SPATIAL AND TEMPORAL VARIATION IN PREDATION ON REEF FISHES BY CORAL TROUT (PLECTROPOMUS-LEOPARDUS, SERRANIDAE)

被引:120
作者
KINGSFORD, MJ
机构
[1] School of Biological Sciences A08, University of Sydney, Sydney, 2006, NSW
关键词
D O I
10.1007/BF00301993
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
The diet of coral trout Plectropomus leopardus (Serranidae) was studied over a two year period at One Tree Island, Great Barrier Reef, Australia. Rapid visual counts demonstrated that P. leopardus were most abundant on the reef slope habitat and inner edge of the enclosed lagoon. Few P. leopardus were found at sites from "inner" lagoon. It was hypothesized that diet would vary among habitats, times and size classes of coral trout. Ninety-two percent of P. leopardus that contained prey had consumed fish and 87% had only eaten fish. Many types of reef fish were taken by P. leopardus (e.g. Pomacentridae, Scaridae, Blenniidae and Labridae). Most pelagic prey (Clupeidae and Engraulididae) were taken on the reef slope, while some prey were solely or pimarily taken in the lagoon (e.g. Blenniidae and crustaceans). Most pelagic prey were taken on the reef slope in summer by P. leopardus > 250 mm (SL). Plectropomus leopardus (< 200 mm) from the lagoon had a higher proportion of invertebrates in the diet than fish from the reef slope. Plectropomus leopardus of all sizes ate small fish, while largest fish generally consumed largest prey (especially adult scarids and labrids). I argue that interactions among multiple species of prey and predators need more attention, because piscivores may respond to prey in different ways according to habitat type as well as the number and type of other prey types present. Furthermore, different sizes of fish (e.g. coral trout) may impact assemblages of prey in different ways.
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页码:193 / 198
页数:6
相关论文
共 34 条
[21]   RECRUITMENT AND THE STRUCTURE OF ASSEMBLAGES OF FISH ON CORAL REEFS [J].
MAPSTONE, BD ;
FOWLER, AJ .
TRENDS IN ECOLOGY & EVOLUTION, 1988, 3 (03) :72-77
[22]  
MEEKAN MG, 1988, 6TH P INT COR REEF S, V2, P779
[23]   SWITCHING IN PREDATORY FISH [J].
MURDOCH, WW ;
AVERY, S ;
SMYTH, MEB .
ECOLOGY, 1975, 56 (05) :1094-1105
[24]  
Randall J.E., 1998, FISHES GREAT BARRIER
[25]  
Sale P.F., 1980, Oceanography and Marine Biology an Annual Review, V18, P367
[26]   EARLY SURVIVORSHIP OF JUVENILE CORAL-REEF FISHES [J].
SALE, PF ;
FERRELL, DJ .
CORAL REEFS, 1988, 7 (03) :117-124
[27]   PREVALENCE AND DISTRIBUTION PATTERNS OF TUMORS IN BICOLOR DAMSELFISH (POMACENTRUS-PARTITUS) ON SOUTH FLORIDA REEFS [J].
SCHMALE, MC .
MARINE BIOLOGY, 1991, 109 (02) :203-212
[28]   FOOD-HABITS AND PREY SELECTION OF 3 SPECIES OF GROUPERS FROM THE GENUS CEPHALOPHOLIS (SERRANIDAE, TELEOSTEI) [J].
SHPIGEL, M ;
FISHELSON, L .
ENVIRONMENTAL BIOLOGY OF FISHES, 1989, 24 (01) :67-73
[29]   WHAT CONTROLS TROPICAL REEF FISH POPULATIONS - RECRUITMENT OR BENTHIC MORTALITY - AN EXAMPLE IN THE CARIBBEAN REEF FISH HAEMULON-FLAVOLINEATUM [J].
SHULMAN, MJ ;
OGDEN, JC .
MARINE ECOLOGY PROGRESS SERIES, 1987, 39 (03) :233-242
[30]   DISTRIBUTION, ABUNDANCE, AND REPRODUCTIVE SUCCESS IN THE CORAL-REEF FISH ACANTHOCHROMIS-POLYACANTHUS [J].
THRESHER, RE .
ECOLOGY, 1985, 66 (04) :1139-1150