Seasonal growth variation in Chlamys islandica (Bivalvia) from sub-Arctic Greenland is linked to food availability and temperature

被引:30
作者
Blicher, Martin Emil [1 ,2 ]
Rysgaard, Soren [1 ]
Sejr, Mikael K. [2 ]
机构
[1] Greenland Inst Nat Resources, Greenland Climate Res Ctr, Nuuk 3900, Greenland
[2] Univ Aarhus, Natl Environm Res Inst, DK-8600 Silkeborg, Denmark
关键词
Bivalve; Scallop; Temporal dynamics; Production; Food availability; Sub-Arctic; Pectinid; Temperature; Shell growth; URCHIN STRONGYLOCENTROTUS-DROEBACHIENSIS; SUSPENSION-FEEDING BIVALVE; ICELAND SCALLOP; SUSPENDED CULTURE; PLACOPECTEN-MAGELLANICUS; NORTHEAST GREENLAND; ECOSYSTEM DYNAMICS; MARINE ECOSYSTEM; HIATELLA-ARCTICA; ATRINA-ZELANDICA;
D O I
10.3354/meps08536
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
In order to assess the role of different environmental parameters in the population dynamics of marine invertebrates in the Arctic, we examined seasonal variation in individual biomass, shell growth, and mass production of somatic and reproductive tissues of immature and maturing scallops Chlamys islandica suspended in culture nets at 15 and 30 m depth in SW Greenland from May 2007 to October 2008. All 3 parameters varied both seasonally and between depths. Individual shell growth rate and biomass were poor proxies for the actual mass growth rate on a seasonal scale. Minimum and maximum mass growth rates were observed from November to February and in April-May, respectively. Simultaneous monitoring of biotic and abiotic parameters in the water column made it possible to establish a growth model relating variation in mass growth rate to variation in environmental conditions. The best-fit model (R-2 = 0.71) indicated that total mass growth rate depended on chlorophyll a concentration, carbon-to-nitrogen ratio of seston, and water temperature. While availability of high-quality food items affected growth positively, the growth model indicated a negative effect of increasing temperature on the mass growth rate of C. islandica. These results indicate that scallops in SW Greenland are resource-limited and that elevated temperature through its effect on metabolic costs reduces growth efficiency. Hence, it is most likely that the growth capacity of C. islandica in SW Greenland is either never realized or only attained for short periods of time (hours to days) under the present conditions.
引用
收藏
页码:71 / 86
页数:16
相关论文
共 72 条
[1]   BENTHIC RESPONSE TO WATER COLUMN PRODUCTIVITY PATTERNS - EVIDENCE FOR BENTHIC-PELAGIC COUPLING IN THE NORTHEAST WATER POLYNYA [J].
AMBROSE, WG ;
RENAUD, PE .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1995, 100 (C3) :4411-4421
[2]  
[Anonymous], 2005, INTRO MATH STAT ITS
[3]   Impact of a shrinking Arctic ice cover on marine primary production [J].
Arrigo, Kevin R. ;
van Dijken, Gert ;
Pabi, Sudeshna .
GEOPHYSICAL RESEARCH LETTERS, 2008, 35 (19)
[4]   Size related changes in vulnerability to predators and spatial refuge use by juvenile Iceland scallops Chlamys islandica [J].
Arsenault, DJ ;
Himmelman, JH .
MARINE ECOLOGY PROGRESS SERIES, 1996, 140 (1-3) :115-122
[5]  
Arsenault DJ, 1996, CAN J FISH AQUAT SCI, V53, P884, DOI 10.1139/cjfas-53-4-884
[6]   Temporal and spatial variability in settlement and recruitment of echinoderms in kelp beds and barrens in Nova Scotia [J].
Balch, T ;
Scheibling, RE .
MARINE ECOLOGY PROGRESS SERIES, 2000, 205 :139-154
[7]   Some like it cold: populations of the tellinid bivalve Macoma balthica (L.) suffer in various ways from a warming climate [J].
Beukema, J. J. ;
Dekker, R. ;
Jansen, J. M. .
MARINE ECOLOGY PROGRESS SERIES, 2009, 384 :135-145
[8]   Growth and production of sea urchin Strongylocentrotus droebachiensis in a high-Arctic fjord, and growth along a climatic gradient (64 to 77°N) [J].
Blicher, Martin E. ;
Rysgaard, Seren ;
Sejr, Mikael K. .
MARINE ECOLOGY PROGRESS SERIES, 2007, 341 :89-102
[9]   High carbon demand of dominant macrozoobenthic species indicates their central role in ecosystem carbon flow in a sub-Arctic fjord [J].
Blicher, Martin Emil ;
Sejr, Mikael Kristian ;
Rysgaard, Soren .
MARINE ECOLOGY PROGRESS SERIES, 2009, 383 :127-140
[10]  
Brey T., 2001, Population Dynamics in Benthic Invertebrates, a Virtual Handbook