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Environmental Origins of Methylmercury Accumulated in Subarctic Estuarine Fish Indicated by Mercury Stable Isotopes

2016/10/02 by Miling Li, Amina T. Schartup, Amelia P. Valberg +5 · 2 citations
Environmental Science · #Mercury impact and mitigation studies #Marine animal studies overview #Isotope Analysis in Ecology

paper · doi:10.1021/acs.est.6b03206

openalex publication_date 2016/10/02 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01

Abstract

Methylmercury (MeHg) exposure can cause adverse reproductive and neurodevelopmental health effects. Estuarine fish may be exposed to MeHg produced in rivers and their watersheds, benthic sediment, and the marine water column, but the relative importance of each source is poorly understood. We measured stable isotopes of mercury (δ 202 Hg, Δ 199 Hg, and Δ 201 Hg), carbon (δ 13 C), and nitrogen (δ 15 N) in fish with contrasting habitats from a large subarctic coastal ecosystem to better understand MeHg exposure sources. We identify two distinct food chains exposed to predominantly freshwater and marine MeHg sources but do not find evidence for a benthic marine MeHg signature. This is consistent with our previous research showing benthic sediment is a net sink for MeHg in the estuary. Marine fish display lower and less variable Δ 199 Hg values (0.78‰ to 1.77‰) than freshwater fish (0.72‰ to 3.14‰) and higher δ 202 Hg values (marine: 0.1‰ to 0.57‰; freshwater: −0.76‰ to 0.15‰). We observe a shift in the Hg isotopic composition of juvenile and adult rainbow smelt ( Osmerus mordax ) when they transition between the freshwater and marine environment as their dominant foraging territory. The Hg isotopic composition of Atlantic salmon ( Salmo salar ) indicates they receive most of their MeHg from the marine environment despite a similar or longer duration spent in freshwater regions. We conclude that stable Hg isotopes effectively track fish MeHg exposure sources across different ontogenic stages.

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