Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System

By combining an ocean model, a nutrient-phytoplankton-zooplankton-detritus-model and an individual-based model for early life stages of Northeast Arctic cod we systematically investigate food limitations and growth performance for individual cod larvae drifting along the Norwegian coast from spawnin...

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Published in:Frontiers in Marine Science
Main Authors: Vikebø, Frode Bendiksen, Broch, Ole Jacob, Kajiya Endo, Clarissa Akemi, Frøysa, Håvard G, Carroll, JoLynn, Juselius, Jonas, Langangen, Øystein Ole Gahr
Format: Article in Journal/Newspaper
Language:English
Published: 2021
Subjects:
Online Access:https://hdl.handle.net/11250/2938717
https://doi.org/10.3389/fmars.2021.767191
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spelling ftimr:oai:imr.brage.unit.no:11250/2938717 2023-05-15T14:30:24+02:00 Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System Vikebø, Frode Bendiksen Broch, Ole Jacob Kajiya Endo, Clarissa Akemi Frøysa, Håvard G Carroll, JoLynn Juselius, Jonas Langangen, Øystein Ole Gahr 2021 application/pdf https://hdl.handle.net/11250/2938717 https://doi.org/10.3389/fmars.2021.767191 eng eng Notur/NorStore: NS9295K Notur/NorStore: NN9295K Norges forskningsråd: 228107 Norges forskningsråd: 255487 Frontiers in Marine Science. 2021, 8 1-13. urn:issn:2296-7745 https://hdl.handle.net/11250/2938717 https://doi.org/10.3389/fmars.2021.767191 cristin:1979450 1-13 8 Frontiers in Marine Science Peer reviewed Journal article 2021 ftimr https://doi.org/10.3389/fmars.2021.767191 2022-02-02T23:39:40Z By combining an ocean model, a nutrient-phytoplankton-zooplankton-detritus-model and an individual-based model for early life stages of Northeast Arctic cod we systematically investigate food limitations and growth performance for individual cod larvae drifting along the Norwegian coast from spawning grounds toward nursery areas in the Barents Sea. We hypothesize that there is food shortage for larvae spawned early and late in the 2-monthlong spawning period, and to a larger degree to the north and south of the main spawning grounds in the Lofoten. Model results for three contrasting years (1995, 2001, and 2002) show that spawning early in the season at spawning grounds in the Lofoten and farther north is favorable for larval growth close to their size- and temperature-dependent potential. Still, both early and late spawned larvae experience slower growth than individuals originating closer to the time of peak spawning late March/early April. The reasons are low temperatures and shortage in suitable prey, respectively, and this occurs more frequent in areas of strong currents about 1–2 months post hatching. In particular, late spawned larvae grow relatively slow despite higher temperatures later in the season because they are outgrown by their preferred prey. publishedVersion Article in Journal/Newspaper Arctic cod Arctic Barents Sea Lofoten Northeast Arctic cod Phytoplankton Zooplankton Institute for Marine Research: Brage IMR Arctic Barents Sea Lofoten Frontiers in Marine Science 8
institution Open Polar
collection Institute for Marine Research: Brage IMR
op_collection_id ftimr
language English
description By combining an ocean model, a nutrient-phytoplankton-zooplankton-detritus-model and an individual-based model for early life stages of Northeast Arctic cod we systematically investigate food limitations and growth performance for individual cod larvae drifting along the Norwegian coast from spawning grounds toward nursery areas in the Barents Sea. We hypothesize that there is food shortage for larvae spawned early and late in the 2-monthlong spawning period, and to a larger degree to the north and south of the main spawning grounds in the Lofoten. Model results for three contrasting years (1995, 2001, and 2002) show that spawning early in the season at spawning grounds in the Lofoten and farther north is favorable for larval growth close to their size- and temperature-dependent potential. Still, both early and late spawned larvae experience slower growth than individuals originating closer to the time of peak spawning late March/early April. The reasons are low temperatures and shortage in suitable prey, respectively, and this occurs more frequent in areas of strong currents about 1–2 months post hatching. In particular, late spawned larvae grow relatively slow despite higher temperatures later in the season because they are outgrown by their preferred prey. publishedVersion
format Article in Journal/Newspaper
author Vikebø, Frode Bendiksen
Broch, Ole Jacob
Kajiya Endo, Clarissa Akemi
Frøysa, Håvard G
Carroll, JoLynn
Juselius, Jonas
Langangen, Øystein Ole Gahr
spellingShingle Vikebø, Frode Bendiksen
Broch, Ole Jacob
Kajiya Endo, Clarissa Akemi
Frøysa, Håvard G
Carroll, JoLynn
Juselius, Jonas
Langangen, Øystein Ole Gahr
Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System
author_facet Vikebø, Frode Bendiksen
Broch, Ole Jacob
Kajiya Endo, Clarissa Akemi
Frøysa, Håvard G
Carroll, JoLynn
Juselius, Jonas
Langangen, Øystein Ole Gahr
author_sort Vikebø, Frode Bendiksen
title Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System
title_short Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System
title_full Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System
title_fullStr Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System
title_full_unstemmed Northeast Arctic Cod and Prey Match-Mismatch in a High-Latitude Spring-Bloom System
title_sort northeast arctic cod and prey match-mismatch in a high-latitude spring-bloom system
publishDate 2021
url https://hdl.handle.net/11250/2938717
https://doi.org/10.3389/fmars.2021.767191
geographic Arctic
Barents Sea
Lofoten
geographic_facet Arctic
Barents Sea
Lofoten
genre Arctic cod
Arctic
Barents Sea
Lofoten
Northeast Arctic cod
Phytoplankton
Zooplankton
genre_facet Arctic cod
Arctic
Barents Sea
Lofoten
Northeast Arctic cod
Phytoplankton
Zooplankton
op_source 1-13
8
Frontiers in Marine Science
op_relation Notur/NorStore: NS9295K
Notur/NorStore: NN9295K
Norges forskningsråd: 228107
Norges forskningsråd: 255487
Frontiers in Marine Science. 2021, 8 1-13.
urn:issn:2296-7745
https://hdl.handle.net/11250/2938717
https://doi.org/10.3389/fmars.2021.767191
cristin:1979450
op_doi https://doi.org/10.3389/fmars.2021.767191
container_title Frontiers in Marine Science
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