Downstream Modification of Mercury in Diverse River Systems Underscores the Role of Local Conditions in Fish Bioaccumulation

Author:

Emmerton Craig A.,Drevnick Paul E.,Serbu Jessica A.,Cooke Colin A.,Graydon Jennifer A.,Reichert Megan,Evans Marlene S.,McMaster Mark E.

Abstract

AbstractFish consumption advisories for mercury (Hg) are common in rivers, highlighting connections between landscape sources of Hg and downstream fluvial ecosystems. Though watershed conditions can influence concentrations of Hg in smaller streams, how Hg changes downstream through larger rivers and how these changes associate with Hg concentrations in fish is not well understood. Here we present a continuum of concentrations and yields of total mercury (THg) and methylmercury (MeHg) from small tributary systems draining diverse western Canadian headwater landscapes through to major transboundary rivers. We associate these downstream patterns with THg concentrations in tissues of resident fish in major rivers. Mean concentrations and yields of unfiltered THg from over 80 monitored tributaries and major rivers were highly variable in space ranging from 0.28 to 120 ng L−1 and 0.39 to 170 µg ha−1 d−1, respectively. Using spatial data and a hierarchical cluster analysis, we identified three broad categories of tributary catchment conditions. Linear mixed modeling analysis with water quality variables revealed significantly lower THg concentrations in tributaries draining cordillera-foothills (geometric mean: 0.76 ng L−1) regions relative to those draining forested (1.5 ng L−1) and agriculturalized landscapes (2.4 ng L−1), suggesting that sources and mobility of THg in soils and surface waters were different between landscapes. However, these concentration differences were not sustained downstream in major rivers as local sources and sinks of THg in river channels smoothed differences between landscape types. Extensive fish tissue monitoring in major rivers and ANCOVA analysis found that site-specific, river water THg and MeHg concentrations and local catchment conditions were stronger associates of THg concentrations in fish than broader trends in rivers within and across landscape classes. Consequently, site-specific, targeted monitoring of THg and MeHg concentrations in water and fish is a preferred study design when assessing regional-level patterns in fish tissue concentrations.

Funder

Oil Sands Monitoring Program

Environment Canada

Government of Alberta

Publisher

Springer Science and Business Media LLC

Subject

Ecology,Environmental Chemistry,Ecology, Evolution, Behavior and Systematics

Reference92 articles.

1. ABMI. 2019. Wall-to-Wall Human Footprint Inventory 2017. Edmonton, Alberta https://abmi.ca/home/data-analytics/da-top/da-product-overview/Human-Footprint-Products/HF-inventory.html

2. ABMI. 2021. Wall-to_Wall Climate variables 1961–1990. https://abmi.ca/home/data-analytics/da-top/da-product-overview/Other-Geospatial-Land-Surface-Data/Climate-Variables.html

3. Agriculture and Agri-Food Canada. 2015. Land Use 2010. https://www.agr.gc.ca/atlas/landu

4. Alexander RB, Boyer EW, Smith RA, Schwarz GE, Moore RB. 2007. The role of headwater streams in downstream water quality 1. JAWRA J Amer Water Resour Assoc 43(1):41–59.

5. Babiarz C, Hoffmann S, Wieben A, Hurley J, Andren A, Shafer M, Armstrong D. 2012. Watershed and discharge influences on the phase distribution and tributary loading of total mercury and methylmercury into Lake Superior. Environ Pollut 161:299–310. https://doi.org/10.1016/j.envpol.2011.09.026.

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