Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF

Recent observations of record low winter sea-ice coverage and warming water temperatures in the eastern Bering Sea have signaled the potential impacts of climate change on this ecosystem, which have implications for commercial fisheries production. We investigate the impacts of forecasted climate ch...

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Main Authors: George A. Whitehouse, Kerim Y. Aydin, Anne B. Hollowed, Kirstin K. Holsman, Wei Cheng, Amanda Faig, Alan C. Haynie, Albert J. Hermann, Kelly A. Kearney, André E. Punt, Timothy E. Essington
Format: Dataset
Language:unknown
Published: 2021
Subjects:
Online Access:https://doi.org/10.3389/fmars.2021.624301.s001
https://figshare.com/articles/dataset/Data_Sheet_1_Bottom_Up_Impacts_of_Forecasted_Climate_Change_on_the_Eastern_Bering_Sea_Food_Web_PDF/13697995
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spelling ftfrontimediafig:oai:figshare.com:article/13697995 2023-05-15T15:43:21+02:00 Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF George A. Whitehouse Kerim Y. Aydin Anne B. Hollowed Kirstin K. Holsman Wei Cheng Amanda Faig Alan C. Haynie Albert J. Hermann Kelly A. Kearney André E. Punt Timothy E. Essington 2021-02-03T04:25:53Z https://doi.org/10.3389/fmars.2021.624301.s001 https://figshare.com/articles/dataset/Data_Sheet_1_Bottom_Up_Impacts_of_Forecasted_Climate_Change_on_the_Eastern_Bering_Sea_Food_Web_PDF/13697995 unknown doi:10.3389/fmars.2021.624301.s001 https://figshare.com/articles/dataset/Data_Sheet_1_Bottom_Up_Impacts_of_Forecasted_Climate_Change_on_the_Eastern_Bering_Sea_Food_Web_PDF/13697995 CC BY 4.0 CC-BY Oceanography Marine Biology Marine Geoscience Biological Oceanography Chemical Oceanography Physical Oceanography Marine Engineering Bering Sea climate change fisheries food web Rpath Dataset 2021 ftfrontimediafig https://doi.org/10.3389/fmars.2021.624301.s001 2021-02-03T23:57:03Z Recent observations of record low winter sea-ice coverage and warming water temperatures in the eastern Bering Sea have signaled the potential impacts of climate change on this ecosystem, which have implications for commercial fisheries production. We investigate the impacts of forecasted climate change on the eastern Bering Sea food web through the end of the century under medium- and high-emissions climate scenarios in combination with a selection of fisheries management strategies by conducting simulations using a dynamic food web model. The outputs from three global earth system models run under two greenhouse gas emission scenarios were dynamically downscaled using a regional ocean and biogeochemical model to project ecosystem dynamics at the base of the food web. Four fishing scenarios were explored: status quo, no fishing, and two scenarios that alternatively assume increased fishing emphasis on either gadids or flatfishes. Annual fishery quotas were dynamically simulated by combining harvest control rules based on model-simulated stock biomass, while incorporating social and economic tradeoffs induced by the Bering Sea’s combined groundfish harvest cap. There was little predicted difference between the status quo and no fishing scenario for most managed groundfish species biomasses at the end of the century, regardless of emission scenario. Under the status quo fishing scenario, biomass projections for most species and functional groups across trophic levels showed a slow but steady decline toward the end of the century, and most groups were near or below recent historical (1991–2017) biomass levels by 2080. The bottom–up effects of declines in biomass at lower trophic levels as forecasted by the climate-enhanced lower trophic level modeling, drove the biomass trends at higher trophic levels. By 2080, the biomass projections for species and trophic guilds showed very little difference between emission scenarios. Our method for climate-enhanced food web projections can support fisheries managers by ... Dataset Bering Sea Sea ice Frontiers: Figshare Bering Sea
institution Open Polar
collection Frontiers: Figshare
op_collection_id ftfrontimediafig
language unknown
topic Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
Bering Sea
climate change
fisheries
food web
Rpath
spellingShingle Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
Bering Sea
climate change
fisheries
food web
Rpath
George A. Whitehouse
Kerim Y. Aydin
Anne B. Hollowed
Kirstin K. Holsman
Wei Cheng
Amanda Faig
Alan C. Haynie
Albert J. Hermann
Kelly A. Kearney
André E. Punt
Timothy E. Essington
Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF
topic_facet Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
Bering Sea
climate change
fisheries
food web
Rpath
description Recent observations of record low winter sea-ice coverage and warming water temperatures in the eastern Bering Sea have signaled the potential impacts of climate change on this ecosystem, which have implications for commercial fisheries production. We investigate the impacts of forecasted climate change on the eastern Bering Sea food web through the end of the century under medium- and high-emissions climate scenarios in combination with a selection of fisheries management strategies by conducting simulations using a dynamic food web model. The outputs from three global earth system models run under two greenhouse gas emission scenarios were dynamically downscaled using a regional ocean and biogeochemical model to project ecosystem dynamics at the base of the food web. Four fishing scenarios were explored: status quo, no fishing, and two scenarios that alternatively assume increased fishing emphasis on either gadids or flatfishes. Annual fishery quotas were dynamically simulated by combining harvest control rules based on model-simulated stock biomass, while incorporating social and economic tradeoffs induced by the Bering Sea’s combined groundfish harvest cap. There was little predicted difference between the status quo and no fishing scenario for most managed groundfish species biomasses at the end of the century, regardless of emission scenario. Under the status quo fishing scenario, biomass projections for most species and functional groups across trophic levels showed a slow but steady decline toward the end of the century, and most groups were near or below recent historical (1991–2017) biomass levels by 2080. The bottom–up effects of declines in biomass at lower trophic levels as forecasted by the climate-enhanced lower trophic level modeling, drove the biomass trends at higher trophic levels. By 2080, the biomass projections for species and trophic guilds showed very little difference between emission scenarios. Our method for climate-enhanced food web projections can support fisheries managers by ...
format Dataset
author George A. Whitehouse
Kerim Y. Aydin
Anne B. Hollowed
Kirstin K. Holsman
Wei Cheng
Amanda Faig
Alan C. Haynie
Albert J. Hermann
Kelly A. Kearney
André E. Punt
Timothy E. Essington
author_facet George A. Whitehouse
Kerim Y. Aydin
Anne B. Hollowed
Kirstin K. Holsman
Wei Cheng
Amanda Faig
Alan C. Haynie
Albert J. Hermann
Kelly A. Kearney
André E. Punt
Timothy E. Essington
author_sort George A. Whitehouse
title Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF
title_short Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF
title_full Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF
title_fullStr Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF
title_full_unstemmed Data_Sheet_1_Bottom–Up Impacts of Forecasted Climate Change on the Eastern Bering Sea Food Web.PDF
title_sort data_sheet_1_bottom–up impacts of forecasted climate change on the eastern bering sea food web.pdf
publishDate 2021
url https://doi.org/10.3389/fmars.2021.624301.s001
https://figshare.com/articles/dataset/Data_Sheet_1_Bottom_Up_Impacts_of_Forecasted_Climate_Change_on_the_Eastern_Bering_Sea_Food_Web_PDF/13697995
geographic Bering Sea
geographic_facet Bering Sea
genre Bering Sea
Sea ice
genre_facet Bering Sea
Sea ice
op_relation doi:10.3389/fmars.2021.624301.s001
https://figshare.com/articles/dataset/Data_Sheet_1_Bottom_Up_Impacts_of_Forecasted_Climate_Change_on_the_Eastern_Bering_Sea_Food_Web_PDF/13697995
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.3389/fmars.2021.624301.s001
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