scholarly journals Variation in bleaching sensitivity of two coral species across a latitudinal gradient on the Great Barrier Reef: the role of zooxanthellae

2006 ◽  
Vol 314 ◽  
pp. 135-148 ◽  
Author(s):  
KE Ulstrup ◽  
R Berkelmans ◽  
PJ Ralph ◽  
MJH van Oppen
2021 ◽  
Author(s):  
Wenhui ZHAO ◽  
Yi HUANG ◽  
Steven T Siems ◽  
Michael J Manton

2005 ◽  
Vol 26 (3) ◽  
pp. 130
Author(s):  
Paul E Kolenbrander ◽  
Patricia I Diaz ◽  
Nicholas S Jakubovics ◽  
Alexander H Rickard ◽  
Natalia I Chalmers ◽  
...  

Consider that The Great Barrier Reef is home to thousands of species of plants and animals with spatiotemporally predictable fish communities on coral reefs, and compare this with the fact that human oral bacteria develop spatiotemporally predictable dental plaque communities on enamel after each oral hygiene procedure. This reassembling of oral bacterial communities over a time interval of only a few hours offers an opportunity to investigate the role of communication in community architecture and composition.


2021 ◽  
Author(s):  
Sonya Fiddes ◽  
Matthew Woodhouse ◽  
Steve Utembe ◽  
Robyn Schofield ◽  
Joel Alroe ◽  
...  

Abstract. Coral reefs have been found to produce the sulfur compound dimethyl sulfide (DMS), a climatically relevant aerosol precursor predominantly associated with phytoplankton. Until recently, the role of coral reef-derived DMS within the climate system had not been quantified. A study preceding the present work found that DMS produced by corals had negligible long-term climatic forcing at the global-regional scale. However, at sub-daily time scales more typically associated with aerosol and cloud formation, the influence of coral reef-derived DMS on local aerosol radiative effects remains unquantified. The Weather Research and Forecasting – chemistry model (WRF-Chem) has been used in this work to study the role of coral reef-derived DMS at sub-daily time scales for the first time. WRF-Chem was run to coincide with an October 2016 field campaign over the Great Barrier Reef, Queensland, Australia, against which the model was evaluated. After updating the DMS surface water climatology, the model reproduced DMS and sulfur concentrations well. The inclusion of coral reef-derived DMS resulted in no significant change in sulfate aerosol mass or total aerosol number. Subsequently, no direct or indirect aerosol effects were detected. The results suggest that the co-location of the Great Barrier Reef with significant anthropogenic aerosol sources along the Queensland coast prevents coral reef derived-aerosol from having a modulating influence on local aerosol burdens in the current climate.


1989 ◽  
Vol 21 (2) ◽  
pp. 267-272 ◽  
Author(s):  
C. L. Baldwin

Use of the Great Barrier Reef Region for tourism, the economic value of Reef tourism to Queensland, and the value placed by society on natural settings has been increasing rapidly during the 1980's. The Great Barrier Reef Marine Park Authority has the role of providing for reasonable use of this valuable resource. The concern for reefal water quality is discussed in terms of enhanced nutrient levels in the inshore GBR and the low tolerance of corals to nutrients. Findings of a recent Workshop on Nutrients in the Great Barrier Reef Region are described. This paper summarises the Authority's role in ensuring information exchange, appropriate research, and management in the area of water quality management and tourism.


Author(s):  
Wenhui ZHAO ◽  
Yi Huang ◽  
Steven Siems ◽  
Michael Manton

Coral Reefs ◽  
2007 ◽  
Vol 27 (1) ◽  
pp. 37-47 ◽  
Author(s):  
A. S. Hoey ◽  
D. R. Bellwood

Diversity ◽  
2019 ◽  
Vol 11 (11) ◽  
pp. 219
Author(s):  
Tory J Chase ◽  
Mia O Hoogenboom

Associations between habitat-forming, branching scleractinian corals and damselfish have critical implications for the function and trophic dynamics of coral reef ecosystems. This study quantifies how different characteristics of reef habitat, and of coral morphology, determine whether fish occupy a coral colony. In situ surveys of aggregative damselfish–coral associations were conducted at 51 different sites distributed among 22 reefs spread along >1700 km of the Great Barrier Reef, to quantify interaction frequency over a large spatial scale. The prevalence of fish–coral associations between five damselfish (Chromis viridis, Dascyllus aruanus, Dascyllus reticulatus, Pomacentrus amboinensis and Pomacentrus moluccensis) and five coral species (Acropora spathulata, Acropora intermedia, Pocillopora damicornis, Seriatopora hystrix, and Stylophora pistillata) averaged ~30% across all corals, but ranged from <1% to 93% of small branching corals occupied at each site, depending on reef exposure levels and habitat. Surprisingly, coral cover was not correlated with coral occupancy, or total biomass of damselfish. Instead, the biomass of damselfish was two-fold greater on sheltered sites compared with exposed sites. Reef habitat type strongly governed these interactions with reef slope/base (25%) and shallow sand-patch habitats (38%) hosting a majority of aggregative damselfish-branching coral associations compared to reef flat (10%), crest (16%), and wall habitats (11%). Among the focal coral species, Seriatopora hystrix hosted the highest damselfish biomass (12.45 g per occupied colony) and Acropora intermedia the least (6.87 g per occupied colony). Analyses of local coral colony traits indicated that multiple factors governed colony usage, including spacing between colonies on the benthos, colony position, and colony branching patterns. Nevertheless, the morphological and habitat characteristics that determine whether or not a colony is occupied by fish varied among coral species. These findings illuminate the realized niche of one of the most important and abundant reef fish families and provide a context for understanding how fish–coral interactions influence coral population and community level processes.


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