Skip to main content
U.S. flag

An official website of the United States government

Enhanced susceptibility of methylmercury bioaccumulation into seston of the Laurentian Great Lakes

August 30, 2021

Mercury concentrations in the Laurentian Great Lakes waters are among the lowest reported in the literature, while game fish concentrations approach consumption advisory limits, particularly in Lakes Superior, Huron, and Michigan, indicating efficient methylmercury transfer from water to game fish. To determine if increased transfer efficiency is evident within the lower food web, we measured (2010–2018) mercury and dissolved organic carbon (DOC) in water, and in size-sieved seston, dietary tracers (carbon and nitrogen isotope ratios), phytoplankton methylmercury bioaccumulation, and methylmercury biomagnification between increasing seston size fractions. We observed consistently low filter-passing methylmercury (<0.010 ng L–1) and comparatively variable DOC (1.1 to 3.4 mg L–1) concentrations. Methylmercury biomagnification factors between size-sieved seston were similar between lakes. Bioaccumulation factors in phytoplankton were among the highest in the literature (log 5.5 to 6.1), exceeding those in oceans, smaller lakes, and streams, and was influenced by DOC. Higher bioaccumulation rates increase the susceptibility of methylmercury accumulation into the food web. Because mercury is dominantly delivered to the Great Lakes through the atmosphere and the biota therein is highly susceptible to methylmercury uptake, we propose that the Laurentian Great Lakes are excellent sentinels to trace the success of efforts to decrease global mercury emissions (e.g., Minamata Treaty) in the future.

Publication Year 2021
Title Enhanced susceptibility of methylmercury bioaccumulation into seston of the Laurentian Great Lakes
DOI 10.1021/acs.est.1c02319
Authors Jacob M. Ogorek, Ryan F. Lepak, Joel C Hoffman, John F. DeWild, Tylor Rosera, Michael Tate, James P Hurley, David Krabbenhoft
Publication Type Article
Publication Subtype Journal Article
Series Title Environmental Science and Technology
Index ID 70279331
Record Source USGS Publications Warehouse
USGS Organization Upper Midwest Water Science Center
Was this page helpful?