Organic matter sources and flows in tundra wetland food webs

Author:

Plesh Steven P.ORCID,Lovvorn James R.,Miller Micah W. C.ORCID

Abstract

Arctic lowland tundra is often dominated by wetlands. As numbers and types of these wetlands change with climate warming, their invertebrate biomass and assemblages may also be affected. Increased influx of nutrients and dissolved organic matter (DOM) from thawing peat may alter the relative availability of organic matter (OM) sources, differentially affecting taxa with disparate dependence on those sources. In five shallow wetland types (<40 to 110 cm deep) and in littoral zones of deeper lakes (>150 cm), we used stable isotopes (δ13C, δ15N) to compare contributions of four OM sources (periphytic microalgae, cyanobacteria, macrophytes, peat) to the diets of nine macroinvertebrate taxa. Living macrophytes were not distinguishable isotopically from peat that likely contributed most DOM. Within invertebrate taxa, relative OM contributions were similar among all wetland types except deeper lakes. Physidae snails consumed substantial amounts of OM from cyanobacteria. However, for all other taxa examined, microalgae were the dominant or a major OM source (39–82%, mean 59%) in all wetland types except deeper lakes (20‒62%, mean 31%). Macrophytes and macrophyte-derived peat, likely consumed mostly indirectly as DOM-supported bacteria, ranged from 18‒61% (mean 41%) of ultimate OM sources in all wetland types except deeper lakes (38–80%, mean 69%). Invertebrate consumption of microalgal C may often have involved bacterial intermediates, or a mix of algae with bacteria consuming peat-derived OM. High production of periphyton with very low δ13C values were favored by continuous daylight illuminating shallow depths, high N and P levels, and high CO2concentrations from bacterial respiration of peat-derived DOM. Although relative OM sources were similar across wetland types except deeper lakes, total invertebrate biomass was much higher in shallow wetlands with emergent vegetation. Impacts of warming on the availability of invertebrate prey to waterbirds will likely depend not on shifts in OM sources, but more on changes in overall number or area of shallow emergent wetlands.

Funder

National Science Foundation, Office of Polar Programs

U.S. Fish and Wildlife Service

Southern Illinois University

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference127 articles.

1. Bergman RD, Howard RL, Abraham KF, Weller MW. Water birds and their wetland resources in relation to oil development at Storkersen Point, Alaska. Resource Publication 129. US Fish and Wildlife Service. 1977; 38 pp.

2. Bird orientation at high latitudes: flight routes between Siberia and North America across the Arctic Ocean;T Alerstam;Proceedings of the Royal Society of London B,1999

3. Importance of the National Petroleum Reserve–Alaska for aquatic birds;J Bart;Conservation Biology,2013

4. Multi-decadal trends in spring arrival of avian migrants to the central Arctic coast of Alaska: effects of environmental and ecological factors;DH Ward;Journal of Avian Biology,2016

5. Crossing the final ecological threshold in high Arctic ponds;JP Smol;Proceedings of the National Academy of Sciences of the United States,2007

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