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Trophic transfer efficiency in the Lake Superior food web: assessing the impacts of non-native species.
Matthias, B G; Hrabik, T R; Hoffman, J C; Gorman, O T; Seider, M J; Sierszen, M E; Vinson, M R; Yule, D L; Yurista, P M.
Afiliação
  • Matthias BG; Biology Department, University of Minnesota Duluth, 1035 Kirby Drive, 207 Swenson Science Building, Duluth, MN 55812, USA.
  • Hrabik TR; Biology Department, University of Minnesota Duluth, 1035 Kirby Drive, 207 Swenson Science Building, Duluth, MN 55812, USA.
  • Hoffman JC; US Environmental Protection Agency, Office of Research and Development, Center for Computational Toxicology and Exposure, Great Lakes Toxicology and Ecology Division, 6201 Congdon Boulevard, Duluth, MN 55804, USA.
  • Gorman OT; US Geological Survey, Great Lakes Science Center, Lake Superior Biological Station, 2800 Lake Shore Dr. East, Ashland, WI 54806, USA.
  • Seider MJ; US Fish and Wildlife Service, Ashland Fish and Wildlife Office, 2800 Lake Shore Dr. East, Ashland, WI 54806, USA.
  • Sierszen ME; US Environmental Protection Agency, Office of Research and Development, Center for Computational Toxicology and Exposure, Great Lakes Toxicology and Ecology Division, 6201 Congdon Boulevard, Duluth, MN 55804, USA.
  • Vinson MR; US Geological Survey, Great Lakes Science Center, Lake Superior Biological Station, 2800 Lake Shore Dr. East, Ashland, WI 54806, USA.
  • Yule DL; US Geological Survey, Great Lakes Science Center, Lake Superior Biological Station, 2800 Lake Shore Dr. East, Ashland, WI 54806, USA.
  • Yurista PM; US Environmental Protection Agency, Office of Research and Development, Center for Computational Toxicology and Exposure, Great Lakes Toxicology and Ecology Division, 6201 Congdon Boulevard, Duluth, MN 55804, USA.
J Great Lakes Res ; 47(4): 1146-1158, 2021 Apr 13.
Article em En | MEDLINE | ID: mdl-35520458
ABSTRACT
Ecosystem-based management relies on understanding how perturbations influence ecosystem structure and function (e.g., invasive species, exploitation, abiotic changes). However, data on unimpacted systems are scarce, therefore, we often rely on impacted systems to make inferences about 'natural states.' Among the Laurentian Great Lakes, Lake Superior provides a unique case study to address non-native species impacts because the food web is dominated by native species. Additionally, Lake Superior is both vertically (benthic versus pelagic) and horizontally (nearshore versus offshore) structured by depth, providing an opportunity to compare the function of these sub-food webs. We developed an updated Lake Superior EcoPath model using data from the 2005/2006 lake-wide multi-agency surveys covering multiple trophic levels. We then compared trophic transfer efficiency (TTE) to previously published EcoPath models. Finally, we compared ecosystem function of the 2005/2006 ecosystem to that with non-native linkages removed and compared native versus non-native species-specific approximations of TTE and trophic flow. Lake Superior was relatively efficient (TTE = 0.14) compared to systems reported in a global review (average TTE = 0.09) and the microbial loop was highly efficient (TTE > 0.20). Non-native species represented a very small proportion (<0.01%) of total biomass and were generally more efficient and had higher trophic flow compared to native species. Our results provide valuable insight into the importance of the microbial loop and represent a baseline estimate of non-native species impacts on Lake Superior. Finally, this work is a starting point for further model development to predict future changes in the Lake Superior ecosystem.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies / Qualitative_research Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies / Qualitative_research Idioma: En Ano de publicação: 2021 Tipo de documento: Article