The response of the Bering Sea Gateway during the Mid-Pleistocene Transition

The Mid-Pleistocene transition and the response of sea ice in the subarctic North Pacific are examined using a diatom record from the north eastern Bering Sea slope (IODP core U1344A). High percentages of diatom sea ice species in the assemblage foster the development of groupings specific to differ...

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Published inPalaeogeography, palaeoclimatology, palaeoecology Vol. 485; pp. 974 - 985
Main Authors Stroynowski, Zuzia, Abrantes, Fatima, Bruno, Emanuela
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.11.2017
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Summary:The Mid-Pleistocene transition and the response of sea ice in the subarctic North Pacific are examined using a diatom record from the north eastern Bering Sea slope (IODP core U1344A). High percentages of diatom sea ice species in the assemblage foster the development of groupings specific to differing ice conditions. Thalassiosira antarctica var. borealis emerges as a key diatom species that delineates the development of thick multiannual sea ice and marks a series of advancements from 0.9 to1.2Ma after which it dominates the assemblage until 0.6Ma. The decline of Neodenticula seminae, indicative of Alaskan Stream water inflow, is in agreement with neighbouring core U1343E confirming the reduction of Bering Sea circulation after 0.9Ma. We propose that during the MPT a stepped advancement of sea ice occurs in the Bering Sea as a response to increased moisture delivery to the high latitudes. An extended period of diatom productivity between 0.75 and 0.65Ma, marks major deglacial conditions towards the end of the MPT by 0.6–0.55Ma. The work highlights the important role played by sea ice and supports the contention of a colder MPT in the subarctic Pacific. •A 1.93Ma diatom record for the north eastern Bering Sea shelf is presented.•The buildup of multiannual sea ice detected during the Mid-Pleistocene transition•Long term sea ice trends correspond to East Asian monsoon record ODP 1146.
ISSN:0031-0182
1872-616X
DOI:10.1016/j.palaeo.2017.08.023