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Journal Article

Temporal and spatial trends in marine carbon isotopes in the Arctic Ocean and implications for food web studies

Camille de la Vega; Rachel M. Jeffreys; Robyn Tuerena; Raja Ganeshram; Claire Mahaffey
Global Change Biology · Vol. 25, Issue 12 · pp. 4116-4130 · 2019

Abstract

The Arctic is undergoing unprecedented environmental change. Rapid warming, decline in sea ice extent, increase in riverine input, ocean acidification and changes in primary productivity are creating a crucible for multiple concurrent environmental stressors, with unknown consequences for the entire arctic ecosystem. Here, we synthesized 30 years of data on the stable carbon isotope (δ 13 C) signatures in dissolved inorganic carbon (δ 13 C‐DIC; 1977–2014), marine and riverine particulate organic carbon (δ 13 C‐POC; 1986–2013) and tissues of marine mammals in the Arctic. δ 13 C values in consumers can change as a result of environmentally driven variation in the δ 13 C values at the base of the food web or alteration in the trophic structure, thus providing a method to assess the sensitivity of food webs to environmental change. Our synthesis reveals a spatially heterogeneous and temporally evolving δ 13 C baseline, with spatial gradients in the δ 13 C‐POC values between arctic shelves and arctic basins likely driven by differences in productivity and riverine and coastal influence. We report a decline in δ 13 C‐DIC values (−0.011‰ per year) in the Arctic, reflecting increasing anthropogenic carbon dioxide (CO 2 ) in the Arctic Ocean (i.e. Suess effect), which is larger than predicted. The larger decline in δ 13 C‐POC values and δ 13 C in arctic marine mammals reflects the anthropogenic CO 2 signal as well as the influence of a changing arctic environment. Combining the influence of changing sea ice conditions and isotopic fractionation by phytoplankton, we explain the decadal decline in δ 13 C‐POC values in the Arctic Ocean and partially explain the δ 13 C values in marine mammals with consideration of time‐varying integration of δ 13 C values. The response of the arctic ecosystem to ongoing environmental change is stronger than we would predict theoretically, which has tremendous implications for the study of food webs in the rapidly changing Arctic Ocean.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2019-12-01
Publication Year2019
Volume25
Issue12
Pages4116-4130
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.14832
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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