1701. Fabricius, K.E., De'Ath, G., Puotinen, M.L., Done, T., Cooper, T.F., et al. 2008, Disturbance gradients on inshore and offshore coral reefs caused by a severe tropical cyclone, Limnology and Oceanography 53(2): 690-704.
1702. Weeks, S.J., Bakun, A., Steinberg, C.R., Brinkman, R. and Hoegh-Guldberg, O. 2010, The Capricorn Eddy: a prominent driver of the ecology and future of the southern Great Barrier Reef, Coral Reefs 29: 975-985.
1703. Figueira, W.F. and Booth, D.J. 2010, Increasing ocean temperatures allow tropical fishes to survive overwinter in temperate waters, Global Change Biology 16: 506-516.
1704. Brown, C.J., O'Connor, M.I., Poloczanska, E.S., Schoeman, D.S., Buckley, L.B., et al. 2016, Ecological and methodological drivers of species’ distribution and phenology responses to climate change, Global Change Biology 22(4): 1548-1560.
1705. Verges, A., Steinberg, P.D., Hay, M.E., Poore, A.G., Campbell, A.H., et al. 2014, The tropicalization of temperate marine ecosystems: climate-mediated changes in herbivory and community phase shifts, Proceedings of the Royal Society of London Series B: Biological Sciences 281(1789): 20140846.
1706. Cameron, K.A. and Harrison, P.L. 2016, Patterns of scleractinian coral recruitment at Lord Howe Island, an isolated subtropical reef off eastern Australia, Coral Reefs 35: 555-564.
1707. Ling, S.D. and Johnson, C.R. 2009, Population dynamics of an ecologically important range-extender: kelp beds versus sea urchin barrens, Marine Ecology Progress Series 374: 113-125.
1708. Schmidtko, S., Stramma, L. and Visbeck, M. 2017, Decline in global oceanic oxygen content during the past five decades, Nature 542(7641): 335-339.
1709. Stramma, L. and Schmidtko, S. 2019, Global evidence of ocean deoxygenation, in Ocean deoxygenation: everyone’s problem - causes, impacts, consequences and solutions, eds D. Laffoley and J.M. Baxter, IUCN, Gland, Switzerland, pp. 562.
1710. Long, M.C., Ito, T. and Deutsch, C. 2019, Oxygen projections for the future, in Ocean deoxygenation: everyone’s problem - causes, impacts, consequences and solutions, eds D. Laffoley and J.M. Baxter, IUCN, Gland, Switzerland.
1711. Oschlies, A., Brandt, P., Stramma, L. and Schmidtko, S. 2018, Drivers and mechanisms of ocean deoxygenation, Nature Geoscience 11(7): 467-473.
1712. Altieri, A.H., Nelson, H.R. and Gedan, K.B. 2019, The significance of ocean deoxygenation for tropical ecosystems–corals, seagrasses and mangroves, in Ocean deoxygenation: everyone’s problem - causes, impacts, consequences and solutions, eds D. Laffoley and J.M. Baxter, IUCN, Gland, Switzerland, pp. 401-429.
1713. Altieri, A.H., Harrison, S.B., Seemann, J., Collin, R., Diaz, R.J., et al. 2017, Tropical dead zones and mass mortalities on coral reefs, Proceedings of the National Academy of Sciences 114(14): 3660-3665.
1714. Rabalais, N.N., Diaz, R.J., Levin, L.A., Turner, R.E., Gilbert, D., et al. 2010, Dynamics and distribution of natural and human-caused hypoxia, Biogeosciences 7(2): 585-619.
1715. Vaquer-Sunyer, R. and Duarte, C.M. 2008, Thresholds of hypoxia for marine biodiversity, Proceedings of the National Academy of Sciences 105(40): 15452-15457.
1716. Limburg, K.E., Breitburg, D., Swaney, D.P. and Jacinto, G. 2020, Ocean deoxygenation: a primer, One Earth 2(1): 24-29.
1717. Alderdice, R., Suggett, D.J., Cárdenas, A., Hughes, D.J., Kühl, M., et al. 2021, Divergent expression of hypoxia response systems under deoxygenation in reef‐forming corals aligns with bleaching susceptibility, Global Change Biology 27(2): 312-326.
1718. Wijgerde, T., Silva, C.I., Scherders, V., van Bleijswijk, J. and Osinga, R. 2014, Coral calcification under daily oxygen saturation and pH dynamics reveals the important role of oxygen, Biology Open 3(6): 489-493.
1719. Nelson, H.R. and Altieri, A.H. 2019, Oxygen: the universal currency on coral reefs, Coral Reefs 38(2): 177-198.
1720. Breitburg, D.L., Baumann, H., Sokolova, I.M. and Frieder, C.A. 2019, Multiple stressors–forces that combine to worsen deoxygenation and its effects, in Ocean deoxygenation: everyone’s problem - causes, impacts, consequences and solutions, eds D. Laffoley and J.M. Baxter, IUCN, Gland, Switzerland.
1721. Altieri, A.H., Johnson, M.D., Swaminathan, S.D., Nelson, H.R. and Gedan, K.B. 2021, Resilience of tropical ecosystems to ocean deoxygenation, Trends in Ecology & Evolution 36(3): 227-238.
1722. Kotz, M., Levermann, A. and Wenz, L. 2024, The economic commitment of climate change, Nature 628(8008): 551-557.
1723. Chen, P., Chen, C., Chu, L. and McCarl, B. 2015, Evaluating the economic damage of climate change on global coral reefs, Global Environmental Change 30: 12-20.
1724. Barange, M., Merino, G., Blanchard, J.L., Scholtens, J., Harle, J., et al. 2014, Impacts of climate change on marine ecosystem production in societies dependent on fisheries, Nature Climate Change 4(3): 211-216.
1725. Clark, G.F. and Johnston, E.L. 2017, Australia State of the Environment 2016: Coasts: independent report to the Australian Government Minister for Environment and Energy, Department of the Environment and Energy, Canberra.
1726. Guannel, G., Arkema, K., Ruggiero, P. and Verutes, G. 2016, The power of three: coral reefs, seagrasses and mangroves protect coastal regions and increase their resilience, PloS One 11(7): e0158094.
1727. Cheung, W.W., Reygondeau, G. and Frolicher, T.L. 2016, Large benefits to marine fisheries of meeting the 1.5°C global warming target, Science 354(6319): 1591-1594.
1728. Petrik, C.M., Stock, C.A., Andersen, K.H., van Denderen, P.D. and Watson, J.R. 2020, Large pelagic fish are most sensitive to climate change despite pelagification of ocean food webs, Frontiers in Marine Science 7: 588482.
1729. Holsman, K.K., Hazen, E.L., Haynie, A., Gourguet, S., Hollowed, A., et al. 2019, Towards climate resiliency in fisheries management, ICES Journal of Marine Science 76(5): 1368-1378.
1730. Lam, V.W., Allison, E.H., Bell, J.D., Blythe, J., Cheung, W.W., et al. 2020, Climate change, tropical fisheries and prospects for sustainable development, Nature Reviews Earth & Environment 1(9): 440-454.
1731. Rogers, A., Blanchard, J.L. and Mumby, P.J. 2018, Fisheries productivity under progressive coral reef degradation, Journal of Applied Ecology 55(3): 1041-1049.
1732. Pratchett, M.S., Munday, P.L., Graham, N., Kronen, M., Pinica, S., et al. 2011, Vulnerability of coastal fisheries in the tropical Pacific to climate change, in Vulnerability of tropical pacific fisheries and aquaculture to climate change, eds. J.D. Bell, J.E. Johnson and A.J. Hobday, Secretariat of the Pcific Community, Noumea, New Caledonia. pp. 941 pp.
1733. Bischof, B. 2017, Focusing our resolve in coastal systems: ECSA 55 as a vehicle for better understanding shifting baselines in a rapidly-changing world, Ocean and Coastal Management 143: 1-3.
1734. Lewis, S.E., Bartley, R., Wilkinson, S.N., Bainbridge, Z.T., Henderson, A.E., et al. 2021, Land use change in the river basins of the Great Barrier Reef, 1860 to 2019: A foundation for understanding environmental history across the catchment to reef continuum, Marine Pollution Bulletin 166: 112193.
1735. Department of Environmental and Science 2023, Land use mapping - 2021 - Great Barrier Reef NRM regions. <https://www.data.qld.gov.au/dataset/2021_great_barrier_reef_land_use>
1736. The State of Queensland (Department of Energy and Public Works) 2023, 2023 Queensland Renewable Energy Zone Roadmap Released in Draft for Consultation, Queensland Government, Department of Energy and Public Works, Brisbane.
1739. State of Queensland (Office of the Queensland Chief Scientist) 2023, Native Vegetation Scientific Expert Panel report #32504, January 2023, Office of the Queensland Chief Scientist, Brisbane.
1740. Department of Environmental and Science 2023, Landcover replacement class of woody vegetation change in Queensland in 2020-21, by Great Barrier Reef (GBR) region and non-GBR region, DES, Brisbane.
1742. Australian Bureau of Statistics 2023, Labour Force, Australia, Detailed, Australian Bureau of Statistics. <https://www.abs.gov.au/statistics/labour/employment-and-unemployment/labour-force-australia-detailed/latest-release.>
1744. Department of Resources 2023, 'Mining and resources statistics for the Great Barrier Reef - as reported to the Department of Resources (unpublished)'. Unpublished report.
1745. Saint-Amand, A., Grech, A., Choukroun, S. and Hanert, E. 2022, Quantifying the environmental impact of a major coal mine project on the adjacent Great Barrier Reef ecosystems, Marine Pollution Bulletin 179: 113656.
1747. Setzer, J. and Higham, C. 2022, Global Trends in Climate Change Litigation: 2022 Snapshot, Grantham Research Institute on Climate Change and the Environment and Centre for Climate Change Economics and Policy, London School of Economics and Political Science., London.
1748. McCloskey, G.L., Baheerathan, R., Dougall, C., Ellis, R., Bennett, F.R., et al. 2021, Modelled estimates of dissolved inorganic nitrogen exported to the Great Barrier Reef lagoon, Marine Pollution Bulletin 171: 112655.
1749. Patterson, M.A., Webster, J.M., Hutchings, P., Braga, J., Humblet, M., et al. 2020, Bioerosion traces in the Great Barrier Reef over the past 10 to 30 kyr, Palaeogeography, Palaeoclimatology, Palaeoecology 542: 109503.
1750. Smyth, T.J., McKee, D. and Davies, T.A. 2021, A global atlas of artificial light at night under the sea, Elementa Science of the Anthropocene 9(1).