Marine regime shifts in ocean biogeochemical models: a case study in the
Gulf of Alaska
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Published:2016-08-12
Issue:15
Volume:13
Page:4533-4553
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ISSN:1726-4189
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Container-title:Biogeosciences
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language:en
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Short-container-title:Biogeosciences
Author:
Beaulieu Claudie, Cole Harriet, Henson Stephanie, Yool AndrewORCID, Anderson Thomas R., de Mora LeeORCID, Buitenhuis Erik T.ORCID, Butenschön MommeORCID, Totterdell Ian J., Allen J. Icarus
Abstract
Abstract. Regime shifts have been reported in many marine ecosystems, and are often expressed as an abrupt change occurring in multiple physical and biological components of the system. In the Gulf of Alaska, a regime shift in the late 1970s was observed, indicated by an abrupt increase in sea surface temperature and major shifts in the catch of many fish species. A thorough understanding of the extent and mechanisms leading to such regime shifts is challenged by data paucity in time and space. We investigate the ability of a suite of ocean biogeochemistry models of varying complexity to simulate regime shifts in the Gulf of Alaska by examining the presence of abrupt changes in time series of physical variables (sea surface temperature and mixed-layer depth), nutrients and biological variables (chlorophyll, primary productivity and plankton biomass) using change-point analysis. Our results show that some ocean biogeochemical models are capable of simulating the late 1970s shift, manifested as an abrupt increase in sea surface temperature followed by an abrupt decrease in nutrients and biological productivity. Models from low to intermediate complexity simulate an abrupt transition in the late 1970s (i.e. a significant shift from one year to the next) while the transition is smoother in higher complexity models. Our study demonstrates that ocean biogeochemical models can successfully simulate regime shifts in the Gulf of Alaska region. These models can therefore be considered useful tools to enhance our understanding of how changes in physical conditions are propagated from lower to upper trophic levels.
Funder
Natural Environment Research Council
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference74 articles.
1. Alexander, M., Capotondi, A., Miller, A., Chai, F., Brodeur, R., and Deser, C.: Decadal variability in the northeast Pacific in a physical-ecosystem model: Role of mixed layer depth and trophic interactions, J. Geophys. Res., 113, C02017, https://doi.org/10.1029/2007JC004359, 2008. 2. Alheit, J. P., Licandro, S., Coombs, A., Garcia, A., Giráldez, A., Garcia Santamaría, M. T., Slotte, A., and Tsikliras, A. C.: Atlantic Multidecadal Oscillation (AMO) modulates dynamics of small pelagic fishes and ecosystem regime shifts in the eastern North and Central Atlantic, J. Mar. Syst., 131, 21–35, 2014. 3. Allen, J. I., Aiken, J., Anderson, T. R., Buitenhuis, E., Cornell, S., Geider, R., Haines, K., Hirata, T., Holt, J., Le Quéré, C., Hardman-Mountford, N., Ross, O. N., Sinha, B., and While, J.: Marine ecosystem models for earth systems applications: The MarQUEST experience, J. Mar. Syst., 81, 19–33, 2010. 4. Andersen, T., Carstensen, J., Hernandez-Garcia, E., and Duarte, D. M.: Ecological thresholds and regime shifts: approaches to identification, Trends Ecol. Evol., 24, 49–57, 2009. 5. Anderson, P. J. and Piatt, J. F.: Community reorganization of the Gulf of Alaska following ocean climate regime shift, Mar. Ecol.-Prog. Ser., 189, 117–123, 1999.
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