Pelagic food web structure and carbon dynamics were studied in Disko Bay, western Greenland, following the breakup of the sea ~c e in June-July 1992. Disko Bay was influenced by meltwater, and calm sunny weather heated the surface water from 0 to 6C. lnitially a dlatom bloom was present throughout the p h o t ~c zone. Due to nutrlent depletion, and deepening of the surface layer, the bloom left the photic zone. Active bacter~oplankton was observed from the first s a m p l ~n g Bactenal production i.ncreased from a few percent to one-third of the primary production after the sedimentation of the bloom. The grazing impact by the copepod community was assessed by 2 independent methods. The gut fluorescence method and the egg production method resulted in copepod grazing estimates of about 80 and 4 5 % of the primary production d -l , respectively. Carbon budget considerations showed that the estimated protozooplankton grazing impact was comparable, or higher, than grazing by the Calanus spp. dominated copepod community. The observed importance of Arctic bacteria and protozooplankton stress that high latitude pelagic food webs potentially have the same trophic complexity as low latitude pelagic ecosystems.
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Nielsen et al. (1995) studied this question.
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