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Climate change drives widespread shifts in lake thermal habitat

  • Benjamin M. Kraemer
  • , Rachel M. Pilla
  • , R. Iestyn Woolway
  • , Orlane Anneville
  • , Syuhei Ban
  • , William Colom-Montero
  • , Shawn P. Devlin
  • , Martin T. Dokulil
  • , Evelyn E. Gaiser
  • , K. David Hambright
  • , Dag O. Hessen
  • , Scott N. Higgins
  • , Klaus D. Johnk
  • , Wendel Keller
  • , Lesley B. Knoll
  • , Peter R. Leavitt
  • , Fabio Lepori
  • , Martin S. Luger
  • , Stephen C. Maberly
  • , Dorthe C. Mueller-Navarra
  • Andrew M. Paterson, Donald C. Pierson, David C. Richardson, Michela Rogora, James A. Rusak, Steven Sadro, Nico Salmaso, Martin Schmid, Eugene A. Silow, Ruben Sommaruga, Julio A. A. Stelzer, Dietmar Straile, Wim Thiery, Maxim A. Timofeyev, Piet Verburg, Gesa A. Weyhenmeyer, Rita Adrian
  • Leibniz Institute for Freshwater Ecology and Inland Fisheries, Berlin
  • University of Miami
  • University Savoie Mont Blanc
  • University of Shiga Prefecture
  • Uppsala University
  • University of Montana
  • University of Innsbruck
  • Florida International University, Miami
  • The University of Oklahoma
  • University of Oslo
  • IISD Experimental Lakes Area Inc
  • Commonwealth Scientific and Industrial Research Organization
  • Laurentian University
  • University of Minnesota
  • University of Regina, Saskatchewan
  • University of Applied Sciences and Arts of Southern Switzerland
  • Federal Agency for Water Management
  • Centre for Ecology & Hydrology, Lancaster
  • University of Hamburg
  • Ontario Ministry of the Environment Conservation and Parks
  • CNR Water Research Institute (IRSA)
  • State University of New York at New Paltz
  • University of California, Davis
  • Fondazione Edmund Mach, Trento
  • Swiss Federal Institute of Aquatic Science and Technology
  • Irkutsk State University
  • Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Berlin
  • University of Konstanz
  • ETH Zürich
  • National Institute of Water and Atmospheric Research, Hamilton, New Zealand

Research output: Contribution to journalArticlepeer-review

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Abstract

Lake surfaces are warming worldwide, raising concerns about lake organism responses to thermal habitat changes. Species may cope with temperature increases by shifting their seasonality or their depth to track suitable thermal habitats, but these responses may be constrained by ecological interactions, life histories or limiting resources. Here we use 32 million temperature measurements from 139 lakes to quantify thermal habitat change (percentage of non-overlap) and assess how this change is exacerbated by potential habitat constraints. Long-term temperature change resulted in an average 6.2% non-overlap between thermal habitats in baseline (1978–1995) and recent (1996–2013) time periods, with non-overlap increasing to 19.4% on average when habitats were restricted by season and depth. Tropical lakes exhibited substantially higher thermal non-overlap compared with lakes at other latitudes. Lakes with high thermal habitat change coincided with those having numerous endemic species, suggesting that conservation actions should consider thermal habitat change to preserve lake biodiversity.
Original languageEnglish
Pages (from-to)521-529
JournalNature Climate Change
Volume11
Issue number6
DOIs
Publication statusPublished - 3 Jun 2021

UN SDGs

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

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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