Composition of Stream Dissolved Organic Matter Across Canadian Forested Ecozones Varies in Three Dimensions Linked to Landscape and Climate

Author:

Orlova Julia1ORCID,Amiri Fariba2ORCID,Bourgeois Alyssa K.34ORCID,Buttle Jim M.5ORCID,Cherlet Erin1ORCID,Cuss Chad W.16ORCID,Devito Kevin J.3ORCID,Emelko Monica B.2ORCID,Floyd William C.47ORCID,Foster David E.8ORCID,Hutchins Ryan H. S.9ORCID,Jamieson Rob8ORCID,Johnson Mark S.10ORCID,McSorley Hannah J.410ORCID,Silins Uldis1ORCID,Tank Suzanne E.3ORCID,Thompson Lauren M.1ORCID,Webster Kara L.11ORCID,Williams Chris H. S.12ORCID,Olefeldt David1ORCID

Affiliation:

1. Department of Renewable Resources University of Alberta Edmonton AB Canada

2. Department of Civil & Environmental Engineering University of Waterloo Waterloo ON Canada

3. Department of Biological Sciences University of Alberta Edmonton AB Canada

4. Coastal Hydrology Research Lab Vancouver Island University Nanaimo BC Canada

5. School of the Environment Trent University Peterborough ON Canada

6. School of Science and the Environment Grenfell Campus Memorial University of Newfoundland Corner Brook NL Canada

7. Ministry of Forests Government of British Columbia Nanaimo BC Canada

8. Department of Civil and Resource Engineering Dalhousie University Halifax NS Canada

9. Department of Earth and Environmental Sciences University of Waterloo Waterloo ON Canada

10. Institute for Resources, Environment, and Sustainability University of British Columbia Vancouver BC Canada

11. Natural Resources Canada Sault Ste. Marie ON Canada

12. Ministry of Water, Land and Resource Stewardship Government of British Columbia Penticton BC Canada

Abstract

AbstractDissolved organic matter (DOM) is a key variable influencing aquatic ecosystem processes. The concentration and composition of DOM in streams depend on both the delivery of DOM from terrestrial sources and on aquatic DOM production and degradation. However, there is limited understanding of the variability of stream DOM composition at continental scales and the influence of landscape characteristics and disturbances on DOM across different regions. We assessed DOM composition in 52 streams at seven research sites across six forested ecozones in Canada in 2019–2022 using 26 indices derived from five analytical approaches: absorbance and fluorescence spectroscopy, liquid chromatography—organic carbon detection, Fourier‐transform ion cyclotron resonance mass spectrometry, and asymmetric flow field‐flow fractionation. Combined analyses showed clear clustering and redundancy across analytical techniques, and indicated that compositional variations were primarily related to three axes of DOM composition: (a) aromaticity, which was greater in low‐relief, wetland‐dominated catchments, (b) oxygenation, which was greater in colder and drier ecozones, and (c) biopolymer content, which was greater in lake‐influenced catchments. Variability in DOM composition among research sites was greater than variability of streams within a site and variability over time within a stream. Forest harvesting and wildfire disturbances had no common influence on DOM composition across research sites, emphasizing the need for regional studies. Our study provides a broad understanding of the variability of stream DOM composition and its associations with landscape and catchment characteristics at a subcontinental scale, and provides key insights for the choice and interpretation of DOM indices from various analytical approaches.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

American Geophysical Union (AGU)

Reference175 articles.

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