Climate-Driven Deoxygenation of Lakes Alters the Nutrient-Toxin Profile of a Food Fish
Stephen F Jane1,2, Sebastian A Heilpern2,3, J Thomas Brenna4
1Cornell Atkinson Center for Sustainability, Cornell University, Ithaca, New York 14853, United States.
Abstract:
Climate change is rapidly altering fisheries supporting aquatic ecosystems. The implications for food security depend not only on harvest biomass but also concentrations of nutrients and toxins in fish. Using brook trout from Adirondack lakes (New York, USA), we tested whether ongoing lake deoxygenation trends will affect fish muscle omega-3 fatty acids, selenium, and mercury concentrations. Across space (16 lakes: 1 year) and time (6 years: 1 lake), anoxia decreased selenium and was associated with elevated fish mercury, with no effect on omega-3 content. Because selenium may mitigate some end points of mercury toxicity, highly variable Se:Hg molar ratios (0.70-35.79) in neighboring lakes may have health risk implications. For fish consumers, ongoing lake deoxygenation under climate change could potentially reduce selenium intake while enhancing mercury exposure. Simultaneous alteration of beneficial compounds and toxins by environmental change complicates the development of fish consumption advisories to safeguard public health in a warming world.
Related Concept Videos
Osmoregulation in Fishes
Bioremediation
Primary Production
What are Biogeochemical Cycles?
The Phosphorus Cycle
Types of Toxins
Air pollutants, primarily gases, pose significant threats to respiratory health, leading to conditions like hypoxia, lung cancer, and in extreme cases, death.
Environmental pollutants like...


