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Localized Impacts of Hurricane Irma on Diadema antillarum and Coral Reef Community Structure

  • Special Issue: Impact of 2017 Hurricanes
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Abstract

Strong physical disturbance from hurricanes can disrupt coral reef ecosystems and precipitate a regime shift toward algal dominance, particularly in the absence of grazing pressure to regulate algal growth post-storm. Here, we examine the influence of Hurricane Irma on a keystone grazer, Diadema antillarum, and the surrounding coral reef benthic community in the Florida Keys. D. antillarum densities and test diameters, as well as percent cover of coral reef benthic groups, were measured at 10 sites in the middle and upper Keys before and after Irma. Significant decreases in mean D. antillarum density and median test diameter were observed following the storm. There was a correlation between the magnitude of decline in D. antillarum density and the magnitude of sediment deposition on reefs, suggesting that abrasion or burial from sediment transport may have contributed to D. antillarum mortality. We detected significant decreases in the percent cover of sponges and hydrocorals following the storm, but no change in scleractinian coral cover, which was very low (3% mean cover) at the onset of the study. Macroalgal cover increased at sites in the upper Keys and decreased at sites in the middle Keys. There was no relationship between post-storm D. antillarum density and the change in percent cover of macroalgae or turf-algal-sediment matrix (TAS), likely due to low overall abundance of the grazer. We predict that coral reefs will remain in an algal-dominated ecosystem state due to, among other factors, increasing frequency of strong hurricanes that impact the D. antillarum population.

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References

  • Adam, T.C., D.E. Burkepile, B.I. Ruttenberg, and M.J. Paddack. 2015. Herbivory and the resilience of Caribbean coral reefs: Knowledge gaps and implications for management. Marine Ecology Progress Series 520: 1–20.

    Article  Google Scholar 

  • Alvarez-Filip, L., N.K. Dulvy, J.A. Gill, I.M. Côté, and A.R. Watkinson. 2009. Flattening of Caribbean coral reefs: Region-wide declines in architectural complexity. Proceedings of the Royal Society B: Biological Sciences 276 (1669): 3019–3025.

    Article  Google Scholar 

  • Aronson, R.B. 1993. Hurricane effects on backreef echinoderms of the Caribbean. Coral Reefs 12 (3-4): 139–142.

    Article  Google Scholar 

  • Aronson, R.B., P.J. Edmunds, W.F. Precht, D.W. Swanson, and D.R. Levitan. 1994. Large-scale, long-term monitoring of Caribbean coral reefs: Simple, quick, inexpensive techniques. Atoll Research Bulletin 421: 1–19.

    Article  Google Scholar 

  • Beisner, B.E., D.T. Haydon, and K. Cuddington. 2003. Alternative stable states in ecology. Frontiers in Ecology and the Environment 1 (7): 376–382.

    Article  Google Scholar 

  • Bellwood, D.R., T.P. Hughes, C. Folke, and M. Nyström. 2004. Confronting the coral reef crisis. Nature 429 (6994): 827.

    Article  CAS  Google Scholar 

  • Blair, S.M., T.L. McIntosh, and B.J. Mostkoff. 1994. Impacts of Hurricane Andrew on the offshore reef systems of central and northern Dade County, Florida. Bulletin of Marine Science 54 (3): 961–973.

    Google Scholar 

  • Bodmer, M.D., Rogers, A.D., Speight, M.R., Lubbock, N., Exton, D.A. 2015. Using an isolated population boom to explore barriers to recovery in the keystone Caribbean coral reef herbivore Diadema antillarum. Coral Reefs 34 (4):1011-1021

  • Cangialosi, J. P., Latto, A. S. and Berg, R. 2018. National Hurricane Center tropical cyclone report: Hurricane Irma (AL 112017). National Hurricane Center.

  • Carpenter, R.C. 1986. Partitioning herbivory and its effects on coral reef algal communities. Ecological monographs 56 (4): 345–364.

    Article  Google Scholar 

  • Cheal, A.J., M.A. MacNeil, M.J. Emslie, and H. Sweatman. 2017. The threat to coral reefs from more intense cyclones under climate change. Global Change Biology 23 (4): 1511–1524.

    Article  Google Scholar 

  • Chiappone, M., L.M. Rutten, S.L. Miller, and D.W. Swanson. 2013. Recent trends (1999–2011) in population density and size of the echinoid Diadema antillarum in the Florida Keys. Florida Scientist 76: 23–35.

    Google Scholar 

  • Connell, J.H. 1978. Diversity in tropical rain forests and coral reefs. Science 199 (4335): 1302–1310.

    Article  CAS  Google Scholar 

  • Edmunds, P.J., and R.C. Carpenter. 2001. Recovery of Diadema antillarum reduces macroalgal cover and increases abundance of juvenile corals on a Caribbean reef. Proceedings of the National Academy of Sciences 98 (9): 5067–5071.

    Article  CAS  Google Scholar 

  • Estes, J.A., and J.F. Palmisano. 1974. Sea otters: Their role in structuring nearshore communities. Science 185 (4156): 1058–1060.

    Article  CAS  Google Scholar 

  • Feehan, C.J., M.S. Brown, W.C. Sharp, J.S. Lauzon-Guay, and D.K. Adams. 2016. Fertilization limitation of Diadema antillarum on coral reefs in the Florida Keys. Ecology 97 (8): 1897–1904.

    Article  Google Scholar 

  • Feehan, C.J., W.C. Sharp, T.N. Miles, M.S. Brown, and D.K. Adams. 2019. Larval influx of Diadema antillarum to the Florida Keys linked to passage of a Tortugas Eddy. Coral Reefs 38 (2): 387–393.

    Article  Google Scholar 

  • Folke, C., S. Carpenter, B. Walker, M. Scheffer, T. Elmqvist, L. Gunderson, and C.S. Holling. 2004. Regime shifts, resilience, and biodiversity in ecosystem management. Annual Review of Ecology, Evolution, and Systematics 35: 557–581.

    Article  Google Scholar 

  • Forcucci, D. 1994. Population density, recruitment and 1991 mortality event of Diadema antillarum in the Florida Keys. Bulletin of Marine Science 54 (3): 917–928.

    Google Scholar 

  • Fox, J. and Weisberg, S. 2019. An {R} Companion to Applied Regression, Third Edition. Sage.

  • Francis, F.T., K. Filbee-Dexter, H.F. Yan, and I.M. Côté. 2019. Invertebrate herbivores: Overlooked allies in the recovery of degraded coral reefs? Global Ecology and Conservation. https://doi.org/10.1016/j.gecco.2019.e00593.

  • Furman, B., and K.L. Heck. 2009. Differential impacts of echinoid grazers on coral recruitment. Bulletin of Marine Science 85 (2): 121–132.

    Google Scholar 

  • Gagan, M.K., A.R. Chivas, and A.L. Herczeg. 1990. Shelf-wide erosion, deposition, and suspended sediment tranport during Cyclone Winifred, central Great Barrier Reef, Australia. Journal of Sedimentary Research 60 (3): 456–470.

    Article  Google Scholar 

  • Gardner, T.A., I.M. Cote, J.A. Gill, A. Grant, and A.R. Watkinson. 2005. Hurricanes and Caribbean coral reefs: Impacts, recovery patterns, and role in long-term decline. Ecology 86 (1): 174–184.

    Article  Google Scholar 

  • Gunderson, L.H. 2001. Managing surprising ecosystems in southern Florida. Ecological Economics 37: 371–378.

    Article  Google Scholar 

  • Harmelin-Vivien, M.L. 1994. The effects of storms and cyclones on coral reefs: A review. Journal of Coastal Research 12: 211–231.

    Google Scholar 

  • Hubbard, D.K. 1992. Hurricane-induced sediment transport in open-shelf tropical systems; An example from St. Croix, US Virgin Islands. Journal of Sedimentary Research 62 (6): 946–960.

    Google Scholar 

  • Hubbard, D.K., K.M. Parsons, J.C. Bythell, and N.D. Walker. 1991. The effects of Hurricane Hugo on the reefs and associated environments of St. Croix, US Virgin Islands—A preliminary assessment. Journal of Coastal Research 8: 33–48.

    Google Scholar 

  • Hughes, T.P. 1994. Catastrophes, regime shifts, and large-scale degradation of a Caribbean coral reef. Science 265 (5178): 1547–1551.

    Article  CAS  Google Scholar 

  • Hughes, T.P., M.J. Rodrigues, D.R. Bellwood, D. Ceccarelli, O. Hoegh-Guldberg, L. McCook, N. Moltschaniwskyj, M.S. Pratchett, R.S. Steneck, and B. Willis. 2007. Phase shifts, herbivory, and the resilience of coral reefs to climate change. Current Biology 17 (4): 360–365.

    Article  CAS  Google Scholar 

  • Hunte, W., and D. Younglao. 1988. Recruitment and population recovery of Diadema antillarum (Echinodermata; Echinoidea) in Barbados. Marine Ecology Progress Series 45 (1): 109–119.

    Article  Google Scholar 

  • Idjadi, J.A., R.N. Haring, and W.F. Precht. 2010. Recovery of the sea urchin Diadema antillarum promotes scleractinian coral growth and survivorship on shallow Jamaican reefs. Marine Ecology Progress Series 403: 91–100.

    Article  Google Scholar 

  • Jackson, J.B.C., M.K. Donovan, K.L. Cramer, and V.V. Lam. 2014. Status and trends of Caribbean coral reefs. Washington, DC: Global Coral Reef Monitoring Network, International Union for the Conservation of Nature Global Marine and Polar Program.

    Google Scholar 

  • Jorgensen, P., J. Espinoza-Ávalos, and H. Bahena-Basave. 2008. High population density survival of the sea urchin Diadema antillarum (Philippi 1845) to a category 5 hurricane in southern Mexican Caribbean. Hidrobiológica 18 (3): 257–260.

  • Kissling, D.L., W.F. Precht, S.L. Miller, and M. Chiappone. 2014. Historical reconstruction of population density of the echinoid Diadema antillarum on Florida Keys shallow bank-barrier reefs. Bulletin of Marine Science 90 (2): 665–679.

    Article  Google Scholar 

  • Knowlton, N. 1992. Thresholds and multiple stable states in coral reef community dynamics. American Zoologist 32 (6): 674–682.

    Article  Google Scholar 

  • Knutson, T.R., J.L. McBride, J. Chan, K. Emanuel, G. Holland, C. Landsea, I. Held, J.P. Kossin, A.K. Srivastava, and M. Sugi. 2010. Tropical cyclones and climate change. Nature Geoscience 3 (3): 157.

    Article  CAS  Google Scholar 

  • Ladd, M.C., M.W. Miller, J.H. Hunt, W.C. Sharp, and D.E. Burkepile. 2018. Harnessing ecological processes to facilitate coral restoration. Frontiers in Ecology and the Environment 16 (4): 239–247.

    Article  Google Scholar 

  • Lapointe, B.E. 1997. Nutrient thresholds for bottom-up control of macroalgal blooms on coral reefs in Jamaica and southeast Florida. Limnology and Oceanography 42 (5.2): 1119–1131.

    Article  CAS  Google Scholar 

  • Lee, S.C. 2006. Habitat complexity and consumer-mediated positive feedbacks on a Caribbean coral reef. Oikos 112 (2): 442–447.

    Article  Google Scholar 

  • Lessios, H.A. 1988. Mass mortality of Diadema antillarum in the Caribbean: What have we learned? Annual Review of Ecology, Evolution, and Systematics 19: 371–393.

    Article  Google Scholar 

  • Lessios, H.A. 2016. The great Diadema antillarum die-off: 30 years later. Annual Review of Marine Science 8: 267–283.

    Article  CAS  Google Scholar 

  • Lirman, D. 2001. Competition between macroalgae and corals: Effects of herbivore exclusion and increased algal biomass on coral survivorship and growth. Coral Reefs 19 (4): 392–399.

    Article  Google Scholar 

  • Miller, M.W., K.L. Kramer, S.M. Williams, L. Johnston, and A.M. Szmant. 2009. Assessment of current rates of Diadema antillarum larval settlement. Coral Reefs 28 (2): 511–515.

    Article  Google Scholar 

  • Mumby, P.J. 2009. Phase shifts and the stability of macroalgal communities on Caribbean coral reefs. Coral Reefs 28 (3): 761–773.

    Article  Google Scholar 

  • Mumby, P.J., N.L. Foster, and E.A.G. Fahy. 2005. Patch dynamics of coral reef macroalgae under chronic and acute disturbance. Coral Reefs 24 (4): 681–692.

    Article  Google Scholar 

  • Mumby, P.J., J.D. Hedley, K. Zychaluk, A.R. Harborne, and P.G. Blackwell. 2006. Revisiting the catastrophic die-off of the urchin Diadema antillarum on Caribbean coral reefs: Fresh insights on resilience from a simulation model. Ecological Modelling 196 (1-2): 131–148.

    Article  Google Scholar 

  • Mumby, P.J., A.R. Harborne, J. Williams, C.V. Kappel, D.R. Brumbaugh, F. Micheli, K.E. Holmes, C.P. Dahlgren, C.B. Paris, and P.G. Blackwell. 2007a. Trophic cascade facilitates coral recruitment in a marine reserve. Proceedings of the National Academy of Sciences 104 (20): 8362–8367.

    Article  CAS  Google Scholar 

  • Mumby, P.J., A. Hastings, and H.J. Edwards. 2007b. Thresholds and the resilience of Caribbean coral reefs. Nature 450 (7166): 98–101.

    Article  CAS  Google Scholar 

  • Myhre, S., and A. Acevedo-Gutiérrez. 2007. Recovery of sea urchin Diadema antillarum populations is correlated to increased coral and reduced macroalgal cover. Marine Ecology Progress Series 329: 205–210.

    Article  Google Scholar 

  • NOAA. 2018. NOAA and partners assess reef, aid recovery following Hurricane Irma. https://floridakeys.noaa.gov/whatsnew/releases/2018/20180110-noaa-and-partners-assess-reef-aid-recovery-following-irma.html. Accessed 22 Aug 2018.

  • Nyström, M., C. Folke, and F. Moberg. 2000. Coral reef disturbance and resilience in a human-dominated environment. Trends in Ecology & Evolution 15 (10): 413–417.

    Article  Google Scholar 

  • Randall, J.E., R.E. Schroeder, and W.A. Starck. 1964. Notes on the biology of the echinoid Diadema antillarum. Caribbean Journal of Science 4 (2-3): 421–433.

    Google Scholar 

  • Rogers, C.S., L.N. McLain, and C.R. Tobias. 1991. Effects of Hurricane Hugo (1989) on a coral reef in St. John, USVI. Marine Ecology Progress Series 78 (2): 189–199.

    Article  Google Scholar 

  • Ruzicka, R.R., M.A. Colella, J.W. Porter, J.M. Morrison, J.A. Kidney, V. Brinkhuis, K.S. Lunz, K.A. Macaulay, L.A. Bartlett, M.K. Meyers, and J. Colee. 2013. Temporal changes in benthic assemblages on Florida Keys reefs 11 years after the 1997/1998 El Niño. Marine Ecology Progress Series 489: 125–141.

    Article  Google Scholar 

  • Scheffer, M., S. Carpenter, J.A. Foley, C. Folke, and B. Walker. 2001. Catastrophic shifts in ecosystems. Nature 413 (6856): 591.

    Article  CAS  Google Scholar 

  • Schutte, V.G., E.R. Selig, and J.F. Bruno. 2010. Regional spatio-temporal trends in Caribbean coral reef benthic communities. Marine Ecology Progress Series 402: 115–122.

    Article  Google Scholar 

  • Steiner, S.C.C. 2003. Stony corals and reefs of Dominica. Atoll Research Bulletin 498: 1–15.

    Article  Google Scholar 

  • The WAVEWATCH III © Development Group (WW3DG). 2016. User manual and system documentation of WAVEWATCH III© version 5.16. Tech. Note 329, NOAA/NWS/NCEP/MMAB, College Park, MD, USA, 326 pp. + Appendices

  • Verling, E., D.K. Barnes, and A.C. Crook. 2005. Smashing tests? Patterns and mechanisms of adult mortality in a declining echinoid population. Marine Biology 147 (2): 509–515.

    Article  Google Scholar 

  • Walton, C., N.K. Hayes, and D.S. Gilliam. 2018. Impacts of a Regional, Multi-Year, Multi-Species Coral Disease Outbreak in Southeast Florida. Frontiers in Marine Science 5: 323.

    Article  Google Scholar 

  • Weil, E., F. Losada, and D. Bone. 1984. Spatial variations in density and size of the echinoid Diadema antillarum Philippi on some Venezuelan coral reefs. Bijdragen tot de Dierkunde 54 (1): 73–82.

    Article  Google Scholar 

  • Wickham, H., François, R., Henry L., and Müller, K.. 2018. dplyr: A Grammar of Data Manipulation. R package version 0.7.6. https://CRAN.R-project.org/package=dplyr. Accessed 8 Jan 2019

  • Woodley, J.D., E.A. Chornesky, P.A. Clifford, J.B.C. Jackson, L.S. Kaufman, N. Knowlton, J.C. Lang, M.P. Pearson, J.W. Porter, M.C. Rooney, and K.W. Rylaarsdam. 1981. Hurricane Allen’s impact on Jamaican coral reefs. Science 214 (4522): 749–755.

    Article  CAS  Google Scholar 

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Acknowledgments

The authors thank Brian Reckenbeil, Elliot Hart, and Mike Bollinger for field support, and Dara Yiu and three anonymous reviewers for helpful comments on the manuscript.

Funding

The research was financially supported by Montclair State University and a Florida State Wildlife Grant (SWG) awarded to WCS and CJF. JNK was financially supported by a research assistantship from Montclair State University.

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Correspondence to Julia N. Kobelt.

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Kobelt, J.N., Sharp, W.C., Miles, T.N. et al. Localized Impacts of Hurricane Irma on Diadema antillarum and Coral Reef Community Structure. Estuaries and Coasts 43, 1133–1143 (2020). https://doi.org/10.1007/s12237-019-00665-4

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