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An annually resolved record of Western European vegetation response to Younger Dryas cooling

  • The regional patterns and timing of the Younger Dryas cooling in the North Atlantic realm were complex and are mechanistically incompletely understood. To enhance understanding of regional climate patterns, we present molecular biomarker records at subannual to annual resolution by mass spectrometry imaging (MSI) of sediments from the Lake Meerfelder Maar covering the Allerod-Younger Dryas transition. These analyses are supported by conventional extraction-based molecular-isotopic analyses, which both validate the imaging results and constrain the sources of the target compounds. The targeted fatty acid biomarkers serve as a gauge of the response of the local aquatic and terrestrial ecosystem to climate change. Based on the comparison of our data with existing data from Meerfelder Maar, we analyse the short-term environmental evolution in Western Europe during the studied time interval and confirm the previously reported delayed hydrological response to Greenland cooling. However, despite a detected delay of Western EuropeanThe regional patterns and timing of the Younger Dryas cooling in the North Atlantic realm were complex and are mechanistically incompletely understood. To enhance understanding of regional climate patterns, we present molecular biomarker records at subannual to annual resolution by mass spectrometry imaging (MSI) of sediments from the Lake Meerfelder Maar covering the Allerod-Younger Dryas transition. These analyses are supported by conventional extraction-based molecular-isotopic analyses, which both validate the imaging results and constrain the sources of the target compounds. The targeted fatty acid biomarkers serve as a gauge of the response of the local aquatic and terrestrial ecosystem to climate change. Based on the comparison of our data with existing data from Meerfelder Maar, we analyse the short-term environmental evolution in Western Europe during the studied time interval and confirm the previously reported delayed hydrological response to Greenland cooling. However, despite a detected delay of Western European environmental change of similar to 135 years, our biomarker data show statistically significant correlation with deuterium excess in Greenland ice core at - annual resolution during this time-transgressive cooling. This suggests a coherent atmospheric forcing across the North Atlantic realm during this transition. We propose that Western European cooling was postponed due to major reorganization of the westerlies that were intermittently forcing warmer and wetter air masses from lower latitudes to Western Europe and thus resulted in delayed cooling relative to Greenland.show moreshow less

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Author details:Igor ObrehtORCiDGND, Lars WörmerORCiD, Achim BrauerORCiDGND, Jenny Wendt, Susanne Alfken, David De VleeschouwerORCiDGND, Marcus ElvertORCiDGND, Kai-Uwe HinrichsORCiDGND
DOI:https://doi.org/10.1016/j.quascirev.2020.106198
ISSN:0277-3791
Title of parent work (English):Quaternary science reviews : the international multidisciplinary research and review journal
Publisher:Elsevier
Place of publishing:Amsterdam [u.a.]
Publication type:Article
Language:English
Date of first publication:2020/01/31
Publication year:2020
Release date:2023/10/06
Tag:FT-ICR-MS; Meerfelder Maar; Western Europe; fatty acids; high-resolution biomarkers; imaging; lateglacial; mass spectrometry; paleoclimatology
Volume:231
Article number:106198
Number of pages:15
Funding institution:European Research Council (ERC) under the European UnionEuropean; Research Council (ERC) [670115]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Geowissenschaften
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
Publishing method:Open Access / Hybrid Open-Access
License (German):License LogoCC-BY-NC-ND - Namensnennung, nicht kommerziell, keine Bearbeitungen 4.0 International
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