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Chapter 27 - Australian marine protected areas

Published online by Cambridge University Press:  05 November 2014

Alana Grech
Affiliation:
Macquarie University
Graham J. Edgar
Affiliation:
University of Tasmania
Peter Fairweather
Affiliation:
Flinders University
Robert L. Pressey
Affiliation:
James Cook University
Trevor J. Ward
Affiliation:
University of Technology, Sydney
Adam Stow
Affiliation:
Macquarie University, Sydney
Norman Maclean
Affiliation:
University of Southampton
Gregory I. Holwell
Affiliation:
University of Auckland
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Summary

Summary

Marine protected areas (MPAs) are sites in the ocean and coastal sea that are dedicated to the conservation of biodiversity, fisheries, ecosystem services and cultural values. MPAs range from small, highly protected marine reserves through to large, multiple-use marine parks, such as the Great Barrier Reef Marine Park of Queensland, Australia. This chapter identifies the major policy events and phases of MPA development in Australia, and explores the role and effectiveness of MPAs in conserving Australia’s marine environment. The governance of Australian MPAs is complex; the responsibility for their declaration and management is shared between the Australian (Commonwealth), State and Territory Governments. Progress in the declaration and management of MPAs is not uniform across Australia, with some jurisdictions performing better than others. Australia is considered a world leader in the science and implementation of MPAs. However, there are serious weaknesses in the design of MPAs in Commonwealth waters due to the locating of new MPAs where they are least controversial and least costly. Considerable further effort is needed to create an effective national programme for delivering biodiversity conservation in Australia waters. This is particularly important because Australia’s oceans face an unprecedented set of pressures from accelerating climate change and coastal development.

Introduction

Australia is responsible for one of the largest marine jurisdictions in the world, covering an area of more than 13.86 million km2. This domain stretches across about 45° of latitude from the tropical waters of the north to the sub-Antarctic waters of the Southern Ocean, and encompasses seabed, open ocean and shoreline ecosystems, and near-shore marine and estuarine waters. The marine environment is rich in biodiversity. Over 33 000 identified marine species live in Australian waters, including a large number of endemics.

Type
Chapter
Information
Austral Ark
The State of Wildlife in Australia and New Zealand
, pp. 582 - 599
Publisher: Cambridge University Press
Print publication year: 2014

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References

Agardy, T. (2003). An environmentalist’s perspective on responsible fisheries: The need for holistic approaches. In Responsible Fisheries in the Marine Ecosystem, eds. Sinclair, M. & Valdimarsson, G.Rome, Italy: Food and Agricultural Organisation of the United Nations (FAO), pp. 65–85.CrossRefGoogle Scholar
Australian and New Zealand Environment and Conservation Council [ANZECC] Task Force on Marine Protected Areas [TFMPA]. (1998). Guidelines for Establishing the National Representative System of Marine Protected Areas, Australian and New Zealand Environment and Conservation Council Task Force on Marine Protected Areas, Canberra, Australia: Environment Australia.Google Scholar
Australian and New Zealand Environment and Conservation Council [ANZECC] Task Force on Marine Protected Areas [TFMPA]. (1999). Strategic Plan of Action for the National Representative System of Marine Protected Areas: A Guide for Action by Australian Governments, Australian and New Zealand Environment and Conservation Council Task Force on Marine Protected Areas, Canberra, Australia: Environment Australia.Google Scholar
Babcock, R. C., Shears, N. T., Alcala, A., et al. (2010). Decadal trends in marine reserves reveal differential rates of change in direct and indirect effects. Proceedings of the National Academy of Sciences of the United States of America, 107: 18 251–18 255.CrossRefGoogle ScholarPubMed
Ball, I. & Possingham, H. (2000). MarXan (v1.2)Marine Reserve Design using Spatially Explicit Annealing: A Manual Prepared for the Great Barrier Reef Marine Park Authority, Townsville, Australia: Great Barrier Reef Marine Park Authority.Google Scholar
Ban, N., Adams, V., Pressey, R. L. & Hicks, J. (2011). Promise and problems for estimating management costs of marine protected areas. Conservation Letters, 4: 241–252.CrossRefGoogle Scholar
Barr, L. & Possingham, H. (2013). Are outcomes matching policy commitments in Australian marine conservation planning?Marine Policy, 42: 39–48.CrossRefGoogle Scholar
Barrett, N., Buxton, C. & Gardner, C. (2009). Rock lobster movement patterns and population structure within a Tasmanian Marine Protected Area inform fishery and conservation management. Marine and Freshwater Research, 60: 417–425.CrossRefGoogle Scholar
Brodie, J. E., Kroon, F. J., Schaffelke, B., et al. (2012). Terrestrial pollutant runoff to the Great Barrier Reef: an update of issues, priorities and management responses. Marine Pollution Bulletin, 65: 81–100.CrossRefGoogle ScholarPubMed
Commonwealth of Australia (1998). Australia’s Oceans Policy. Canberra, Australia: Environment Australia.Google Scholar
Convention on Biological Diversity (CBD) Conference of Parties (COP) 10th Meeting. (2010). Decision X/2 Strategic Plan for Biodiversity 2011–2020 and the Aichi Biodiversity Targets, available online:
Day, J, Fernandes, L., Lewis, A., et al. (2000). The Representative Areas Program for protecting biodiversity in the Great Barrier Reef World Heritage Area. In Proceedings of the Ninth International Coral Reef Symposium 2000, ed. Moosa, M.Jakarta, Indonesia: Ministry of Environment and Indonesian Institute of Sciences and International Society for Reef Studies, pp. 687–696.Google Scholar
Day, J., Dudley, N., Hockings, M., et al. (2012). Guidelines for Applying the IUCN Protected Area Management Categories to Marine Protected Areas, Gland, Switzerland: International Union for the Conservation of Nature.Google Scholar
Dayton, P. K., Sala, E., Tegner, M. J. & Thrush, S. (2000). Marine reserves: parks, baselines, and fishery enhancement. Bulletin of Marine Science, 66: 617–634.Google Scholar
Devillers, R., Pressey, R. L., Grech, A., et al. (2014). Reinventing residual reserves in the sea: are we favoring ease of establishment over need for protection?Aquatic Conservation. Google Scholar
Di Franco, A., Bussotti, S., Navone, A., Panzalis, P. & Guidetti, R. (2009). Evaluating effects of total and partial restrictions to fishing on Mediterranean rocky-reef fish assemblages. Marine Ecology Progress Series, 387: 275–285.CrossRefGoogle Scholar
Dudley, N. 2008. Guidelines for Applying Protected Area Management Categories, Gland, Switzerland: International Union for the Conservation of Nature.CrossRefGoogle Scholar
Edgar, G. J. (2011). Does the global network of marine protected areas provide an adequate safety net for marine biodiversity?Aquatic Conservation: Marine and Freshwater Ecosystems, 21: 313–316.CrossRefGoogle Scholar
Edgar, G. J. & Barrett, N. S. (2012). An assessment of population responses of common inshore fishes and invertebrates following declaration of five Australian marine protected areas. Environmental Conservation, 39: 271–281.CrossRefGoogle Scholar
Edgar, G. J. & Stuart-Smith, R. D. (2009). Ecological effects of marine protected areas on rocky reef communities: a continental-scale analysis. Marine Ecology Progress Series, 388: 51–62.CrossRefGoogle Scholar
Edgar, G. J., Barrett, N. S. & Stuart-Smith, R. D. (2009). Exploited reefs protected from fishing transform over decades into conservation features otherwise absent from seascapes. Ecological Applications, 19: 1967–1974.CrossRefGoogle ScholarPubMed
Edgar, G. J., Banks, S. A., Bessudo, S., et al. (2011). Variation in reef fish and invertebrate communities with level of protection from fishing across the Eastern Tropical Pacific seascape. Global Ecology and Biogeography, 20: 730–743.CrossRefGoogle Scholar
Fernandes, L., Day, J., Lewis, A., et al. (2005). Establishing representative ‘no-take’ areas in the Great Barrier Reef: large-scale implementation of theory on marine protected areas. Conservation Biology, 19(6): 1733–1744.CrossRefGoogle Scholar
Fitzsimons, J. (2011). Mislabeling marine protected areas and why it matters – a case study of Australia. Conservation Letters, 4: 340–345.CrossRefGoogle Scholar
Gaines, S. D., Lester, S. E., Grorud-Colvert, K., Costello, C. & Pollnac, R. (2010). Evolving science of marine reserves: New developments and emerging research frontiers. Proceedings of the National Academy of Sciences of the United States of America, 107: 18 251–18 255.CrossRefGoogle ScholarPubMed
Glaser, S. M., Fogarty, M. J., Liu, H., et al. (2013). Complex dynamics may limit prediction in marine fisheries. Fish and Fisheries, .Google Scholar
Gray, J. S. & Jensen, K. (1993). Feedback monitoring: a new way of protecting the environment. Trends in Ecology and Evoloution, 8: 267–268.CrossRefGoogle ScholarPubMed
Great Barrier Reef Marine Park Authority (GBRMPA). (2009). Outlook Report 2009. Townsville, Australia: Great Barrier Reef Marine Park Authority.Google Scholar
Harrison, H. B., Williamson, D. H., Evans, R. D., et al. (2013). Larval export from marine reserves and the recruitment benefit for fish and fisheries. Current Biology, 22: 1023–1028.CrossRefGoogle Scholar
Heap, A. D. & Harris, P. T. (2008). Geomorphology of the Australian margin and adjacent seafloor. Australian Journal of Earth Sciences, 55: 555–585.CrossRefGoogle Scholar
Hughes, T. P., Linares, C., Dakos, V., van de Leemput, I. A. & van Nes, E. H. (2012). Living dangerously on borrowed time during slow, unrecognized regime shifts. Trends in Ecology & Evolution, 28: 149–155.CrossRefGoogle ScholarPubMed
Hunt, C. (2013). Benefits and opportunity costs of Australia’s Coral Sea marine protected area: a precautionary tale. Marine Policy, 39: 352–360.CrossRefGoogle Scholar
Januchowski-Hartley, F. A., Graham, N. A. J., Cinner, J. E., & Russ, G. R. (2013). Spillover of fish naïveté from marine reserves. Ecology Letters, 16: 191–197.CrossRefGoogle ScholarPubMed
Jones, G. P., Almany, G. R., Russ, G. R., et al. (2009). Larval retention and connectivity among populations of corals and reef fishes: History, advances and challenges. Coral Reefs, 28: 307–325.CrossRefGoogle Scholar
Kaiser, M. (2005). Are marine protected areas a red herring or fisheries panacea?Canadian Journal of Fisheries and Aquatic Science, 62:1194–1199.CrossRefGoogle Scholar
Kelleher, G. & Kenchington, R. (1991). Guidelines for Establishing Marine Protected Areas, Townsville, Australia: Great Barrier Reef Marine Park Authority.Google Scholar
Lester, S. E. & Halpern, B. S. (2008). Biological responses in marine ‘no-take’ reserves versus partially protected areas. Marine Ecology Progress Series, 367: 49–56.CrossRefGoogle Scholar
Margules, C. R. & Pressey, R. L. (2000). Systematic conservation planning. Nature, 405: 243–253.CrossRefGoogle ScholarPubMed
McCook, L. J., Ayling, T., Cappo, M., et al. (2010). Adaptive management of the Great Barrier Reef: A globally significant demonstration of the benefits of networks of marine reserves. Proceedings of the National Academy of Sciences of the United States of America, 107: 18 278–18 285.CrossRefGoogle ScholarPubMed
Murray, S. N., Ambrose, R. F., Bohnsack, J. A., et al. (1999). ‘No-take’ reserve networks: Sustaining fishery populations and marine ecosystems. Fisheries, 24: 11–25.2.0.CO;2>CrossRefGoogle Scholar
Ogburn, D. M., White, I. & McPhee, D. P. (2007). The disappearance of oyster reefs from eastern Australian estuaries – impact of colonial settlement or mudworm invasion?Coastal Management, 35: 271–287.CrossRefGoogle Scholar
Pressey, R. L., Mills, M., Weeks, R. & Day, J. C. (2013). The plan of the day: managing the dynamic transition from regional conservation designs to local conservation actions. Biological Conservation, 166: 115–169.CrossRefGoogle Scholar
State of the Environment Committee (SOEC). (2011). Marine Environment. In Australian State of the Environment Report 2011, Canberra, Australia: Department of Sustainability, Environment, Water, Population and Communities, pp. 372–463.Google Scholar
State of the Marine Environment [SOMER] (1995). State of the Marine Environment Report for Australia. Canberra, Australia: Department of the Environment, Sport and Territories, and Townsville, Australia: Great Barrier Reef Marine Park Authority.Google Scholar
Veitch, L., Dulvy, N. K., Koldewey, H., et al. (2012) Avoiding empty ocean commitments at Rio+20. Science 336: 1383–1385.CrossRefGoogle ScholarPubMed
Vidot, A. (2013). June 4. Opposition Moves to Kill Marine Park Plans. ABC Rural News. Retrieved June 5, 2013, from
Westcott, G. (2006). The long and winding road: the development of a comprehensive, adequate and representative system of highly protected marine protected areas in Victoria, Australia. Ocean and Coastal Management, 49: 905–922.CrossRefGoogle Scholar
Williams, A., Bax, N., Kloser, R., et al. (2009). Australia’s deep-water reserve network: implications of false homogeneity for classifying abiotic surrogates of biodiversity. ICES Journal of Marine Science, 66: 214–224.CrossRefGoogle Scholar
Williamson, D. H., Russ, G. R. & Ayling, A. M. (2004). No-take marine reserves increase abundance and biomass of reef fish on inshore fringing reefs of the Great Barrier Reef. Environmental Conservation, 31: 149–159.CrossRefGoogle Scholar
Wood, L. J. & Dragicevic, S. (2007). GIS-based multicriteria evaluation and fuzzy sets to identify priority sites for marine protection. Biodiversity and Conservation, 16: 2539–2558.CrossRefGoogle Scholar

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