Nursery-area function of maerl grounds for juvenile queen scallops Aequipecten opercularis and other invertebrates

被引:109
作者
Kamenos, NA [1 ]
Moore, PG
Hall-Spencer, JM
机构
[1] Univ Marine Biol Stn, Millport KA28 0EG, Isle Cumbrae, Scotland
[2] Univ Plymouth, Dept Sci Biol, Marine Biol & Ecol Res Grp, Plymouth PL4 8AA, Devon, England
关键词
maerl habitat; ecosystem services; nursery areas; scallops; marine invertebrates; Scotland;
D O I
10.3354/meps274183
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The services provided by coastal ecosystems such as mangrove forests and sea-grass beds are becoming increasingly recognised, yet the functional role of maerl beds has not been addressed. Maerl forms highly biodiverse habitats composed of loose-lying coralline red algae which build up over thousands of years. These carbonate-rich deposits occur in photic areas with strong water movement; they have a widespread global distribution yet remain one of the most overlooked shallow-water marine habitats, with little known about the ecosystem services maerl may provide. Our diving research in Scotland has shown that pristine live maerl (PLM) grounds fulfil nursery area prerequisites for commercial populations of queen scallops Aequipecten opercularis and other invertebrates, such as the soft clam Mya arenaria, the sea urchins Psammechinus miliaris and Echinus esculentus, and the starfish Asterias rubens, more effectively than impacted dead maerl and other common substrata, The complex architecture of maerl beds attracts high densities of these juvenile invertebrates, which use PLM grounds as nursery areas in preference to adjacent substrata. Considering its global distribution, it is highly likely that ecosystem services provided by maerl are considerable. Maerl is easily damaged and killed by a variety of human activities, yet its protection would maintain vital nursery area function, benefiting commercial fishery yields and, pivotally, regional biodiversity.
引用
收藏
页码:183 / 189
页数:7
相关论文
共 52 条
[1]   Recruitment of bay scallops Argopecten irradians in Floridan Gulf of Mexico waters: scales of coherence [J].
Arnolds, WS ;
Marelli, DC ;
Bray, CP ;
Harrison, MM .
MARINE ECOLOGY PROGRESS SERIES, 1998, 170 :143-157
[2]   ASPECTS OF VELIGER LARVAL GROWTH AND BYSSUS DRIFTING OF THE SPAT OF PECTEN-MAXIMUS AND AEQUIPECTEN-(CHLAMYS)-OPERCULARIS [J].
BEAUMONT, AR ;
BARNES, DA .
ICES JOURNAL OF MARINE SCIENCE, 1992, 49 (04) :417-423
[3]  
BIOMAERL Team, 2003, AQUAT CONSERV, V13, P565
[4]   Differential predation and growth rates of bay scallops within a seagrass habitat [J].
Bologna, PAX ;
Heck, KL .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 1999, 239 (02) :299-314
[5]  
BRETHES JC, 2003, P 14 INT PECT WORKSH, P3
[6]   INDUCTION OF SETTLEMENT AND METAMORPHOSIS OF THE VELIGER LARVAE OF THE NUDIBRANCH, ONCHIDORIS-BILAMELLATA [J].
CHIA, FS ;
KOSS, R .
INTERNATIONAL JOURNAL OF INVERTEBRATE REPRODUCTION AND DEVELOPMENT, 1988, 14 (01) :53-70
[7]  
COCHARD JL, 1989, BIOL APPL CONCHYLICU, V19, P259
[8]  
Crisp D.J., 1974, pUnpaginated
[9]  
CRISP DJ, 1984, MARINE BIODETERIORAT
[10]   Settlement of abalone larvae (Haliotis laevigata Donovan) in response to non-geniculate coralline red algae (Corallinales, Rhodophyta) [J].
Daume, S ;
Brand-Gardner, S ;
Woelkerling, WJ .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 1999, 234 (01) :125-143