Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival

Adult and early life stage distributions of the commercially important demersal fish Walleye Pollock (Gadus chalcogrammus) have varied in relation to the warm and cold environmental conditions on the eastern Bering Sea (EBS) shelf. Previous modelling studies indicate that transport alone does not ac...

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Published in:ICES Journal of Marine Science
Other Authors: Petrik, Colleen (author), Duffy-Anderson, Janet (author), Castruccio, Frederic (author), Curchitser, Enrique (author), Danielson, Seth (author), Hedstrom, Katherine (author), Mueter, Franz (author)
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-023-121
https://doi.org/10.1093/icesjms/fsw004
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spelling ftncar:oai:drupal-site.org:articles_18649 2023-09-05T13:11:36+02:00 Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival Petrik, Colleen (author) Duffy-Anderson, Janet (author) Castruccio, Frederic (author) Curchitser, Enrique (author) Danielson, Seth (author) Hedstrom, Katherine (author) Mueter, Franz (author) 2016-07-01 http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-023-121 https://doi.org/10.1093/icesjms/fsw004 en eng ICES Journal of Marine Science articles:18649 ark:/85065/d7pr7xn8 http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-023-121 doi:10.1093/icesjms/fsw004 Copyright 2016 International Council for the Exploration of the Sea. Text article 2016 ftncar https://doi.org/10.1093/icesjms/fsw004 2023-08-14T18:43:54Z Adult and early life stage distributions of the commercially important demersal fish Walleye Pollock (Gadus chalcogrammus) have varied in relation to the warm and cold environmental conditions on the eastern Bering Sea (EBS) shelf. Previous modelling studies indicate that transport alone does not account for the disparate juvenile distributions in warm and cold years, but that spawning locations are important. Our objective was to determine the potential connectivity of EBS pollock spawning areas with juvenile nursery areas between warm and cold years from an 18-year hindcast (1995-2012). We calculated the connectivity between larval sources and juvenile positions that were produced by a coupled biological-physical individual-based model that simulated transport, growth, and vertical behavior of pollock from the egg until the juvenile stage. Three connectivity patterns were seen in most simulations: along-isobaths to the northwest, self-retention, and transport around the Pribilof Islands. The major differences in connectivity between warm and cold years, more northwards in warm years and more off-shelf in cold years, mimicked wind-driven flow characteristics of those years that were related to winter mean zonal position of the Aleutian Low. Connectivity relationships were more sensitive to spatial alterations in the spawning areas in cold years, while they were more responsive to spawn timing shifts in warm years. The strongest connectivity to advantageous juvenile habitats originated in the well-known spawning areas, but also in a less well-studied region on the Outer Shelf. This northern Outer Shelf region emerged as a very large sink of pollock reaching the juvenile transition from all spawning sources, suggesting more thorough sampling across multiple trophic levels of this potentially important juvenile pollock nursery is needed. Article in Journal/Newspaper aleutian low Bering Sea OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research) Bering Sea ICES Journal of Marine Science 73 7 1890 1900
institution Open Polar
collection OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research)
op_collection_id ftncar
language English
description Adult and early life stage distributions of the commercially important demersal fish Walleye Pollock (Gadus chalcogrammus) have varied in relation to the warm and cold environmental conditions on the eastern Bering Sea (EBS) shelf. Previous modelling studies indicate that transport alone does not account for the disparate juvenile distributions in warm and cold years, but that spawning locations are important. Our objective was to determine the potential connectivity of EBS pollock spawning areas with juvenile nursery areas between warm and cold years from an 18-year hindcast (1995-2012). We calculated the connectivity between larval sources and juvenile positions that were produced by a coupled biological-physical individual-based model that simulated transport, growth, and vertical behavior of pollock from the egg until the juvenile stage. Three connectivity patterns were seen in most simulations: along-isobaths to the northwest, self-retention, and transport around the Pribilof Islands. The major differences in connectivity between warm and cold years, more northwards in warm years and more off-shelf in cold years, mimicked wind-driven flow characteristics of those years that were related to winter mean zonal position of the Aleutian Low. Connectivity relationships were more sensitive to spatial alterations in the spawning areas in cold years, while they were more responsive to spawn timing shifts in warm years. The strongest connectivity to advantageous juvenile habitats originated in the well-known spawning areas, but also in a less well-studied region on the Outer Shelf. This northern Outer Shelf region emerged as a very large sink of pollock reaching the juvenile transition from all spawning sources, suggesting more thorough sampling across multiple trophic levels of this potentially important juvenile pollock nursery is needed.
author2 Petrik, Colleen (author)
Duffy-Anderson, Janet (author)
Castruccio, Frederic (author)
Curchitser, Enrique (author)
Danielson, Seth (author)
Hedstrom, Katherine (author)
Mueter, Franz (author)
format Article in Journal/Newspaper
title Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
spellingShingle Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
title_short Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
title_full Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
title_fullStr Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
title_full_unstemmed Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
title_sort modelled connectivity between walleye pollock (gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival
publishDate 2016
url http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-023-121
https://doi.org/10.1093/icesjms/fsw004
geographic Bering Sea
geographic_facet Bering Sea
genre aleutian low
Bering Sea
genre_facet aleutian low
Bering Sea
op_relation ICES Journal of Marine Science
articles:18649
ark:/85065/d7pr7xn8
http://nldr.library.ucar.edu/repository/collections/OSGC-000-000-023-121
doi:10.1093/icesjms/fsw004
op_rights Copyright 2016 International Council for the Exploration of the Sea.
op_doi https://doi.org/10.1093/icesjms/fsw004
container_title ICES Journal of Marine Science
container_volume 73
container_issue 7
container_start_page 1890
op_container_end_page 1900
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