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Cumulative effects of cyclones and bleaching on coral cover and species richness at Lizard Island

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Madin_et_al_2018_coral_cover.pdf (1.242Mb)
Date
04/10/2018
Author
Madin, Joshua S.
Baird, Andrew H.
Bridge, Tom C. L.
Connolly, Sean R.
Zawada, Kyle J. A.
Dornelas, Maria
Funder
John Templeton Foundation
Grant ID
60501
Keywords
Community ecology
Coral reefs
Climate change
Disturbance
Diversity
Great Barrier Reef
QH301 Biology
NDAS
SDG 13 - Climate Action
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Abstract
Coral reefs are being subjected to an increase in the frequency and intensity of disturbance, such as bleaching and cyclones, and it is important to document the effects of such disturbance on reef coral assemblages. Between March 2014 and May 2017, the reefs of Lizard Island in the northern section of the Great Barrier Reef were affected by 4 consecutive disturbances: severe tropical cyclones Ita and Nathan in 2014 and 2015, and mass bleaching events in 2016 and 2017. Loss of coral cover following the cyclones was patchy and dependent on the direction of the waves generated. In contrast, loss of cover following bleaching was much more uniform. Overall, coral cover declined 5-fold from 36% pre-cyclone Ita to 7% post-bleaching in 2017, while mean species richness dropped from 10 to 4 species per transect. The spatial scale and magnitude of the loss of coral cover in the region suggests that it will be many years before these reefs recover.
Citation
Madin , J S , Baird , A H , Bridge , T C L , Connolly , S R , Zawada , K J A & Dornelas , M 2018 , ' Cumulative effects of cyclones and bleaching on coral cover and species richness at Lizard Island ' , Marine Ecology Progress Series , vol. 604 , pp. 263-268 . https://doi.org/10.3354/meps12735
Publication
Marine Ecology Progress Series
Status
Peer reviewed
DOI
https://doi.org/10.3354/meps12735
ISSN
0171-8630
Type
Journal article
Rights
Copyright © 2018 Inter-Research. This work has been made available online in accordance with the publisher’s policies. This is the author created, accepted version manuscript following peer review and may differ slightly from the final published version. The final published version of this work is available at https://doi.org/10.3354/meps12735
Description
Funding was provided by the Australian Council Centre of Excellence for Coral Reef Studies (COE140100020) and the John Templeton Foundation (M.D., J.S.M. grant #60501 'Putting the Extended Evolutionary Synthesis to the Test’).
Collections
  • University of St Andrews Research
URI
https://hdl.handle.net/10023/18606

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