Microzooplankton grazing impact (<200 pm fraction) on phytoplankton along a salinity gradient in the Estuary of Mundaka (Bay of Biscay, Spain) was analyzed dunng summer (August 1990) using a serial dilution method.Both microzooplankton grazing rate and phytoplankton growth rate were high (mean g = 0.75 d-l, mean k = 1.90 d-' respectively), and well correlated, denoting an optimization in the efficiency of energy transport through the pelagic food web.Microzooplankton herbivory represented a mean loss of 38% of initial standing stock of chlorophyll and 46% of potential phytoplankton primary production in the inner zone of the estuary, where changes in phytoplankton biomass were mainly a function of initial hiomass.In the intermediate and outer zones, microzooplankton grazed around 54 % of initial standing stock of chlorophyll and more than 60% of potential phytoplankton primary produchon.In these zones, changes in phytoplankton biomass were mainly a function of phytoplankton growth.In spite of the importance of microzooplankton grazing, this factor alone cannot be responsible for the observed phytoplankton distribution along the salinity gradient.
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Franco et al. (1998) studied this question.
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