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Monitoring and modelling marine zooplankton in a changing climate

Author

Listed:
  • Lavenia Ratnarajah

    (Integrated Marine Observing System
    International Oceanographic Commission, UNESCO)

  • Rana Abu-Alhaija

    (Cyprus Subsea Consulting and Services C.S.C.S. ltd)

  • Angus Atkinson

    (The Hoe)

  • Sonia Batten

    (North Pacific Marine Science Organization (PICES))

  • Nicholas J. Bax

    (CSIRO Oceans & Atmosphere)

  • Kim S. Bernard

    (Oregon State University)

  • Gabrielle Canonico

    (US Integrated Ocean Observing System (US IOOS), NOAA)

  • Astrid Cornils

    (Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research, Section Polar Biological Oceanography)

  • Jason D. Everett

    (University of Queensland
    Queensland Biosciences Precinct
    University of New South Wales)

  • Maria Grigoratou

    (Gulf of Maine Research Institute
    Mercator Ocean International)

  • Nurul Huda Ahmad Ishak

    (Universiti Malaysia Terengganu
    Universiti Malaysia Terengganu)

  • David Johns

    (The Marine Biological Association (MBA), The Laboratory)

  • Fabien Lombard

    (Sorbonne Université, Centre National de la Recherche Scientifique, Laboratoire d’Océanographie de Villefranche (LOV)
    Research Federation for the Study of Global Ocean Systems Ecology and Evolution, FR2022/Tara Oceans GOSEE
    Institut Universitaire de France)

  • Erik Muxagata

    (Universidade Federal de Rio Grande - FURG - Laboratório de Zooplâncton - Instituto de Oceanografia)

  • Clare Ostle

    (The Marine Biological Association (MBA), The Laboratory)

  • Sophie Pitois

    (Centre for Environment, Fisheries and Aquaculture Centre (Cefas))

  • Anthony J. Richardson

    (University of Queensland
    Queensland Biosciences Precinct)

  • Katrin Schmidt

    (University of Plymouth)

  • Lars Stemmann

    (Sorbonne Université, Centre National de la Recherche Scientifique, Laboratoire d’Océanographie de Villefranche (LOV))

  • Kerrie M. Swadling

    (University of Tasmania)

  • Guang Yang

    (Chinese Academy of Sciences)

  • Lidia Yebra

    (Centro Oceanográfico de Málaga (IEO, CSIC))

Abstract

Zooplankton are major consumers of phytoplankton primary production in marine ecosystems. As such, they represent a critical link for energy and matter transfer between phytoplankton and bacterioplankton to higher trophic levels and play an important role in global biogeochemical cycles. In this Review, we discuss key responses of zooplankton to ocean warming, including shifts in phenology, range, and body size, and assess the implications to the biological carbon pump and interactions with higher trophic levels. Our synthesis highlights key knowledge gaps and geographic gaps in monitoring coverage that need to be urgently addressed. We also discuss an integrated sampling approach that combines traditional and novel techniques to improve zooplankton observation for the benefit of monitoring zooplankton populations and modelling future scenarios under global changes.

Suggested Citation

  • Lavenia Ratnarajah & Rana Abu-Alhaija & Angus Atkinson & Sonia Batten & Nicholas J. Bax & Kim S. Bernard & Gabrielle Canonico & Astrid Cornils & Jason D. Everett & Maria Grigoratou & Nurul Huda Ahmad , 2023. "Monitoring and modelling marine zooplankton in a changing climate," Nature Communications, Nature, vol. 14(1), pages 1-17, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-36241-5
    DOI: 10.1038/s41467-023-36241-5
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    as
    1. Hans G. Dam & James A. deMayo & Gihong Park & Lydia Norton & Xuejia He & Michael B. Finiguerra & Hannes Baumann & Reid S. Brennan & Melissa H. Pespeni, 2021. "Rapid, but limited, zooplankton adaptation to simultaneous warming and acidification," Nature Climate Change, Nature, vol. 11(9), pages 780-786, September.
    2. Jarrod A. Santora & Nathan J. Mantua & Isaac D. Schroeder & John C. Field & Elliott L. Hazen & Steven J. Bograd & William J. Sydeman & Brian K. Wells & John Calambokidis & Lauren Saez & Dan Lawson & K, 2020. "Habitat compression and ecosystem shifts as potential links between marine heatwave and record whale entanglements," Nature Communications, Nature, vol. 11(1), pages 1-12, December.
    3. Grace K. Saba & William R. Fraser & Vincent S. Saba & Richard A. Iannuzzi & Kaycee E. Coleman & Scott C. Doney & Hugh W. Ducklow & Douglas G. Martinson & Travis N. Miles & Donna L. Patterson-Fraser & , 2014. "Winter and spring controls on the summer food web of the coastal West Antarctic Peninsula," Nature Communications, Nature, vol. 5(1), pages 1-8, September.
    4. Grégory Beaugrand & Keith M. Brander & J. Alistair Lindley & Sami Souissi & Philip C. Reid, 2003. "Plankton effect on cod recruitment in the North Sea," Nature, Nature, vol. 426(6967), pages 661-664, December.
    5. Stephen J. Thackeray & Peter A. Henrys & Deborah Hemming & James R. Bell & Marc S. Botham & Sarah Burthe & Pierre Helaouet & David G. Johns & Ian D. Jones & David I. Leech & Eleanor B. Mackay & Dario , 2016. "Phenological sensitivity to climate across taxa and trophic levels," Nature, Nature, vol. 535(7611), pages 241-245, July.
    6. Heneghan, Ryan F. & Everett, Jason D. & Sykes, Patrick & Batten, Sonia D. & Edwards, Martin & Takahashi, Kunio & Suthers, Iain M. & Blanchard, Julia L. & Richardson, Anthony J., 2020. "A functional size-spectrum model of the global marine ecosystem that resolves zooplankton composition," Ecological Modelling, Elsevier, vol. 435(C).
    7. Lukas Jonkers & Helmut Hillebrand & Michal Kucera, 2019. "Global change drives modern plankton communities away from the pre-industrial state," Nature, Nature, vol. 570(7761), pages 372-375, June.
    8. E. L. Cavan & A. Belcher & A. Atkinson & S. L. Hill & S. Kawaguchi & S. McCormack & B. Meyer & S. Nicol & L. Ratnarajah & K. Schmidt & D. K. Steinberg & G. A. Tarling & P. W. Boyd, 2019. "The importance of Antarctic krill in biogeochemical cycles," Nature Communications, Nature, vol. 10(1), pages 1-13, December.
    9. William J. Chivers & Anthony W. Walne & Graeme C. Hays, 2017. "Mismatch between marine plankton range movements and the velocity of climate change," Nature Communications, Nature, vol. 8(1), pages 1-8, April.
    10. Angus Atkinson & Volker Siegel & Evgeny Pakhomov & Peter Rothery, 2004. "Long-term decline in krill stock and increase in salps within the Southern Ocean," Nature, Nature, vol. 432(7013), pages 100-103, November.
    11. E. L. Cavan & A. Belcher & A. Atkinson & S. L. Hill & S. Kawaguchi & S. McCormack & B. Meyer & S. Nicol & L. Ratnarajah & K. Schmidt & D. K. Steinberg & G. A. Tarling & P. W. Boyd, 2019. "Author Correction: The importance of Antarctic krill in biogeochemical cycles," Nature Communications, Nature, vol. 10(1), pages 1-1, December.
    12. Angus Atkinson & Simeon L. Hill & Evgeny A. Pakhomov & Volker Siegel & Christian S. Reiss & Valerie J. Loeb & Deborah K. Steinberg & Katrin Schmidt & Geraint A. Tarling & Laura Gerrish & Sévrine F. Sa, 2019. "Krill (Euphausia superba) distribution contracts southward during rapid regional warming," Nature Climate Change, Nature, vol. 9(2), pages 142-147, February.
    13. Martin Edwards & Anthony J. Richardson, 2004. "Impact of climate change on marine pelagic phenology and trophic mismatch," Nature, Nature, vol. 430(7002), pages 881-884, August.
    14. G. Beaugrand & A. Conversi & A. Atkinson & J. Cloern & S. Chiba & S. Fonda-Umani & R. R. Kirby & C. H. Greene & E. Goberville & S. A. Otto & P. C. Reid & L. Stemmann & M. Edwards, 2019. "Prediction of unprecedented biological shifts in the global ocean," Nature Climate Change, Nature, vol. 9(3), pages 237-243, March.
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