1651. Lönnstedt, O.M. and Frisch, A.J. 2014, Habitat bleaching disrupts threat responses and persistence in anemonefish, Marine Ecology Progress Series 517: 265-270.
1652. Pratchett, M.S., Wilson, S.K., Berumen, M.L. and McCormick, M.I. 2004, Sublethal effects of coral bleaching on an obligate coral feeding butterflyfish, Coral Reefs 23: 352-356.
1653. Harvey, B.P., Marshall, K.E., Harley, C.D. and Russell, B.D. 2022, Predicting responses to marine heatwaves using functional traits, Trends in Ecology & Evolution 37(1): 20-29.
1654. Jensen, M.P., Allen, C.D., Eguchi, T., Bell, I.P., LaCasella, E.L., et al. 2018, Environmental warming and feminization of one of the largest sea turtle populations in the world, Current Biology 28(1): 154-159. e4.
1655. Santidrián Tomillo, P. and Spotila, J.R. 2020, Temperature‐dependent sex determination in sea turtles in the context of climate change: uncovering the adaptive significance, BioEssays 42(11): 2000146.
1656. Lockley, E.C. and Eizaguirre, C. 2021, Effects of global warming on species with temperature‐dependent sex determination: Bridging the gap between empirical research and management, Evolutionary Applications 14(10): 2361-2377.
1657. Patrício, A.R., Hawkes, L.A., Monsinjon, J.R., Godley, B.J. and Fuentes, M.M. 2021, Climate change and marine turtles: Recent advances and future directions, Endangered Species Research 44: 363-395.
1658. Poloczanska, E.S., Brown, C.J., Sydeman, W.J., Kiessling, W., Schoeman, D.S., et al. 2013, Global imprint of climate change on marine life, Nature Climate Change 3: 919-925.
1659. Bunce, A. 2015, Foraging behaviour of a declining population of brown boobies (Sula leucogaster) breeding on the Swain Reefs, Great Barrier Reef, Emu - Austral Ornithology 115(4): 368-372.
1660. Smithers, B.V., Peck, D.R., Krockenberger, A.K. and Congdon, B.C. 2003, Elevated sea-surface temperature, reduced provisioning and reproductive failure of wedge-tailed shearwaters (Puffinus pacificus) in the southern Great Barrier Reef, Australia, Marine and Freshwater Research 54(8): 973-977.
1661. Dyer, P.K., O'Neill, P. and Hulsman, K. 2005, Breeding numbers and population trends of Wedge-tailed Shearwater (Puffinus pacificus) and Black Noddy (Anous minutus) in the Capricornia Cays, southern Great Barrier Reef, Emu-Austral Ornithology 105(3): 249-257.
1662. Brown, S.C., Mellin, C., García Molinos, J., Lorenzen, E.D. and Fordham, D.A. 2022, Faster ocean warming threatens richest areas of marine biodiversity, Global Change Biology 28(19): 5849-5858.
1663. Valle, M., Chust, G., del Campo, A., Wisz, M.S., Olsen, S.M., et al. 2014, Projecting future distribution of the seagrass Zostera noltii under global warming and sea level rise, Biological Conservation 170: 74-85.
1664. Cornwall, C.E., Harvey, B.P., Comeau, S., Cornwall, D.L., Hall‐Spencer, J.M., et al. 2022, Understanding coralline algal responses to ocean acidification: Meta‐analysis and synthesis, Global Change Biology 28(2): 362-374.
1665. Byrne, M. 2011, Impact of ocean warming and ocean acidification on marine invertebrate life history stages: Vulnerabilities and potential for persistence in a changing ocean, Oceanography and Marine Biology: An annual review 49: 1-42.
1666. Leung, J.Y., Zhang, S. and Connell, S.D. 2022, Is ocean acidification really a threat to marine calcifiers? A systematic review and meta‐analysis of 980 studies spanning two decades, Small 18(35): 2107407.
1667. Prazeres, M., Uthicke, S. and Pandolfi, J.M. 2015, Ocean acidification induces biochemical and morphological changes in the calcification process of large benthic foraminifera, Proceedings of the Royal Society B: Biological Sciences 282(1803): 20142782.
1668. Gold, D.A. and Vermeij, G.J. 2023, Deep resilience: An evolutionary perspective on calcification in an age of ocean acidification, Frontiers in Physiology 14: 1092321.
1669. Anthony, K.R.N. and Marshall, P. 2012, Coral Reefs, in A marine climate change impacts and adaption report card Australia 2012, eds E.S. Poloczanska, A.J. Hobday and A.J. Richardson, CSIRO, Canberra.
1670. Riding, R. 2000, Microbial carbonates: the geological record of calcified bacterial–algal mats and biofilms, Sedimentology 47: 179-214.
1671. Van Hooidonk, R., Maynard, J.A., Manzello, D. and Planes, S. 2014, Opposite latitudinal gradients in projected ocean acidification and bleaching impacts on coral reefs, Global Change Biology 20(1): 103-112.
1672. Schubert, N., Alvarez-Filip, L. and Hofmann, L.C. 2023, Systematic review and meta-analysis of ocean acidification effects in Halimeda: Implications for algal carbonate production, Climate Change Ecology 4: 100059.
1673. De Beer, D. and Larkum, A. 2001, Photosynthesis and calcification in the calcifying algae Halimeda discoidea studied with microsensors, Plant, Cell & Environment 24(11): 1209-1217.
1674. Xu, K. and Gao, K. 2018, Responses of Calcifying Algae to Ocean Acidification, in Aquatic Ecosystems in a Changing Climate CRC Press, pp. 162-173.
1675. Takahashi, M., Noonan, S., Fabricius, K.E. and Collier, C.J. 2016, The effects of long-term in situ CO2 enrichment on tropical seagrass communities at volcanic vents, ICES Journal of Marine Science 73(3): 876-886.
1676. Veron, J.E.N. 2008, A Reef in Time: the Great Barrier Reef from Beginning to End, Harvard University Press, Cambridge, USA.
1677. McInerney, F.A. and Wing, S.L. 2011, The Paleocene-Eocene Thermal Maximum: A perturbation of carbon cycle, climate, and biosphere with implications for the future, Annual Review of Earth and Planetary Sciences 39: 489-516.
1678. Honisch, B., Ridgwell, A., Schmidt, D.N., Thomas, E., Gibbs, S.J., et al. 2012, The geological record of ocean acidification, Science 335(6072): 1058-1063.
1679. Perry, C.T., Alvarez-Filip, L., Graham, N.A., Mumby, P.J., Wilson, S.K., et al. 2018, Loss of coral reef growth capacity to track future increases in sea level, Nature 558(7710): 396-400.
1680. Lovelock, C.E., Cahoon, D.R., Friess, D.A., Guntenspergen, G.R., Krauss, K.W., et al. 2015, The vulnerability of Indo-Pacific mangrove forests to sea-level rise, Nature 526: 559-563.
1681. Nicholls, R.J., Brown, S., Goodwin, P., Wahl, T., Lowe, J., et al. 2018, Stabilization of global temperature at 1.5°C and 2.0°C: implications for coastal areas, Philosophical Transactions of the Royal Society A 376(2119): 20160448.
1682. Morgan, K.M., Perry, C.T., Arthur, R., Williams, H.T. and Smithers, S.G. 2020, Projections of coral cover and habitat change on turbid reefs under future sea-level rise, Proceedings of the Royal Society B 287(1929): 20200541.
1683. Sengupta, M., Ford, M.R., Kench, P.S. and Perry, G.L. 2023, Drivers of shoreline change on Pacific coral reef islands: linking island change to processes, Regional Environmental Change 23(3): 110.
1684. McLean, R. and Kench, P. 2015, Destruction or persistence of coral atoll islands in the face of 20th and 21st century sea‐level rise? Wiley Interdisciplinary Reviews: Climate Change 6(5): 445-463.
1685. Rama, H., Roberts, D., Tignor, M., Poloczanska, E.S., Mintenbeck, K., Alegría, A., Craig, M., Langsdorf, S., Löschke, S., Möller, V., Okem, A., Rama, B. and Ayanlade, S. 2022, Climate Change 2022: Impacts, Adaptation and Vulnerability Working Group II Contribution to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, .
1686. Leo, K.L., Gillies, C.L., Fitzsimons, J.A., Hale, L.Z. and Beck, M.W. 2019, Coastal habitat squeeze: A review of adaptation solutions for saltmarsh, mangrove and beach habitats, Ocean & Coastal Management 175: 180-190.
1687. Short, F.T., Kosten, S., Morgan, P.A., Malone, S. and Moore, G.E. 2016, Impacts of climate change on submerged and emergent wetland plants, Aquatic Botany 135: 3-17.
1688. Lovelock, C.E., Feller, I.C., Reef, R., Hickey, S. and Ball, M.C. 2017, Mangrove dieback during fluctuating sea levels, Scientific Reports 7(1): 1680.
1689. Duke, N.C., Kovacs, J.M., Griffiths, A.D., Preece, L., Hill, D.J.E., et al. 2017, Large-scale dieback of mangroves in Australia’s Gulf of Carpentaria: a severe ecosystem response, coincidental with an unusually extreme weather event, Marine and Freshwater Research 68(10): 1816-1829.
1690. Sippo, J.Z., Lovelock, C.E., Santos, I.R., Sanders, C.J. and Maher, D.T. 2018, Mangrove mortality in a changing climate: An overview, Estuarine, Coastal and Shelf Science 215: 241-249.
1691. Chamberlain, D.A., Phinn, S.R. and Possingham, H.P. 2021, Mangrove forest cover and phenology with landsat dense time series in central Queensland, Australia, Remote Sensing 13(15): 3032.
1692. Connell, J.H. 1978, Diversity in tropical rain forests and coral reefs, Science 199(4335): 1302-1310.
1693. Lin, T., Hogan, J.A. and Chang, C. 2020, Tropical cyclone ecology: a scale-link perspective, Trends in Ecology & Evolution 35(7): 594-604.
1694. Correia, K.M. and Smee, D.L. 2022, A meta-analysis of tropical cyclone effects on seagrass meadows, Wetlands 42(8): 108.
1695. Krauss, K.W. and Osland, M.J. 2020, Tropical cyclones and the organization of mangrove forests: a review, Annals of Botany 125(2): 213-234.
1696. De’ath, G., Fabricius, K.E., Sweatman, H. and Puotinen, M. 2012, The 27–year decline of coral cover on the Great Barrier Reef and its causes, Proceedings of the National Academy of Sciences 109(44): 17995-17999.
1697. Bozec, Y., Hock, K., Mason, R.A., Baird, M.E., Castro‐Sanguino, C., et al. 2022, Cumulative impacts across Australia’s Great Barrier Reef: a mechanistic evaluation, Ecological Monographs 92(1): e01494.
1698. Done, T.J. 1992, Effects of tropical cyclone waves on ecological and geomorphological structures on the Great Barrier Reef, Continental Shelf Research 12(7-8): 859-872.
1699. Puotinen, M., Maynard, J.A., Beeden, R., Radford, B. and Williams, G.J. 2016, A robust operational model for predicting where tropical cyclone waves damage coral reefs, Scientific Reports 6(1): 26009.
1700. Baird, A.H., Álvarez-Noriega, M., Cumbo, V.R., Connolly, S.R., Dornelas, M., et al. 2018, Effects of tropical storms on the demography of reef corals, Marine Ecology Progress Series 606: 29-38.