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Global impacts of marine heatwaves on coastal foundation species

Author

Listed:
  • Kathryn E. Smith

    (Marine Biological Association of the United Kingdom)

  • Margot Aubin

    (Marine Biological Association of the United Kingdom)

  • Michael T. Burrows

    (Scottish Association for Marine Science)

  • Karen Filbee-Dexter

    (University of Western Australia
    His)

  • Alistair J. Hobday

    (CSIRO Environment)

  • Neil J. Holbrook

    (University of Tasmania
    University of Tasmania)

  • Nathan G. King

    (Marine Biological Association of the United Kingdom)

  • Pippa J. Moore

    (Newcastle University)

  • Alex Sen Gupta

    (University of New South Wales)

  • Mads Thomsen

    (University of Canterbury
    Department of Ecoscience)

  • Thomas Wernberg

    (University of Western Australia
    His)

  • Edward Wilson

    (Marine Biological Association of the United Kingdom)

  • Dan A. Smale

    (Marine Biological Association of the United Kingdom)

Abstract

With increasingly intense marine heatwaves affecting nearshore regions, foundation species are coming under increasing stress. To better understand their impacts, we examine responses of critical, habitat-forming foundation species (macroalgae, seagrass, corals) to marine heatwaves in 1322 shallow coastal areas located across 85 marine ecoregions. We find compelling evidence that intense, summer marine heatwaves play a significant role in the decline of foundation species globally. Critically, detrimental effects increase towards species warm-range edges and over time. We also identify several ecoregions where foundation species don’t respond to marine heatwaves, suggestive of some resilience to warming events. Cumulative marine heatwave intensity, absolute temperature, and location within a species’ range are key factors mediating impacts. Our results suggest many coastal ecosystems are losing foundation species, potentially impacting associated biodiversity, ecological function, and ecosystem services provision. Understanding relationships between marine heatwaves and foundation species offers the potential to predict impacts that are critical for developing management and adaptation approaches.

Suggested Citation

  • Kathryn E. Smith & Margot Aubin & Michael T. Burrows & Karen Filbee-Dexter & Alistair J. Hobday & Neil J. Holbrook & Nathan G. King & Pippa J. Moore & Alex Sen Gupta & Mads Thomsen & Thomas Wernberg &, 2024. "Global impacts of marine heatwaves on coastal foundation species," Nature Communications, Nature, vol. 15(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-49307-9
    DOI: 10.1038/s41467-024-49307-9
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    References listed on IDEAS

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    1. Heather Welch & Matthew S. Savoca & Stephanie Brodie & Michael G. Jacox & Barbara A. Muhling & Thomas A. Clay & Megan A. Cimino & Scott R. Benson & Barbara A. Block & Melinda G. Conners & Daniel P. Co, 2023. "Impacts of marine heatwaves on top predator distributions are variable but predictable," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
    2. Liam Lachs & Simon D. Donner & Peter J. Mumby & John C. Bythell & Adriana Humanes & Holly K. East & James R. Guest, 2023. "Emergent increase in coral thermal tolerance reduces mass bleaching under climate change," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
    3. Rick D. Stuart-Smith & Christopher J. Brown & Daniela M. Ceccarelli & Graham J. Edgar, 2018. "Ecosystem restructuring along the Great Barrier Reef following mass coral bleaching," Nature, Nature, vol. 560(7716), pages 92-96, August.
    4. Thomas Wernberg & Dan A. Smale & Fernando Tuya & Mads S. Thomsen & Timothy J. Langlois & Thibaut de Bettignies & Scott Bennett & Cecile S. Rousseaux, 2013. "An extreme climatic event alters marine ecosystem structure in a global biodiversity hotspot," Nature Climate Change, Nature, vol. 3(1), pages 78-82, January.
    5. Alistair J. Hobday & Michael T. Burrows & Karen Filbee-Dexter & Neil J. Holbrook & Alex Sen Gupta & Dan A. Smale & Kathryn E. Smith & Mads S. Thomsen & Thomas Wernberg, 2023. "With the arrival of El Niño, prepare for stronger marine heatwaves," Nature, Nature, vol. 621(7977), pages 38-41, September.
    6. Elvira S. Poloczanska & Christopher J. Brown & William J. Sydeman & Wolfgang Kiessling & David S. Schoeman & Pippa J. Moore & Keith Brander & John F. Bruno & Lauren B. Buckley & Michael T. Burrows & C, 2013. "Global imprint of climate change on marine life," Nature Climate Change, Nature, vol. 3(10), pages 919-925, October.
    7. Dan A. Smale & Thomas Wernberg & Eric C. J. Oliver & Mads Thomsen & Ben P. Harvey & Sandra C. Straub & Michael T. Burrows & Lisa V. Alexander & Jessica A. Benthuysen & Markus G. Donat & Ming Feng & Al, 2019. "Marine heatwaves threaten global biodiversity and the provision of ecosystem services," Nature Climate Change, Nature, vol. 9(4), pages 306-312, April.
    8. A. Arias-Ortiz & O. Serrano & P. Masqué & P. S. Lavery & U. Mueller & G. A. Kendrick & M. Rozaimi & A. Esteban & J. W. Fourqurean & N. Marbà & M. A. Mateo & K. Murray & M. J. Rule & C. M. Duarte, 2018. "A marine heatwave drives massive losses from the world’s largest seagrass carbon stocks," Nature Climate Change, Nature, vol. 8(4), pages 338-344, April.
    9. Neil J. Holbrook & Hillary A. Scannell & Alexander Gupta & Jessica A. Benthuysen & Ming Feng & Eric C. J. Oliver & Lisa V. Alexander & Michael T. Burrows & Markus G. Donat & Alistair J. Hobday & Pippa, 2019. "A global assessment of marine heatwaves and their drivers," Nature Communications, Nature, vol. 10(1), pages 1-13, December.
    10. Thomas L. Frölicher & Erich M. Fischer & Nicolas Gruber, 2018. "Marine heatwaves under global warming," Nature, Nature, vol. 560(7718), pages 360-364, August.
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