A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity

Massive declines in sea ice cover and widespread warming seawaters across the Pacific Arctic region over the past several decades have resulted in profound shifts in marine ecosystems that have cascaded throughout all trophic levels. The Distributed Biological Observatory (DBO) provides sampling inf...

Full description

Bibliographic Details
Published in:PLOS ONE
Main Authors: Frey, Karen E, Comiso, Josefino C., Stock, Larry V., Young, Luisa N C, Cooper, Lee W., Grebmeier, Jacqueline M.
Format: Text
Language:unknown
Published: Clark Digital Commons 2023
Subjects:
Online Access:https://commons.clarku.edu/faculty_geography/946
https://doi.org/10.1371/journal.pone.0287960
https://commons.clarku.edu/context/faculty_geography/article/1945/viewcontent/journal.pone.0287960.pdf
id ftclarkuniv:oai:commons.clarku.edu:faculty_geography-1945
record_format openpolar
spelling ftclarkuniv:oai:commons.clarku.edu:faculty_geography-1945 2023-09-05T13:17:01+02:00 A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity Frey, Karen E Comiso, Josefino C. Stock, Larry V. Young, Luisa N C Cooper, Lee W. Grebmeier, Jacqueline M. 2023-01-01T08:00:00Z application/pdf https://commons.clarku.edu/faculty_geography/946 https://doi.org/10.1371/journal.pone.0287960 https://commons.clarku.edu/context/faculty_geography/article/1945/viewcontent/journal.pone.0287960.pdf unknown Clark Digital Commons https://commons.clarku.edu/faculty_geography/946 doi:10.1371/journal.pone.0287960 https://commons.clarku.edu/context/faculty_geography/article/1945/viewcontent/journal.pone.0287960.pdf http://creativecommons.org/licenses/by/4.0/ Geography Arctic Regions chlorophyll chlorophyll A ecosystem ice cover seasons water Environmental Studies Geography Social and Behavioral Sciences text 2023 ftclarkuniv https://doi.org/10.1371/journal.pone.0287960 2023-08-14T06:17:27Z Massive declines in sea ice cover and widespread warming seawaters across the Pacific Arctic region over the past several decades have resulted in profound shifts in marine ecosystems that have cascaded throughout all trophic levels. The Distributed Biological Observatory (DBO) provides sampling infrastructure for a latitudinal gradient of biological "hotspot" regions across the Pacific Arctic region, with eight sites spanning the northern Bering, Chukchi, and Beaufort Seas. The purpose of this study is two-fold: (a) to provide an assessment of satellite-based environmental variables for the eight DBO sites (including sea surface temperature (SST), sea ice concentration, annual sea ice persistence and the timing of sea ice breakup/formation, chlorophyll-a concentrations, primary productivity, and photosynthetically available radiation (PAR)) as well as their trends across the 2003-2020 time period; and (b) to assess the importance of sea ice presence/open water for influencing primary productivity across the region and for the eight DBO sites in particular. While we observe significant trends in SST, sea ice, and chlorophyll-a/primary productivity throughout the year, the most significant and synoptic trends for the DBO sites have been those during late summer and autumn (warming SST during October/November, later shifts in the timing of sea ice formation, and increases in chlorophyll-a/primary productivity during August/September). Those DBO sites where significant increases in annual primary productivity over the 2003-2020 time period have been observed include DBO1 in the Bering Sea (37.7 g C/m2/year/decade), DBO3 in the Chukchi Sea (48.0 g C/m2/year/decade), and DBO8 in the Beaufort Sea (38.8 g C/m2/year/decade). The length of the open water season explains the variance of annual primary productivity most strongly for sites DBO3 (74%), DBO4 in the Chukchi Sea (79%), and DBO6 in the Beaufort Sea (78%), with DBO3 influenced most strongly with each day of additional increased open water (3.8 g C/m2/year per ... Text Arctic Beaufort Sea Bering Sea Chukchi Chukchi Sea Pacific Arctic Sea ice Clark University: Clark Digital Commons Arctic Bering Sea Chukchi Sea Pacific PLOS ONE 18 7 e0287960
institution Open Polar
collection Clark University: Clark Digital Commons
op_collection_id ftclarkuniv
language unknown
topic Arctic Regions
chlorophyll
chlorophyll A
ecosystem
ice cover
seasons
water
Environmental Studies
Geography
Social and Behavioral Sciences
spellingShingle Arctic Regions
chlorophyll
chlorophyll A
ecosystem
ice cover
seasons
water
Environmental Studies
Geography
Social and Behavioral Sciences
Frey, Karen E
Comiso, Josefino C.
Stock, Larry V.
Young, Luisa N C
Cooper, Lee W.
Grebmeier, Jacqueline M.
A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
topic_facet Arctic Regions
chlorophyll
chlorophyll A
ecosystem
ice cover
seasons
water
Environmental Studies
Geography
Social and Behavioral Sciences
description Massive declines in sea ice cover and widespread warming seawaters across the Pacific Arctic region over the past several decades have resulted in profound shifts in marine ecosystems that have cascaded throughout all trophic levels. The Distributed Biological Observatory (DBO) provides sampling infrastructure for a latitudinal gradient of biological "hotspot" regions across the Pacific Arctic region, with eight sites spanning the northern Bering, Chukchi, and Beaufort Seas. The purpose of this study is two-fold: (a) to provide an assessment of satellite-based environmental variables for the eight DBO sites (including sea surface temperature (SST), sea ice concentration, annual sea ice persistence and the timing of sea ice breakup/formation, chlorophyll-a concentrations, primary productivity, and photosynthetically available radiation (PAR)) as well as their trends across the 2003-2020 time period; and (b) to assess the importance of sea ice presence/open water for influencing primary productivity across the region and for the eight DBO sites in particular. While we observe significant trends in SST, sea ice, and chlorophyll-a/primary productivity throughout the year, the most significant and synoptic trends for the DBO sites have been those during late summer and autumn (warming SST during October/November, later shifts in the timing of sea ice formation, and increases in chlorophyll-a/primary productivity during August/September). Those DBO sites where significant increases in annual primary productivity over the 2003-2020 time period have been observed include DBO1 in the Bering Sea (37.7 g C/m2/year/decade), DBO3 in the Chukchi Sea (48.0 g C/m2/year/decade), and DBO8 in the Beaufort Sea (38.8 g C/m2/year/decade). The length of the open water season explains the variance of annual primary productivity most strongly for sites DBO3 (74%), DBO4 in the Chukchi Sea (79%), and DBO6 in the Beaufort Sea (78%), with DBO3 influenced most strongly with each day of additional increased open water (3.8 g C/m2/year per ...
format Text
author Frey, Karen E
Comiso, Josefino C.
Stock, Larry V.
Young, Luisa N C
Cooper, Lee W.
Grebmeier, Jacqueline M.
author_facet Frey, Karen E
Comiso, Josefino C.
Stock, Larry V.
Young, Luisa N C
Cooper, Lee W.
Grebmeier, Jacqueline M.
author_sort Frey, Karen E
title A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
title_short A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
title_full A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
title_fullStr A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
title_full_unstemmed A comprehensive satellite-based assessment across the Pacific Arctic Distributed Biological Observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
title_sort comprehensive satellite-based assessment across the pacific arctic distributed biological observatory shows widespread late-season sea surface warming and sea ice declines with significant influences on primary productivity
publisher Clark Digital Commons
publishDate 2023
url https://commons.clarku.edu/faculty_geography/946
https://doi.org/10.1371/journal.pone.0287960
https://commons.clarku.edu/context/faculty_geography/article/1945/viewcontent/journal.pone.0287960.pdf
geographic Arctic
Bering Sea
Chukchi Sea
Pacific
geographic_facet Arctic
Bering Sea
Chukchi Sea
Pacific
genre Arctic
Beaufort Sea
Bering Sea
Chukchi
Chukchi Sea
Pacific Arctic
Sea ice
genre_facet Arctic
Beaufort Sea
Bering Sea
Chukchi
Chukchi Sea
Pacific Arctic
Sea ice
op_source Geography
op_relation https://commons.clarku.edu/faculty_geography/946
doi:10.1371/journal.pone.0287960
https://commons.clarku.edu/context/faculty_geography/article/1945/viewcontent/journal.pone.0287960.pdf
op_rights http://creativecommons.org/licenses/by/4.0/
op_doi https://doi.org/10.1371/journal.pone.0287960
container_title PLOS ONE
container_volume 18
container_issue 7
container_start_page e0287960
_version_ 1776198375425703936