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Moist and warm conditions in Eurasia during the last glacial of the Middle Pleistocene Transition.


ABSTRACT: The end of the Middle Pleistocene Transition (MPT, ~ 800-670 thousand years before present, ka) was characterised by the emergence of large glacial ice-sheets associated with anomalously warm North Atlantic sea surface temperatures enhancing moisture production. Still, the direction and intensity of moisture transport across Eurasia towards potential ice-sheets is poorly constrained. To reconstruct late MPT moisture production and dispersal, we combine records of upper ocean temperature and pollen-based Mediterranean forest cover, a tracer of westerlies and precipitation, from a subtropical drill-core collected off South-West Iberia, with records of East Asia summer monsoon (EASM) strength and West Pacific surface temperatures, and model simulations. Here we show that south-western European winter precipitation and EASM strength reached high levels during the Marine Isotope Stage 18 glacial. This anomalous situation was caused by nearly-continuous moisture supply from both oceans and its transport to higher latitudes through the westerlies, likely fuelling the accelerated expansion of northern hemisphere ice-sheets during the late MPT.

SUBMITTER: Sanchez Goni MF 

PROVIDER: S-EPMC10172347 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Moist and warm conditions in Eurasia during the last glacial of the Middle Pleistocene Transition.

Sánchez Goñi María Fernanda MF   Extier Thomas T   Polanco-Martínez Josué M JM   Zorzi Coralie C   Rodrigues Teresa T   Bahr André A  

Nature communications 20230510 1


The end of the Middle Pleistocene Transition (MPT, ~ 800-670 thousand years before present, ka) was characterised by the emergence of large glacial ice-sheets associated with anomalously warm North Atlantic sea surface temperatures enhancing moisture production. Still, the direction and intensity of moisture transport across Eurasia towards potential ice-sheets is poorly constrained. To reconstruct late MPT moisture production and dispersal, we combine records of upper ocean temperature and poll  ...[more]

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