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Ocean community warming responses explained by thermal affinities and temperature gradients

Authors :
Malin L. Pinsky
Jorge García Molinos
David S. Schoeman
Graham J. Edgar
Jan G. Hiddink
Ryan D. Batt
Rick D. Stuart-Smith
Michael T. Burrows
Elvira S. Poloczanska
Benjamin S. Halpern
Mark J. Costello
Martin Edwards
Benjamin Luke Payne
Clive Fox
Amanda E. Bates
Source :
Nature Climate Change. 9:959-963
Publication Year :
2019
Publisher :
Springer Science and Business Media LLC, 2019.

Abstract

As ocean temperatures rise, species distributions are tracking towards historically cooler regions in line with their thermal affinity. However, different responses of species to warming and changed species interactions make predicting biodiversity redistribution and relative abundance a challenge. Here, we use three decades of fish and plankton survey data to assess how warming changes the relative dominance of warm-affinity and cold-affinity species. Regions with stable temperatures (for example, the Northeast Pacific and Gulf of Mexico) show little change in dominance structure, while areas with warming (for example, the North Atlantic) see strong shifts towards warm-water species dominance. Importantly, communities whose species pools had diverse thermal affinities and a narrower range of thermal tolerance showed greater sensitivity, as anticipated from simulations. The composition of fish communities changed less than expected in regions with strong temperature depth gradients. There, species track temperatures by moving deeper, rather than horizontally, analogous to elevation shifts in land plants. Temperature thus emerges as a fundamental driver for change in marine systems, with predictable restructuring of communities in the most rapidly warming areas using metrics based on species thermal affinities. The ready and predictable dominance shifts suggest a strong prognosis of resilience to climate change for these communities.

Details

ISSN :
17586798 and 1758678X
Volume :
9
Database :
OpenAIRE
Journal :
Nature Climate Change
Accession number :
edsair.doi...........6c09ef85c1bdce3e96d4e2f44cae13b0
Full Text :
https://doi.org/10.1038/s41558-019-0631-5