TEMPORAL VARIATIONS OF MACROBORERS IN MASSIVE PORITES-LOBATA ON MOOREA, FRENCH-POLYNESIA

被引:38
|
作者
PEYROTCLAUSADE, M
HUTCHINGS, P
RICHARD, G
机构
[1] MUSEUM NATL HIST NAT, MOOREAL, FRANCE
[2] ECOLE PRAT HAUTES ETUD, MOOREA, FRANCE
[3] ECOLE PRAT HAUTES ETUD, UA 1453, F-75005 PARIS, FRANCE
[4] AUSTRALIAN MUSEUM, SYDNEY, NSW 2000, AUSTRALIA
关键词
D O I
10.1007/BF00255471
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Massive colonies of Porites lobata on the barrier reef of Tiahura, Moorea, can be divided into four categories: living colonies, colonies consisting of 50% live coral and 50% dead skeleton, 100% dead coral and colonies which have been reduced to a basal plate. Replicate samples of each of these colony types were collected in the same vicinity of the barrier reef during October 1987. The macroborers were extracted, identified, counted and their volumes determined by displacement. Kruskal-Wallis tests showed that three different boring communities occur within these four categories of Porites colonies. Live colonies are characterised by only 3 species, the bivalve, Lithophaga laevigata; the vermetid Dendropoma maximun; and the non boring serpulid polychaete Spirobranchus. The completely dead colonies contain up to 17 boring species, with five to six individuals per 100 cm. Sipunculans are the dominant bioeroders with the most abundant species being Aspidosiphon elegans, sp A and sp B. Colonies of Porites which have been reduced to basal plates contain up to 18 boring species of which the bivalve Lithophaga hanleyana and the sipunculan Aspidosiphon sp. B are the most abundant. The cumulative volume of CaCO3 lost by boring activity increases from 0.1 cm3 per 100 cm3 in a completely dead Porites colony to 1.4 cm3 per 100 cm3 in the residual basal plates of Porites. These can be extrapolated to minimum losses of 14.2 kg m-3. We suggest that rates of boring increase with the time which has elapsed since the death of the colony and the dominant agents of boring also change with increasing age of the coral structure There are significant additional losses of 5.25 kg m-3 CaCO3 caused by grazing echinoids and scarids.
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页码:161 / 166
页数:6
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