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Periphyton and Sediment Bioassessment in North Florida Bay
Authors:Michael A Lewis  David E Weber  Larry R Goodman  Roman S Stanley  W George Craven  James M Patrick  Robert L Quarles  Thomas H Roush  John M Macauley
Institution:(1) National Health and Environmental Research Laboratory, Gulf Ecology Division, U.S. Environmental Protection Agency, Gulf Breeze, FL, U.S.A.;(2) National Health and Environmental Research Laboratory, Gulf Ecology Division, U.S. Environmental Protection Agency, Gulf Breeze, FL, U.S.A.
Abstract:Periphyton colonization and sediment bioassessment were used ina survey to compare the relative environmental condition ofsampling sites located in Florida Bay and four peripheral sloughareas during the summer of 1995. Periphyton biomass, pigmentcontent, tissue quality and community composition weredetermined. In addition, benthic community composition and thetoxicities of whole sediments and associated pore waters weredetermined for two species of rooted macrophytes, an epibenthicinvertebrate and bioluminescent bacteria. Several locational differences were observed for the response parameters.Periphyton biomass was significantly greater in the Taylor Riverand the least in Shell Creek (P < 0.05). Most sediments were notacutely toxic to mysid shrimp nor phytotoxic. However, sedimentsfrom the Taylor River were more phytostimulatory than others (P< 0.05). Contaminant bioresidues were similar at most sites,however, mercury, chromium and nickel concentrations weregreater for periphyton colonized in the Taylor River and TroutCreek areas. Structural characteristics of the periphytic algalcommunity usually were statistically similar but a consistenttrend of lower density and diversity was evident for ShellCreek. The benthic community was the least diverse and dense inthe Canal C-111. The results of this study provide an initialindication of differences in the role of several slough areas aspossible sources of bioavailable contaminants to Florida Baywhich warrants additional investigation.
Keywords:benthos  bioresidues  Florida Bay  periphyton  sediment toxicity
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