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Importance of stirring in the development of an iron-fertilized phytoplankton bloom

Author

Listed:
  • Edward R. Abraham

    (National Institute for Water and Atmospheric Research (NIWA))

  • Cliff S. Law

    (Plymouth Marine Laboratory)

  • Philip W. Boyd

    (NIWA Centre for Chemical and Physical Oceanography, University of Otago)

  • Samantha J. Lavender

    (Plymouth Marine Laboratory
    University of Plymouth, Drake Circus)

  • Maria T. Maldonado

    (McGill University
    University of Maine)

  • Andrew R. Bowie

    (Plymouth Marine Laboratory
    University of Plymouth)

Abstract

The growth of populations is known to be influenced by dispersal, which has often been described as purely diffusive1,2. In the open ocean, however, the tendrils and filaments of phytoplankton populations provide evidence for dispersal by stirring3,4. Despite the apparent importance of horizontal stirring for plankton ecology, this process remains poorly characterized. Here we investigate the development of a discrete phytoplankton bloom, which was initiated by the iron fertilization of a patch of water (7 km in diameter) in the Southern Ocean5. Satellite images show a striking, 150-km-long bloom near the experimental site, six weeks after the initial fertilization. We argue that the ribbon-like bloom was produced from the fertilized patch through stirring, growth and diffusion, and we derive an estimate of the stirring rate. In this case, stirring acts as an important control on bloom development, mixing phytoplankton and iron out of the patch, but also entraining silicate. This may have prevented the onset of silicate limitation, and so allowed the bloom to continue for as long as there was sufficient iron. Stirring in the ocean is likely to be variable, so blooms that are initially similar may develop very differently.

Suggested Citation

  • Edward R. Abraham & Cliff S. Law & Philip W. Boyd & Samantha J. Lavender & Maria T. Maldonado & Andrew R. Bowie, 2000. "Importance of stirring in the development of an iron-fertilized phytoplankton bloom," Nature, Nature, vol. 407(6805), pages 727-730, October.
  • Handle: RePEc:nat:nature:v:407:y:2000:i:6805:d:10.1038_35037555
    DOI: 10.1038/35037555
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    Cited by:

    1. Enrico Ser-Giacomi & Ricardo Martinez-Garcia & Stephanie Dutkiewicz & Michael J. Follows, 2023. "A Lagrangian model for drifting ecosystems reveals heterogeneity-driven enhancement of marine plankton blooms," Nature Communications, Nature, vol. 14(1), pages 1-12, December.

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