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Response of seagrass epiphyte loading to field manipulations of fertilization, gastropod grazing and leaf turnover rates
Authors:Bradley J Peterson  Thomas A Frankovich
Institution:a Marine Sciences Research Center, Stony Brook University, 239 Montauk Hwy, Southampton, NY 11968, United States
b Department of Biological Sciences, Florida International University, University Park, Miami, FL 33199, United States
c Department of Environmental Sciences, University of Virginia, 291 McCormick Road, P. O. Box 400123, Charlottesville, VA 22904, United States
Abstract:This study evaluates the bottom-up and top-down controls on epiphyte loads under low nutrient additions. Nutrients and gastropod grazers were manipulated in a field experiment conducted within a Thalassia testudinum meadow in Florida Bay, FL, USA. The effect of seagrass leaf turnover rate on epiphyte loading was also evaluated using novel seagrass short-shoot mimics that “grow,” allowing for the manipulation of leaf turnover rates. During the summer growing season and over the course of one seagrass leaf turnover period, low-level water column nutrient additions increased total epiphyte load, epiphyte chlorophyll a, and epiphyte autotrophic index. T. testudinum leaf nutrients (N and P) and leaf productivity also increased. Epiphyte loading and T. testudinum shoot biomass and productivity did not respond to a 60% mean increase in gastropod abundance. Manipulations of seagrass leaf turnover rates at minimum wintertime and maximum summertime rates resulted in a 20% difference in epiphyte loading. Despite elevated grazer abundances and increased leaf turnover rates, epiphyte loads increased with nutrient addition. These results emphasize the sensitivity of T. testudinum and associated epiphytes to low-level nutrient addition in a nutrient-limited environment such as Florida Bay.
Keywords:Epiphytes  Florida Bay  Grazers  Leaf turnover rates  Nutrients  Thalassia testudinum
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