Version V1

Data and code to next-generation ensemble projections reveal higher climate risks for marine ecosystems

Tittensor, Derek P.;Novaglio, Camilla;Harrison, Cheryl S.;Heneghan, Ryan F.;Barrier, Nicolas;Bianchi, Daniele;Bopp, Laurent;Bryndum-Buchholz, Andrea;Britten, Gregory L.;Büchner, Matthias;Cheung, William W. L.;Christensen, Villy;Coll, Marta;Dunne, John P.;Eddy, Tyler D.;Everett, Jason D.;Fernandes-Salvador, Jose A.;Fulton, Elizabeth A.;Galbraith, Eric D.;Gascuel, Didier;Guiet, Jerome;John, Jasmin G.;Link, Jason S.;Lotze, Heike K.;Maury, Olivier;Ortega-Cisneros, Kelly;Palacios-Abrantes, Juliano;Petrik, Colleen M.;Du Pontavice, Hubert;Rault, Jonathan;Richardson, Anthony J.;Shannon, Lynne;Shin, Yunne-Jai;Steenbeek, Jeroen;Stock, Charles A.;Blanchard, Julia L.

Description

Data products: Tittensor et al. (2021). Next-generation ensemble projections reveal higher climate risks for marine ecosystems, Nature Climate Change. DOI: https://doi.org/10.1038/s41558-021-01173-9 This data was produced using R scripts available on the GitHub repository https://github.com/Fish-MIP/CMIP5vsCMIP6, and was used for analysis and plotting in Tittensor et al. (2021). These R scripts are also available here as CMIP5vsCMIP6_code.zip Data_CMIP5.Rdata and Data_CMIP6.RData include all data used to produce global maps of percentage change in total consumer biomass. Data_trends_CMIP5.Rdata and Data_trends_CMIP6.RData include all data used to produce temporal trends of percentage change in total consumer biomass. Data_inputs_CMIP5.Rdata and Data_trends_CMIP6.RData include all data used to produce global maps of percentage change in phytoplankton biomass, zooplankton biomass, net primary production and sea surface temperature. Data_trends_inputs_CMIP5.Rdata and Data_trends_CMIP6.RData include all data used to produce temporal trends of percentage change in phytoplankton biomass, zooplankton biomass, net primary production and sea surface temperature. The suffix _reducedModelSet refers to the case when only the subset of Fish-MIP models in Lotze et al. (2019) - Global ensemble projections reveal trophic amplification of ocean biomass declines with climate change, PNAS, DOI: https://doi.org/10.1073/pnas.1900194116 - are considered. This data was used to produce some of the supplementary figures in Tittensor et al. (2021). Please contact Derek Tittensor ([email protected]), Camilla Novaglio ([email protected]), or Julia Blanchard ([email protected]) for data interpretation and use.

Citations (0)

Mentions (0)

Metrics

Dataset Index

0.5

FAIR Score

56%

Citations

0

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Zenodo

License

Creative Commons Attribution 4.0 International

Open Access

Assigned Domain

Subfield

Global and Planetary Change

Field

Environmental Science

Domain

Physical Sciences

Confidence Score

65%

Source

Open Alex

Keywords

FishMIPMarine ecosystem modelsOcean climate impacts

Normalization Factors

FT

40.38

CTw

1.00

MTw

1.00