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Trophic diversity within the planktonic food web of the Elbe Estuary determined on isolated individual species by 13C analysis
Authors:Kerner  M; Ertl  S; Spitzy  A
Institution:Institute for Hydrobiology and Fishery Science, University of Hamburg, D-22765 Hamburg, Zeiseweg 9 and 1 Institute for Biogeochemistry and Marine Chemistry, D-20146 Hamburg, Bundesstrasse 55, Germany
Abstract:The uptake of organic substrates by heterotrophic planktonicorganisms was studied along the freshwater Elbe Estuary in May,July and October 2000 using 13C analysis of individually isolateddominant species of copepoda, cladocera, rotifera and ciliata.Non-sedimenting suspended particulate matter (SPMns) was separatedfrom sedimenting matter and further analysed for the chemicalcomposition of its different size fractions in order to estimatesubstrate availability. Particles <5 µm accounted for~15% of total SPMns ~40 mg dry weight (DW) L–1] and containedC:N ratios indicating a predominance of living matter (i.e.mass C:N of phytoplankton). All species under study exhibiteda high capacity for selective feeding with little variationin the diet along the whole freshwater profile. Picoplanktonof 0.2–1.2 µm formed mainly by bacteria had a {delta}13Cvalue of –26{per thousand} in May and July and –29{per thousand} in October,similar to the {delta}13C of the dissolved organic carbon (DOC). Bacteriadid not fractionate isotopically and did not preferentiallyconsume specific subunits of their substrate, i.e. they exhibitedno trophic shift. It appears that phytoplankton exudates werea minor component to total DOC in this estuary. Phytoplanktonwas the exclusive food for all phagotrophic organisms understudy in July, thus only one trophic level was exhibited. DuringMay and October the grazers under study used different substrates,resulting in a planktonic food web of three trophic levels formedby different species of the taxonomic groups under study. Theresults indicate a conditioned behaviour with regard to substrateselection allowing the grazers to produce high abundances evenwhen particles were abundant and competition for phytoplanktonwas high.
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