Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018

A remarkable early sea-ice reduction event was observed in the northern Bering Sea during 2018. In turn, this unusual hydrographic phenomenon affected several marine trophic levels, resulting in delayed phytoplankton blooms, phytoplankton community changes, and a northward shift of fish stocks. Howe...

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Published in:Frontiers in Marine Science
Main Authors: Kimura, Fumihiko, Matsuno, Kohei, Abe, Yoshiyuki, Yamaguchi, Atsushi
Format: Article in Journal/Newspaper
Language:English
Published: Frontiers Media
Subjects:
452
Online Access:http://hdl.handle.net/2115/85118
https://doi.org/10.3389/fmars.2022.808910
id fthokunivhus:oai:eprints.lib.hokudai.ac.jp:2115/85118
record_format openpolar
spelling fthokunivhus:oai:eprints.lib.hokudai.ac.jp:2115/85118 2023-05-15T13:24:38+02:00 Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018 Kimura, Fumihiko Matsuno, Kohei Abe, Yoshiyuki Yamaguchi, Atsushi http://hdl.handle.net/2115/85118 https://doi.org/10.3389/fmars.2022.808910 eng eng Frontiers Media http://hdl.handle.net/2115/85118 Frontiers in Marine Science, 9: 808910 http://dx.doi.org/10.3389/fmars.2022.808910 community structure population structure phytoplankton bloom timing reproduction copepod production pacification 452 article fthokunivhus https://doi.org/10.3389/fmars.2022.808910 2022-11-18T01:06:56Z A remarkable early sea-ice reduction event was observed in the northern Bering Sea during 2018. In turn, this unusual hydrographic phenomenon affected several marine trophic levels, resulting in delayed phytoplankton blooms, phytoplankton community changes, and a northward shift of fish stocks. However, the response of the zooplankton community remains uncharacterized. Therefore, our study sought to investigate the zooplankton community shifts in the northern Bering Sea during the summers of 2017 and 2018 and evaluate the effects of early sea-ice melt events on the zooplankton community, population structure of large copepods, and copepod production. Five zooplankton communities were identified based on cluster analysis. Further, annual changes in the zooplankton community were identified in the Chirikov Basin. In 2017, the zooplankton community included abundant Pacific copepods transported by the Anadyr water. In 2018, however, the zooplankton community was dominated by small copepods and younger stages of large copepods (Calanus glacialis/marshallae and Metridia pacifica), which was likely caused by reproduction delays resulting from the early sea-ice reduction event. These environmental abnormalities increased copepod production; however, this higher zooplankton productivity did not efficiently reach the higher trophic levels. Taken together, our findings demonstrated that zooplankton community structure and production are highly sensitive to the environmental changes associated with early sea-ice reduction (e.g., warm temperatures and food availability). Article in Journal/Newspaper Anadyr Anadyr' Bering Sea Calanus glacialis Sea ice Copepods Hokkaido University Collection of Scholarly and Academic Papers (HUSCAP) Anadyr ENVELOPE(177.510,177.510,64.734,64.734) Anadyr’ ENVELOPE(176.233,176.233,64.882,64.882) Bering Sea Pacific Frontiers in Marine Science 9
institution Open Polar
collection Hokkaido University Collection of Scholarly and Academic Papers (HUSCAP)
op_collection_id fthokunivhus
language English
topic community structure
population structure
phytoplankton bloom timing
reproduction
copepod production
pacification
452
spellingShingle community structure
population structure
phytoplankton bloom timing
reproduction
copepod production
pacification
452
Kimura, Fumihiko
Matsuno, Kohei
Abe, Yoshiyuki
Yamaguchi, Atsushi
Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018
topic_facet community structure
population structure
phytoplankton bloom timing
reproduction
copepod production
pacification
452
description A remarkable early sea-ice reduction event was observed in the northern Bering Sea during 2018. In turn, this unusual hydrographic phenomenon affected several marine trophic levels, resulting in delayed phytoplankton blooms, phytoplankton community changes, and a northward shift of fish stocks. However, the response of the zooplankton community remains uncharacterized. Therefore, our study sought to investigate the zooplankton community shifts in the northern Bering Sea during the summers of 2017 and 2018 and evaluate the effects of early sea-ice melt events on the zooplankton community, population structure of large copepods, and copepod production. Five zooplankton communities were identified based on cluster analysis. Further, annual changes in the zooplankton community were identified in the Chirikov Basin. In 2017, the zooplankton community included abundant Pacific copepods transported by the Anadyr water. In 2018, however, the zooplankton community was dominated by small copepods and younger stages of large copepods (Calanus glacialis/marshallae and Metridia pacifica), which was likely caused by reproduction delays resulting from the early sea-ice reduction event. These environmental abnormalities increased copepod production; however, this higher zooplankton productivity did not efficiently reach the higher trophic levels. Taken together, our findings demonstrated that zooplankton community structure and production are highly sensitive to the environmental changes associated with early sea-ice reduction (e.g., warm temperatures and food availability).
format Article in Journal/Newspaper
author Kimura, Fumihiko
Matsuno, Kohei
Abe, Yoshiyuki
Yamaguchi, Atsushi
author_facet Kimura, Fumihiko
Matsuno, Kohei
Abe, Yoshiyuki
Yamaguchi, Atsushi
author_sort Kimura, Fumihiko
title Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018
title_short Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018
title_full Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018
title_fullStr Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018
title_full_unstemmed Effects of Early Sea-Ice Reduction on Zooplankton and Copepod Population Structure in the Northern Bering Sea During the Summers of 2017 and 2018
title_sort effects of early sea-ice reduction on zooplankton and copepod population structure in the northern bering sea during the summers of 2017 and 2018
publisher Frontiers Media
url http://hdl.handle.net/2115/85118
https://doi.org/10.3389/fmars.2022.808910
long_lat ENVELOPE(177.510,177.510,64.734,64.734)
ENVELOPE(176.233,176.233,64.882,64.882)
geographic Anadyr
Anadyr’
Bering Sea
Pacific
geographic_facet Anadyr
Anadyr’
Bering Sea
Pacific
genre Anadyr
Anadyr'
Bering Sea
Calanus glacialis
Sea ice
Copepods
genre_facet Anadyr
Anadyr'
Bering Sea
Calanus glacialis
Sea ice
Copepods
op_relation http://hdl.handle.net/2115/85118
Frontiers in Marine Science, 9: 808910
http://dx.doi.org/10.3389/fmars.2022.808910
op_doi https://doi.org/10.3389/fmars.2022.808910
container_title Frontiers in Marine Science
container_volume 9
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