Late Quaternary paleoceanographic history based on ostracode records from the Chukchi Plateau, western Arctic Ocean

Fossil ostracode assemblages were investigated in three sediment cores from the Chukchi Plateau, in the western Arctic Ocean, in order to reconstruct its late Quaternary paleoceanographic history. The cores were obtained from water depths of 435–741 m, within the range of modern Atlantic Water (AW)....

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Published inMarine micropaleontology Vol. 165; p. 101987
Main Authors Zhou, Baochun, Wang, Rujian, Xiao, Wenshen, Wang, Yunan
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.05.2021
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Abstract Fossil ostracode assemblages were investigated in three sediment cores from the Chukchi Plateau, in the western Arctic Ocean, in order to reconstruct its late Quaternary paleoceanographic history. The cores were obtained from water depths of 435–741 m, within the range of modern Atlantic Water (AW). The ostracode abundance shows distinct glacial/interglacial fluctuations, suggesting the suppression of benthic bioproductivity during glacial periods, probably associated with the development of perennial sea ice. Based on the modern ostracode distribution in the Arctic Ocean, 11 common ostracode taxa out of a total of 33 are related to specific water mass or sea ice conditions. Analyses of key ostracode species and a benthic foraminifera species, Cassidulina teretis, reveal a pronounced faunal turnover between MIS 3 and MIS 1. A distinct assemblage dominated by Polycope spp. and accompanied by other species preferring Arctic Intermediate Water (AIW) (Microcythere medistriatum, Pseudocythere caudata, Cytheropteron sedovi, C. scoresbyi, and Pedicythere spp.) characterizes the period between late MIS 5 and MIS 3, whereas MIS 1 is characterized by a rise in Krithe spp. and two species associated with AW (Cytheropteron perlaria and Cassidulina teretis). The faunal turnover indicates an upward shift of AIW and a decline of the influence of warm AW during the period between late MIS 5 and MIS 3, presumably caused by a weakening or cessation of the westward dispersion of AW. The distributions of two sea-ice related species, Acetabulastoma arcticum and Rabilimis mirabilis, indicate minimal perennial sea-ice cover and probably summer sea-ice-free conditions throughout MIS 1 and the development of a summer sea-ice margin environment during interglacial/interstadial periods. •The first study on fossil ostracodes from the Chukchi Plateau, western Arctic Ocean.•The Atlantic Water may have declined between late MIS 5 and MIS 3 in this area.•The area was probably in a summer sea-ice-free condition throughout MIS 1.
AbstractList Fossil ostracode assemblages were investigated in three sediment cores from the Chukchi Plateau, in the western Arctic Ocean, in order to reconstruct its late Quaternary paleoceanographic history. The cores were obtained from water depths of 435–741 m, within the range of modern Atlantic Water (AW). The ostracode abundance shows distinct glacial/interglacial fluctuations, suggesting the suppression of benthic bioproductivity during glacial periods, probably associated with the development of perennial sea ice. Based on the modern ostracode distribution in the Arctic Ocean, 11 common ostracode taxa out of a total of 33 are related to specific water mass or sea ice conditions. Analyses of key ostracode species and a benthic foraminifera species, Cassidulina teretis, reveal a pronounced faunal turnover between MIS 3 and MIS 1. A distinct assemblage dominated by Polycope spp. and accompanied by other species preferring Arctic Intermediate Water (AIW) (Microcythere medistriatum, Pseudocythere caudata, Cytheropteron sedovi, C. scoresbyi, and Pedicythere spp.) characterizes the period between late MIS 5 and MIS 3, whereas MIS 1 is characterized by a rise in Krithe spp. and two species associated with AW (Cytheropteron perlaria and Cassidulina teretis). The faunal turnover indicates an upward shift of AIW and a decline of the influence of warm AW during the period between late MIS 5 and MIS 3, presumably caused by a weakening or cessation of the westward dispersion of AW. The distributions of two sea-ice related species, Acetabulastoma arcticum and Rabilimis mirabilis, indicate minimal perennial sea-ice cover and probably summer sea-ice-free conditions throughout MIS 1 and the development of a summer sea-ice margin environment during interglacial/interstadial periods. •The first study on fossil ostracodes from the Chukchi Plateau, western Arctic Ocean.•The Atlantic Water may have declined between late MIS 5 and MIS 3 in this area.•The area was probably in a summer sea-ice-free condition throughout MIS 1.
ArticleNumber 101987
Author Xiao, Wenshen
Zhou, Baochun
Wang, Rujian
Wang, Yunan
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  givenname: Baochun
  surname: Zhou
  fullname: Zhou, Baochun
  organization: Shanghai Natural History Museum (Branch of Shanghai Science and Technology Museum), 510 West Beijing Road, Shanghai 200041, China
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  givenname: Rujian
  surname: Wang
  fullname: Wang, Rujian
  email: rjwang@tongji.edu.cn
  organization: State Key Laboratory of Marine Geology, Tongji University, 1239 Siping Road, Shanghai 200092, China
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  givenname: Wenshen
  surname: Xiao
  fullname: Xiao, Wenshen
  organization: State Key Laboratory of Marine Geology, Tongji University, 1239 Siping Road, Shanghai 200092, China
– sequence: 4
  givenname: Yunan
  surname: Wang
  fullname: Wang, Yunan
  organization: Shanghai Natural History Museum (Branch of Shanghai Science and Technology Museum), 510 West Beijing Road, Shanghai 200041, China
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CitedBy_id crossref_primary_10_1016_j_marpolbul_2022_114232
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Keywords Chukchi Plateau
Water mass
Ostracode assemblages
Late Quaternary
Sea ice
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Snippet Fossil ostracode assemblages were investigated in three sediment cores from the Chukchi Plateau, in the western Arctic Ocean, in order to reconstruct its late...
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StartPage 101987
SubjectTerms Chukchi Plateau
Late Quaternary
Ostracode assemblages
Sea ice
Water mass
Title Late Quaternary paleoceanographic history based on ostracode records from the Chukchi Plateau, western Arctic Ocean
URI https://dx.doi.org/10.1016/j.marmicro.2021.101987
Volume 165
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