4.5 Article

Management adaptation of invertebrate fisheries to an extreme marine heat wave event at a global warming hot spot

Journal

ECOLOGY AND EVOLUTION
Volume 6, Issue 11, Pages 3583-3593

Publisher

WILEY
DOI: 10.1002/ece3.2137

Keywords

Climate change; crabs; environmental effects; prawns; pre-recruit; scallops; stock-recruitment; water temperature

Funding

  1. Fisheries Research and Development Corporation
  2. Department of Climate Change and Energy Efficiency

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An extreme marine heat wave which affected 2000 km of the midwest coast of Australia occurred in the 2010/11 austral summer, with sea-surface temperature (SST) anomalies of 2-5 degrees C above normal climatology. The heat wave was influenced by a strong Leeuwin Current during an extreme La Nina event at a global warming hot spot in the Indian Ocean. This event had a significant effect on the marine ecosystem with changes to seagrass/algae and coral habitats, as well as fish kills and southern extension of the range of some tropical species. The effect has been exacerbated by above-average SST in the following two summers, 2011/12 and 2012/13. This study examined the major impact the event had on invertebrate fisheries and the management adaption applied. A 99% mortality of Roei abalone (Haliotis roei) and major reductions in recruitment of scallops (Amusium balloti), king (Penaeus latisulcatus) and tiger (P. esculentus) prawns, and blue swimmer crabs were detected with management adapting with effort reductions or spatial/temporal closures to protect the spawning stock and restocking being evaluated. This study illustrates that fisheries management under extreme temperature events requires an early identification of temperature hot spots, early detection of abundance changes (preferably using pre-recruit surveys), and flexible harvest strategies which allow a quick response to minimize the effect of heavy fishing on poor recruitment to enable protection of the spawning stock. This has required researchers, managers, and industry to adapt to fish stocks affected by an extreme environmental event that may become more frequent due to climate change.

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