An experimental study of the effect of diet on the fatty acid profiles of the European Cuttlefish (Sepia officinalis)

被引:0
作者
Miriam Fluckiger
George D. Jackson
Peter Nichols
Patti Virtue
Adam Daw
Simon Wotherspoon
机构
[1] University of Tasmania,Institute of Antarctic and Southern Ocean Studies
[2] CSIRO Marine and Atmospheric Research,National Resource Centre for Cephalopods, Marine Biomedical Institute
[3] Antarctic and Climate Ecosystems CRC,USC Wrigley Marine Science Center
[4] University of Texas Medical Branch,School of Mathematics and Physics
[5] University of Southern California,undefined
[6] University of Tasmania,undefined
来源
Marine Biology | 2008年 / 154卷
关键词
Fatty Acid Profile; Digestive Gland; Dietary Lipid; Fish Diet; Fish Prey;
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学科分类号
摘要
Fatty acid analysis is an alternative dietary investigation tool that complements the more traditional techniques of stomach content and faecal analysis that are often subject to a wide range of biases. In applying fatty acid analysis to ecosystem studies, it is important to have an understanding of the effect diet has on the fatty acid profile of the predator. A feeding experiment, using crustacean and fish as prey for the European cuttlefish Sepia officinalis, was conducted to evaluate the effect of prey fatty acids on the fatty acid profile of this marine predator. Cuttlefish were fed on a fish diet for the first 29 days, and then changed to a crustacean diet for a further 28 days. Another group of cuttlefish was fed on a crustacean diet for the first 29 days, and then changed to a fish diet for a further 28 days. An analysis of the cuttlefish digestive gland showed that the fatty acid profile reflected that of the prey, with cuttlefish on a crustacean diet being clearly distinguishable from the cuttlefish on a fish diet. Cuttlefish fed on a fish diet for 29 days prior to the switch in diet were comparatively higher in 16:0, AA, 20:1ω9, DPA6, DHA, 22:4ω6 and DPA3 than those fed on crustaceans. Cuttlefish fed on a crustacean diet for 29 days prior to the switch in diet were comparatively higher in 17:1ω8, 18:1ω9, 18:2ω6, 18:1ω7, EPA and 20:2ω6 than those fed on fish. Following a change in diet, the fatty acid profile of the cuttlefish digestive gland reflected that of the new diet within 14 days. The results confirm that the fatty acid profile of the cuttlefish digestive gland clearly reflects the profile of its recent diet. It also shows that the digestive gland may not be an organ that accumulates dietary lipids for long-term storage, but rather is an organ where lipids are rapidly being turned over and potentially excreted.
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页码:363 / 372
页数:9
相关论文
共 77 条
[1]  
Alonzo F(2005)Lipids as trophic markers in Antarctic krill. II. Lipid composition of the body and digestive gland of Mar Ecol Prog Ser 296 65-79
[2]  
Virtue P(1959) in controlled conditions Can J Biochem Phys 37 911-917
[3]  
Nicol S(1992)A rapid method of total lipid extraction and purification Mar Biol 114 11-20
[4]  
Nichols PD(1996)Changes in composition of digestive gland and mantle muscle of the cuttlefish Phil Trans Roy Soc Lond B 351 1105-1112
[5]  
Bligh EG(1972) during starvation Adv Mar Biol 10 383-492
[6]  
Dyer WJ(1999)The role of cephalopods in the world’s oceans: general conclusions and the future Fish Res 40 277-293
[7]  
Castro BG(1992)Fish nutrition Wildlife Res 19 447-456
[8]  
Garrido JL(2006)Aspects of the stock dynamics and exploitation of cuttlefish, Vie Milieu 56 97-107
[9]  
Sotelo CG(1981) (Linnaeus, 1758), in the English Channel J Shellfish Res 1 187-192
[10]  
Clarke MR(2004)Estimating diet composition of the Australian sea-lion ( Ecole Monog 74 211-235