Dataset: Physiology of Montipora capitata and Porites compressa from October 2019 to September 2022 in response to marine heatwaves (2015 and 2019) in Hawaiʻi

Final no updates expectedDOI: 10.26008/1912/bco-dmo.904962.1Version 1 (2023-07-21)Dataset Type:Other Field Results

Principal Investigator: Katie Barott (University of Pennsylvania)

Principal Investigator: Hollie Putnam (University of Rhode Island)

Co-Principal Investigator: Kristen Brown (University of Pennsylvania)

BCO-DMO Data Manager: Amber D. York (Woods Hole Oceanographic Institution)


Project: RAPID: Collaborative Research: Disentangling the effects of heat stress versus bleaching phenotype on coral performance (Mcap pairs time series)


Abstract

Increasingly frequent marine heatwaves are devastating coral reefs. Corals that survive these extreme events must rapidly recover if they are to withstand subsequent events, and long-term survival in the face of rising ocean temperatures may hinge on recovery capacity and acclimatory gains in heat tolerance over an individual's lifespan. To better understand coral recovery trajectories in the face of successive marine heatwaves, we monitored the responses of bleaching-susceptible and bleaching-r...

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Citations

This dataset and other data from this study will be published in the results paper "Divergent bleaching and recovery trajectories in reef-building corals following a decade of successive marine heatwaves." (see pre-print Brown, et al. (2023), doi: 10.1101/2023.07.16.549193). 

All BCO-DMO datasets related to this publication can be found on the page https://www.bco-dmo.org/related-resource/915300.


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Related Publications

Results

Brown, K. T., Lenz, E. A., Glass, B. H., Kruse, E., McClintock, R., Drury, C., Nelson, C. E., Putnam, H. M., & Barott, K. L. (2023). Divergent recovery trajectories in reef-building corals following a decade of successive marine heatwaves. bioRxiv preprint. https://doi.org/10.1101/2023.07.16.549193
Methods

Platt, T., C. L. Gallegos, and W. G. Harrison. (1981) "Photoinhibition of Photosynthesis in Natural Assemblages of Marine Phytoplankton." Reprint from Journal of Marine Research, Vol. 38, 1980. repositorio.imarpe.gob.pe.
Methods

Brown, K. T., Mello-Athayde, M. A., Sampayo, E. M., Chai, A., Dove, S., & Barott, K. L. (2022). Environmental memory gained from exposure to extreme pCO2 variability promotes coral cellular acid–base homeostasis. Proceedings of the Royal Society B: Biological Sciences, 289(1982). https://doi.org/10.1098/rspb.2022.0941
Methods

Cunning, R., Parker, K. E., Johnson-Sapp, K., Karp, R. F., Wen, A. D., Williamson, O. M., Bartels, E., D’Alessandro, M., Gilliam, D. S., Hanson, G., Levy, J., Lirman, D., Maxwell, K., Million, W. C., Moulding, A. L., Moura, A., Muller, E. M., Nedimyer, K., Reckenbeil, B., … Baker, A. C. (2021). Census of heat tolerance among Florida’s threatened staghorn corals finds resilient individuals throughout existing nursery populations. Proceedings of the Royal Society B: Biological Sciences, 288(1961). https://doi.org/10.1098/rspb.2021.1613
Methods

Dunn, S. R., Thomas, M. C., Nette, G. W., & Dove, S. G. (2012). A Lipidomic Approach to Understanding Free Fatty Acid Lipogenesis Derived from Dissolved Inorganic Carbon within Cnidarian-Dinoflagellate Symbiosis. PLoS ONE, 7(10), e46801. https://doi.org/10.1371/journal.pone.0046801