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Benthic Algae Support Zooplankton Growth during Winter in a Clear-Water Lake
by
Säwström, Christin
, Karlsson, Jan
in
Algae
/ Autumn
/ Bacteria
/ carbon
/ Cyclops scutifer
/ Eudiaptomus graciloides
/ Food security
/ Food webs
/ foods
/ Freshwater
/ isotopes
/ Lake water
/ lakes
/ Lentic systems
/ lipid content
/ nitrogen
/ organic matter
/ primary productivity
/ spring
/ Summer
/ Winter
/ Zooplankton
2009
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Benthic Algae Support Zooplankton Growth during Winter in a Clear-Water Lake
by
Säwström, Christin
, Karlsson, Jan
in
Algae
/ Autumn
/ Bacteria
/ carbon
/ Cyclops scutifer
/ Eudiaptomus graciloides
/ Food security
/ Food webs
/ foods
/ Freshwater
/ isotopes
/ Lake water
/ lakes
/ Lentic systems
/ lipid content
/ nitrogen
/ organic matter
/ primary productivity
/ spring
/ Summer
/ Winter
/ Zooplankton
2009
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Do you wish to request the book?
Benthic Algae Support Zooplankton Growth during Winter in a Clear-Water Lake
by
Säwström, Christin
, Karlsson, Jan
in
Algae
/ Autumn
/ Bacteria
/ carbon
/ Cyclops scutifer
/ Eudiaptomus graciloides
/ Food security
/ Food webs
/ foods
/ Freshwater
/ isotopes
/ Lake water
/ lakes
/ Lentic systems
/ lipid content
/ nitrogen
/ organic matter
/ primary productivity
/ spring
/ Summer
/ Winter
/ Zooplankton
2009
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Benthic Algae Support Zooplankton Growth during Winter in a Clear-Water Lake
Journal Article
Benthic Algae Support Zooplankton Growth during Winter in a Clear-Water Lake
2009
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Overview
We used stable carbon (5 13 C) and nitrogen (5 15 N) isotopes to assess the importance of benthic algae for the zooplankton individual growth in winter in a shallow, clear subarctic lake. The 8 13 C values of calanoid (Eudiaptomus graciloides) and cyclopoid (Cyclops scutifer) zooplankton in autumn suggest a food resource of pelagic origin during the ice-free period. The zooplankton 5 13 C values were high in spring compared to autumn. E. graciloides did not grow over winter and the change in 5 13 C was attributed to a decrease in lipid content during the winter. In contrast, the increase in 5 13 C values of C. scutifer over the winter was explained by their growth on organic carbon generated by benthic algae. The 8 15 N of the C. scutifer food resource during winter was low compared to 8 15 N of the benthic community, suggesting that organic matter generated by benthic algae was mainly channelled to zooplankton via 15 N-depleted heterotrophic bacteria. The results demonstrate that benthic algae can sustain zooplankton metabolic demands and growth during long winters, which, in turn, may promote zooplankton growth on pelagic resources during the summer. Such multi-chain omnivory challenges the view of zooplankton as mainly dependent on internal primary production and stresses the importance of benthic resources for the productivity of plankton food webs in shallow lakes.
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