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Exploited species impacts on trophic linkages along reef seagrass interfaces in the Florida Keys

  • John F. Valentine
  • , Kenneth L. Heck
  • , Derrick Blackmon
  • , Margene E. Goecker
  • , Juliet Christian
  • , Ryan M. Kroutil
  • , Bradley J. Peterson
  • , Mathew A. Vanderklift
  • , Kevin D. Kirsch
  • , Mike Beck
  • University of South Alabama
  • Coast and Marine Branch
  • Ecological Associates, Inc.
  • University of Florida
  • CSIRO
  • Edith Cowan University
  • NOAA Office of Response and Restoration
  • University of California at Santa Cruz

Research output: Contribution to journalArticlepeer-review

46 Scopus citations

Abstract

The removal of fish biomass by extensive commercial and recreational fishing has been hypothesized to drastically alter the strength of trophic linkages among adjacent habitats. We evaluated the effects of removing predatory fishes on trophic transfers between coral reefs and adjacent seagrass meadows by comparing fish community structure, grazing intensity, and invertebrate predation potential in predator-rich no-take sites and nearby predator-poor fished sites in the Florida Keys (USA). Exploited fishes were more abundant at the no-take sites than at the fished sites. Most of the exploited fishes were either omnivores or invertivores. More piscivores were recorded at no-take sites, but most (-95%) were moderately fished and unexploited species (barracuda and bar jacks, respectively). Impacts of these consumers on lower trophic levels were modest. Herbivorous and smaller prey fish (<10 cm total length) densities and seagrass grazing diminished with distance from reefs and were not negatively impacted by the elevated densities of exploited fishes at no-take sites. Prédation by reef fishes on most tethered invertebrates was high, but exploited species impacts varied with prey type. The results of the study show that, even though abundances of reef-associated fishes have been reduced at fished sites, there is little evidence that this has produced cascading trophic effects or interrupted cross-habitat energy exchanges between coral reefs and seagrasses.

Original languageEnglish
Pages (from-to)1501-1515
Number of pages15
JournalEcological Applications
Volume18
Issue number6
DOIs
StatePublished - Sep 2008

Keywords

  • Coral reefs
  • Exploited species
  • Food web interactions
  • Seagrass herbivory
  • Trophic cascade
  • Trophic transfer

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