Title of article :
High-sediment tolerance in the reef coral Turbinaria mesenterina from the inner Great Barrier Reef lagoon (Australia)
Author/Authors :
Jeremy J. Sofonia، نويسنده , , Kenneth R.N. Anthony، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
5
From page :
748
To page :
752
Abstract :
Sedimentation is an important stressor on coral reefs subjected to run-off, dredging and resuspension events. Reefs with a history of high-sediment loads tend to be dominated by a few tolerant coral species. A key question is whether such species live close to their tolerance thresholds or near their niche optima. Here, we analyse experimentally the sediment tolerance of a spatially dominant coral, Turbinaria mesenterina (Dendrophylliidae), at nearshore reefs in the central Great Barrier Reef lagoon. Testing was conducted in a 5-week tank experiment under manipulated sediment loading and flow conditions. Physiological stress was assessed based on the behaviour of three key response variables: skeletal growth rate, energy reserves (lipid content) and photosynthetic performance. Because sediment effects are likely to vary between flow regimes, sediment and flow responses were tested using a full factorial design. Sediment loads greater than 110 mg cm 2 had no effect on any of the physiological variables, regardless of flow (0.7–24 cm s 1). Turbinaria mesenterina is thus tolerant to sediment loads an order of magnitude higher than most severe sediment conditions in situ. Likely mechanisms for such tolerance are that: (1) colonies covered in sediment (60–120 mm) in low-flow were able to clear themselves rapidly (within 4– 5 h); and (2) sediment provides a source of food. These results suggest that intensified sediment regimes on coastal reefs may shift coral communities towards dominance by a few well-adapted species.
Keywords :
physiological tolerancestressgrowth ratelipidcalcificationGreat Barrier Reefscleractinian coralRegional index terms:AustraliaQueenslandGreat Barrier ReefCleveland BayMagnetic IslandCockle Bay
Journal title :
Estuarine, Coastal and Shelf Science
Serial Year :
2008
Journal title :
Estuarine, Coastal and Shelf Science
Record number :
953438
Link To Document :
بازگشت