FATTY ACID SIGNATURES DIFFERENTIATE MARINE MACROPHYTES AT ORDINAL AND FAMILY RANKS

被引:91
作者
Galloway, Aaron W. E. [1 ]
Britton-Simmons, Kevin H.
Duggins, David O.
Gabrielson, Paul W. [2 ]
Brett, Michael T. [3 ]
机构
[1] Univ Washington, Friday Harbor Labs, Sch Aquat & Fishery Sci, Friday Harbor, WA 98250 USA
[2] Univ N Carolina, Herbarium, Chapel Hill, NC 27599 USA
[3] Univ Washington, Seattle, WA 98195 USA
基金
美国国家科学基金会;
关键词
algal systematics; essential fatty acids; fatty acids; food web biomarkers; marine algae; marine macrophytes; primary production; seagrasses; FOOD-WEB; STABLE-ISOTOPES; SEA-URCHIN; LABORATORY EXPERIMENTS; LIPID-COMPOSITION; BROWN-ALGAE; KELP; MACROALGAE; ECOLOGY; ZOOPLANKTON;
D O I
10.1111/j.1529-8817.2012.01173.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Primary productivity by plants and algae is the fundamental source of energy in virtually all food webs. Furthermore, photosynthetic organisms are the sole source for ?-3 and ?-6 essential fatty acids (EFA) to upper trophic levels. Because animals cannot synthesize EFA, these molecules may be useful as trophic markers for tracking sources of primary production through food webs if different primary producer groups have different EFA signatures. We tested the hypothesis that different marine macrophyte groups have distinct fatty acid (FA) signatures by conducting a phylogenetic survey of 40 marine macrophytes (seaweeds and seagrasses) representing 36 families, 21 orders, and four phyla in the San Juan Archipelago, WA, USA. We used multivariate statistics to show that FA composition differed significantly (P < 0.001) among phyla, orders, and families using 44 FA and a subset of seven EFA (P < 0.001). A second analysis of published EFA data of 123 additional macrophytes confirmed that this pattern was robust on a global scale (P < 0.001). This phylogenetic differentiation of macrophyte taxa shows a clear relationship between macrophyte phylogeny and FA content and strongly suggests that FA signature analyses can offer a viable approach to clarifying fundamental questions about the contribution of different basal resources to food webs. Moreover, these results imply that taxa with commercially valuable EFA signatures will likely share such characteristics with other closely related taxa that have not yet been evaluated for FA content.
引用
收藏
页码:956 / 965
页数:10
相关论文
共 64 条
[1]   Determining spatial changes in the diet of nearshore suspension-feeders along the South African coastline: Stable isotope and fatty acid signatures [J].
Allan, E. Louise ;
Ambrose, Shan T. ;
Richoux, Nicole B. ;
Froneman, P. William .
ESTUARINE COASTAL AND SHELF SCIENCE, 2010, 87 (03) :463-471
[2]   Distance-based tests for homogeneity of multivariate dispersions [J].
Anderson, MJ .
BIOMETRICS, 2006, 62 (01) :245-253
[3]  
Anderson MJ, 2001, AUSTRAL ECOL, V26, P32, DOI 10.1111/j.1442-9993.2001.01070.pp.x
[4]   Photosynthesis and lipid composition of the Antarctic endemic rhodophyte Palmaria decipiens: effects of changing light and temperature levels [J].
Becker, Susanne ;
Graeve, Martin ;
Bischof, Kai .
POLAR BIOLOGY, 2010, 33 (07) :945-955
[5]  
Bell MV, 2009, LIPIDS IN AQUATIC ECOSYSTEMS, P211, DOI 10.1007/978-0-387-89366-2_9
[6]   Phytoplankton, not allochthonous carbon, sustains herbivorous zooplankton production [J].
Brett, Michael T. ;
Kainz, Martin J. ;
Taipale, Sami J. ;
Seshan, Hari .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (50) :21197-21201
[7]   The role of highly unsaturated fatty acids in aquatic food web processes [J].
Brett, MT ;
Muller-Navarra, DC .
FRESHWATER BIOLOGY, 1997, 38 (03) :483-499
[8]   Habitat and bathymetry influence the landscape-scale distribution and abundance of drift macrophytes and associated invertebrates [J].
Britton-Simmons, Kevin H. ;
Rhoades, Alison L. ;
Pacunski, Robert E. ;
Galloway, Aaron W. E. ;
Lowe, Alexander T. ;
Sosik, Elizabeth A. ;
Dethier, Megan N. ;
Duggins, David O. .
LIMNOLOGY AND OCEANOGRAPHY, 2012, 57 (01) :176-184
[9]   Spatial subsidy in the subtidal zone: utilization of drift algae by a deep subtidal sea urchin [J].
Britton-Simmons, Kevin H. ;
Foley, Gerard ;
Okamoto, Daniel .
AQUATIC BIOLOGY, 2009, 5 (03) :233-243
[10]   Tracing carbon flow in an arctic marine food web using fatty acid-stable isotope analysis [J].
Budge, S. M. ;
Wooller, M. J. ;
Springer, A. M. ;
Iverson, S. J. ;
McRoy, C. P. ;
Divoky, G. J. .
OECOLOGIA, 2008, 157 (01) :117-129