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https://doi.org/10.1371/journal.pone.0159755
Title: | Differential Response of Coral Assemblages to Thermal Stress Underscores the Complexity in Predicting Bleaching Susceptibility | Authors: | Chou, Loke Ming Toh, Tai Chong Ben Toh, Kok Ng, Chin Soon Lionel Cabaitan, Patrick Tun, Karenne Goh, Eugene Afiq-Rosli, Lutfi Taira, Daisuke Du, Rosa Celia Poquita Loke, Hai Xin Khalis, Aizat Li, Jinghan Song, Tiancheng |
Keywords: | Science & Technology Multidisciplinary Sciences Science & Technology - Other Topics GREAT-BARRIER-REEF CNIDARIA ANTHOZOA SCLERACTINIA CLIMATE-CHANGE TAXONOMIC CLASSIFICATION WATER-QUALITY SURVIVAL TEMPERATURE MORTALITY SINGAPORE ISLANDS |
Issue Date: | 20-Jul-2016 | Publisher: | PUBLIC LIBRARY SCIENCE | Citation: | Chou, Loke Ming, Toh, Tai Chong, Ben Toh, Kok, Ng, Chin Soon Lionel, Cabaitan, Patrick, Tun, Karenne, Goh, Eugene, Afiq-Rosli, Lutfi, Taira, Daisuke, Du, Rosa Celia Poquita, Loke, Hai Xin, Khalis, Aizat, Li, Jinghan, Song, Tiancheng (2016-07-20). Differential Response of Coral Assemblages to Thermal Stress Underscores the Complexity in Predicting Bleaching Susceptibility. PLOS ONE 11 (7). ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pone.0159755 | Abstract: | Coral bleaching events have been predicted to occur more frequently in the coming decades with global warming. The susceptibility of corals to bleaching during thermal stress episodes is dependent on many factors and an understanding of these underlying drivers is crucial for conservation management. In 2013, a mild bleaching episode ensued in response to elevated sea temperature on the sediment-burdened reefs in Singapore. Surveys of seven sites highlighted variable bleaching susceptibility among coral genera-Pachyseris and Podabacia were the most impacted (31% of colonies of both genera bleached). The most susceptible genera such as Acropora and Pocillopora, which were expected to bleach, did not. Susceptibility varied between less than 6% and more than 11% of the corals bleached, at four and three sites respectively. Analysis of four of the most bleached genera revealed that a statistical model that included a combination of the factors (genus, colony size and site) provided a better explanation of the observed bleaching patterns than any single factor alone. This underscored the complexity in predicting the coral susceptibility to future thermal stress events and the importance of monitoring coral bleaching episodes to facilitate more effective management of coral reefs under climate change. | Source Title: | PLOS ONE | URI: | https://scholarbank.nus.edu.sg/handle/10635/247061 | ISSN: | 1932-6203 | DOI: | 10.1371/journal.pone.0159755 |
Appears in Collections: | Elements Staff Publications |
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