Skip to main navigation Skip to search Skip to main content

Dissolved organic carbon enhances terrestrial carbon pathways with limited effects on freshwater fish trophic position

  • Cristina Charette
  • , Matilda Andersson
  • , Mehdi M. Aqdam
  • , Fernando Chaguaceda
  • , Peter Eklov
  • , Vincent Fugere
  • , John M. Gunn
  • , Thomas A. Johnston
  • , Allison M. Roth
  • , Kristin Scharnweber
  • , Christopher T. Solomon
  • , Heidi Swanson
  • , Andrew J. Tanentzap
  • , Renee M. van Dorst
  • , Alison M. Derry

Publication: Contribution to journalJournal articlepeer-review

Abstract

Freshwater ecosystems are affected by fluctuations in terrestrially derived dissolved organic carbon (DOC). Increased DOC runoff from watersheds can contribute to the "browning" of freshwater systems, altering water properties and disrupting food web dynamics, with potential impacts on fish. This study examined how carbon sources and the trophic ecology of temperate freshwater fishes varied with DOC concentrations. We used stable isotope ratios of carbon (delta 13C) and nitrogen (delta 15N) to trace carbon sources in organisms at low trophic levels and to assess the trophic ecology of six fish species from 70 lakes in Sweden, Germany, Canada, and the United States. We found that both pelagic and benthic delta 13C decreased as DOC increased, suggesting higher reliance on terrestrial carbon by lower trophic level organisms. Fish responses to elevated DOC were limited to certain species. Mid-trophic level European perch (Perca fluviatilis) increased pelagic diet proportions, while top predators like northern pike (Esox Lucius) and walleye (Sander vitreus) showed nonlinear shifts. Except for walleye, no effect of DOC was detected on fish trophic position. Our findings suggest that DOC alters energy use and diet but not trophic position in some freshwater fish.
Original languageEnglish
Article number0343
Pages (from-to)1-15
Number of pages15
JournalCanadian Journal of Fisheries and Aquatic Sciences
Volume82
DOIs
Publication statusPublished - 2025

Bibliographical note

Publisher Copyright:
© 2025 Authors Charette, Andersson, Aqdam, Chaguaceda, Eklov, Fugère, Gunn, Roth, Scharnweber, Solomon, Swanson, Tanentzap, van Dorst, and Derry; and The Crown.

Keywords

  • browning
  • fish
  • food web dynamics
  • freshwater ecosystems
  • interspecific variation
  • stable isotope analysis

Cite this