The effects of preservation on fish tissue stable isotope signatures

被引:112
作者
Kelly, B.
Dempson, J. B.
Power, M.
机构
[1] Univ Waterloo, Dept Biol, Waterloo, ON N2L 3G1, Canada
[2] Fisheries & Oceans Canada, Sci Branch, St John, NF A1C 5X1, Canada
关键词
Arctic charr; food webs; lipid extraction; lipids; preservation effects; stable isotopes;
D O I
10.1111/j.1095-8649.2006.01226.x
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
The effects of formalin and ethanol preservation on the delta C-13 and delta N-15 isotope signatures of Arctic charr Salvelinus alpinus muscle tissue were examined. The lipid content of the tissue samples studied ranged from 3.6 to 6.1% and was not correlated with the magnitude of observed isotopic shifts in preserved samples. Ethanol and formalin significantly depleted and enriched, respectively, the delta C-13 isotope signatures of preserved tissues when compared to control samples. Ethanol did not significantly enrich delta N-15 signatures in comparison to controls, whereas formalin did. A meta-analysis of multiple species effects further demonstrated significant preservation effects in fish tissue. Statistical analysis of data obtained by correcting preserved tissue isotope signatures with literature, bootstrapped or meta-analysis derived correction factors demonstrated significant differences between corrected and control sample isotope signatures or failure to produce a unity slope when the data sets were regressed against one another. Species-specific, bootstrapped linear correction models resulted in no such errors. Results suggest that species-specific correction methods should be used for fishes because of the known wide variation in fish tissue lipid content and composition. Accordingly, the use of pilot studies will be required to develop correction factors that properly adjust for preservation effects when interpreting temporal patterns in historic analyses of food webs. (c) 2006 The Authors Journal compilation (c) 2006 The Fisheries Society of the British Isles.
引用
收藏
页码:1595 / 1611
页数:17
相关论文
共 45 条
[11]  
GEARING JN, 1991, CARBON ISOTOPE TECHN, P202
[12]  
Gloutney ML, 1998, J FIELD ORNITHOL, V69, P223
[13]   Stable isotopes show food web changes after invasion by the predatory cladoceran Cercopagis pengoi in a Baltic Sea bay [J].
Gorokhova, E ;
Hansson, S ;
Höglander, H ;
Andersen, CM .
OECOLOGIA, 2005, 143 (02) :251-259
[14]   A METAANALYSIS OF COMPETITION IN FIELD EXPERIMENTS [J].
GUREVITCH, J ;
MORROW, LL ;
WALLACE, A ;
WALSH, JS .
AMERICAN NATURALIST, 1992, 140 (04) :539-572
[15]   A stable isotope evaluation of the structure and spatial heterogeneity of a Lake Superior food web [J].
Harvey, CJ ;
Kitchell, JF .
CANADIAN JOURNAL OF FISHERIES AND AQUATIC SCIENCES, 2000, 57 (07) :1395-1403
[16]  
Hedges LV., 2014, STAT METHODS META AN
[17]   THE LIPID-COMPOSITION AND BIOCHEMISTRY OF FRESH-WATER FISH [J].
HENDERSON, RJ ;
TOCHER, DR .
PROGRESS IN LIPID RESEARCH, 1987, 26 (04) :281-347
[18]   Preservation of blood and tissue samples for stable-carbon and stable-nitrogen isotope analysis [J].
Hobson, KA ;
Gibbs, HL ;
Gloutney, ML .
CANADIAN JOURNAL OF ZOOLOGY-REVUE CANADIENNE DE ZOOLOGIE, 1997, 75 (10) :1720-1723
[19]  
Jonsson N, 2003, CAN J FISH AQUAT SCI, V60, P506, DOI [10.1139/f03-042, 10.1139/F03-042]
[20]   ALTERATION OF TROPHIC INTERACTIONS BETWEEN PERIPHYTON AND INVERTEBRATES IN AN ACIDIFIED STREAM - A STABLE CARBON-ISOTOPE STUDY [J].
JUNGER, M ;
PLANAS, D .
HYDROBIOLOGIA, 1993, 262 (02) :97-107