4.5 Article

Amphibian Biomass Export from Geographically Isolated Wetlands: Temporal Variability, Species Composition, and Potential Implications for Terrestrial Ecosystems

期刊

DIVERSITY-BASEL
卷 14, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/d14030163

关键词

spatial subsidy; aquatic-terrestrial linkages; species diversity; Ranidae; Ambystomatidae; recently metamorphosed

资金

  1. U. S. Geological Survey [01CRAG0007]
  2. National Science Foundation [DEB-0239943, DEB-0239915]
  3. US Department of Homeland Security
  4. US Department of Agriculture through NSF [EF-0832858]
  5. University of Tennessee, Knoxville

向作者/读者索取更多资源

Recently metamorphosed amphibians transport substantial biomass and nutrients from wetlands to terrestrial ecosystems. There is significant variability in biomass export and export composition among ponds and years, with ranid frogs making up a substantial proportion of amphibian biomass export.
Recently metamorphosed amphibians transport substantial biomass and nutrients from wetlands to terrestrial ecosystems. Previous estimates (except 1) were limited to either a subset of the community or a single year. Our goal was to examine temporal variability in biomass export of all amphibians within breeding ponds and the composition of that export. We completely encircled ponds with drift fences to capture, count, and weigh emerging recently metamorphosed individuals in Maine (four wetlands, six years) and Missouri (eight wetlands, 2-4 years). We estimated total amphibian biomass export, export scaled by pond surface area, species diversity, and percentage of biomass from anurans. Biomass export and export composition varied greatly among ponds and years. Our estimates were of similar magnitude to previous studies. Amphibian biomass export was higher when species diversity was low and the proportion of anurans was higher. Biomass estimates tended to be highest for juvenile cohorts dominated by a single ranid species: green frogs (Missouri) or wood frogs (Maine). Ranid frogs made up a substantial proportion of amphibian biomass export, suggesting that terrestrial impacts will likely occur in the leaf litter of forests. Future studies should examine the impacts of ranid juveniles on terrestrial ecosystem dynamics.

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