-level phenomena. Shifts in the distributions of migratory animals can occur through adaptation in migratory behaviors, but there is little understanding of how selection and plasticity contribute to population range shift. Here, we use long-term geolocator tracking of Balearic shearwaters ( Puffinus mauretanicus ) to investigate how year-to-year changes in individual birds’ migrations underpin a range shift in the post-breeding migration. We demonstrate a northward shift in the post-breeding range and show that this is brought about by individual plasticity in migratory destination, with individuals migrating further north in response to changes in sea-surface temperature. Furthermore, we find that when individuals migrate further, they return faster, perhaps minimizing delays in return to the breeding area. Birds apparently judge the increased distance that they will need to migrate via memory of the migration route, suggesting that spatial cognitive mechanisms may contribute to this plasticity and the resulting range shift. Our study exemplifies the role that individual behavior plays in populations’ responses to environmental change and highlights some of the behavioral mechanisms that might be key to understanding and predicting species persistence in response to climate change.
Original languageEnglish
Article numbere2312438121
JournalProceedings of the National Academy of Sciences of the USA
Volume121
Issue number6
Early online date29 Jan 2024
DOIs
Publication statusPublished - 6 Feb 2024

UN SDGs

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

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • Multidisciplinary

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