Enhanced energy status of corals on coastal, high-turbidity reefs

被引:107
作者
Anthony, Kenneth R. N. [1 ]
机构
[1] James Cook Univ N Queensland, Ctr Coral Reef Biodivers, Sch Marine Biol & Aquaculture, Townsville, Qld 4811, Australia
关键词
turbidity; sedimentation; energy storage; lipid; scleractinian coral;
D O I
10.3354/meps319111
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Sedimentation and high turbidity have long been considered a major threat to corals, causing world-wide concern for the health of coral reefs in coastal environments. While studies have demonstrated that sediment conditions characteristic of inshore reefs cause stress in corals, the consequences of such conditions for the physiological status of corals require testing in field situations. Here, I compare the size of energy stores (as lipid content), a proxy for physiological condition, of 2 coral species (Turbinaria mesenterina and Acropora valida) between coastal and offshore environments. Corals on coastal reefs contained 4-fold (T mesenterina) and 2-fold (A. valida) more lipid than conspecifics offshore, despite 1 order of magnitude higher turbidity levels inshore. Results were consistent across 4 sites in each environment. Reproductive investment in A. valida (a seasonal mass spawner) did not vary between environments, suggesting that the larger lipid stores in corals on coastal reefs are mainly somatic energy reserves. These results demonstrate that the environmental conditions on inshore, high-turbidity reefs do not always impact negatively on the physiology of corals. The contrasting lipid levels of T. mesenterina between environments may explain its greater success on coastal reefs.
引用
收藏
页码:111 / 116
页数:6
相关论文
共 41 条
[1]   Enhanced particle-feeding capacity of corals on turbid reefs (Great Barrier Reef, Australia) [J].
Anthony, KRN .
CORAL REEFS, 2000, 19 (01) :59-67
[2]   Temporal variation of light availability in coastal benthic habitats: Effects of clouds, turbidity, and tides [J].
Anthony, KRN ;
Ridd, PV ;
Orpin, AR ;
Larcombe, P ;
Lough, J .
LIMNOLOGY AND OCEANOGRAPHY, 2004, 49 (06) :2201-2211
[3]   Comparative analysis of energy allocation to tissue and skeletal growth in corals [J].
Anthony, KRN ;
Connolly, SR ;
Willis, BL .
LIMNOLOGY AND OCEANOGRAPHY, 2002, 47 (05) :1417-1429
[4]   Coral suspension feeding on fine particulate matter [J].
Anthony, KRN .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 1999, 232 (01) :85-106
[5]   Shifting roles of heterotrophy and autotrophy in coral energetics under varying turbidity [J].
Anthony, KRN ;
Fabricius, KE .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 2000, 252 (02) :221-253
[6]   COMPARATIVE DEMOGRAPHY OF 3 SPECIES OF SCLERACTINIAN CORALS USING AGE-DEPENDENT AND SIZE-DEPENDENT CLASSIFICATIONS [J].
BABCOCK, RC .
ECOLOGICAL MONOGRAPHS, 1991, 61 (03) :225-244
[7]   Porites growth characteristics in a changed environment:: Misima Island, Papua New Guinea [J].
Barnes, DJ ;
Lough, JM .
CORAL REEFS, 1999, 18 (03) :213-218
[8]   Time-integrated thermal bleaching thresholds of reefs and their variation on the Great Barrier Reef [J].
Berkelmans, R .
MARINE ECOLOGY PROGRESS SERIES, 2002, 229 :73-82
[9]  
Brown Barbara E., 1997, P354
[10]  
BRYANT D, 1998, REEFS RISK