Related Experiment Video
Updated: Apr 18, 2026

Protocol for Acute and Chronic Ecotoxicity Testing of the Turquoise Killifish Nothobranchius furzeri
Published on: April 24, 2018
A freshwater predator hit twice by the effects of warming across trophic levels
11] Department of Ecology, Swedish University of Agricultural Sciences, Box 7044, SE-75007 Uppsala, Sweden [2] Ecological Modelling Group, Systems Biology Research Centre, Skövde University, Box 408, SE-54128 Skövde, Sweden.
Abstract:
Many ecological responses to climate change have been documented. However, due to indirect effects, some responses can be complex and difficult to predict. For example, our understanding of effects on consumers involving responses on several trophic levels is limited. Here, combining the knowledge of trophic interactions in the EU's fourth largest lake with long-term climate and catch data, we analyse potential drivers of change in this system's apex predator. We show that warm winters correlate with later poor catches of great Arctic charr (Salvelinus umbla), and that in recent years predator-prey cycles involving this species have disappeared. The likely mechanisms are trophic mismatches directly and indirectly affecting two stages of charr, the fry and the juveniles, respectively. Our study illustrates how a long-lived consumer may be subjected to double jeopardy from the effects of warming across trophic levels, and that a food web approach can aid in disentangling the chain of mechanisms responsible.
Related Concept Videos
Derivatives: Problem Solving
Freshwater Microbial Ecology
Trophic Levels
Osmoregulation in Fishes
Trophic Efficiency
Predator-Prey Interactions

