Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp
Recent global warming is pronounced in high-latitude regions (e.g. northern Asia), and will cause the vegetation to change. Future vegetation trends (e.g. the “arctic greening”) will feed back into atmospheric circulation and the global climate system. Understanding the nature and causes of past veg...
Published in: | Vegetation History and Archaeobotany |
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Main Authors: | , , , , , , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
Published: |
Springer
2018
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Subjects: | |
Online Access: | https://oceanrep.geomar.de/id/eprint/44285/ https://oceanrep.geomar.de/id/eprint/44285/1/Tian2018_Article_BiomeChangesAndTheirInferredCl.pdf https://doi.org/10.1007/s00334-017-0653-8 |
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author | Tian, Fang Cao, Xianyong Dallmeyer, Anne Lohmann, Gerrit Zhang, Xu Ni, Jian Andreev, Andrei Anderson, Patricia M. Lozhkin, Anatoly V. Bezrukova, Elena Rudaya, Natalia Xu, Qinghai Herzschuh, Ulrike |
author_facet | Tian, Fang Cao, Xianyong Dallmeyer, Anne Lohmann, Gerrit Zhang, Xu Ni, Jian Andreev, Andrei Anderson, Patricia M. Lozhkin, Anatoly V. Bezrukova, Elena Rudaya, Natalia Xu, Qinghai Herzschuh, Ulrike |
author_sort | Tian, Fang |
collection | OceanRep (GEOMAR Helmholtz Centre für Ocean Research Kiel) |
container_issue | 2 |
container_start_page | 365 |
container_title | Vegetation History and Archaeobotany |
container_volume | 27 |
description | Recent global warming is pronounced in high-latitude regions (e.g. northern Asia), and will cause the vegetation to change. Future vegetation trends (e.g. the “arctic greening”) will feed back into atmospheric circulation and the global climate system. Understanding the nature and causes of past vegetation changes is important for predicting the composition and distribution of future vegetation communities. Fossil pollen records from 468 sites in northern and eastern Asia were biomised at selected times between 40 cal ka bp and today. Biomes were also simulated using a climate-driven biome model and results from the two approaches compared in order to help understand the mechanisms behind the observed vegetation changes. The consistent biome results inferred by both approaches reveal that long-term and broad-scale vegetation patterns reflect global- to hemispheric-scale climate changes. Forest biomes increase around the beginning of the late deglaciation, become more widespread during the early and middle Holocene, and decrease in the late Holocene in fringe areas of the Asian Summer Monsoon. At the southern and southwestern margins of the taiga, forest increases in the early Holocene and shows notable species succession, which may have been caused by winter warming at ca. 7 cal ka bp. At the northeastern taiga margin (central Yakutia and northeastern Siberia), shrub expansion during the last deglaciation appears to prevent the permafrost from thawing and hinders the northward expansion of evergreen needle-leaved species until ca. 7 cal ka bp. The vegetation-climate disequilibrium during the early Holocene in the taiga-tundra transition zone suggests that projected climate warming will not cause a northward expansion of evergreen needle-leaved species. |
format | Article in Journal/Newspaper |
genre | Arctic Greening Arctic Global warming permafrost taiga Tundra Yakutia Siberia |
genre_facet | Arctic Greening Arctic Global warming permafrost taiga Tundra Yakutia Siberia |
geographic | Arctic |
geographic_facet | Arctic |
id | ftoceanrep:oai:oceanrep.geomar.de:44285 |
institution | Open Polar |
language | English |
op_collection_id | ftoceanrep |
op_container_end_page | 379 |
op_doi | https://doi.org/10.1007/s00334-017-0653-8 |
op_relation | https://oceanrep.geomar.de/id/eprint/44285/1/Tian2018_Article_BiomeChangesAndTheirInferredCl.pdf Tian, F., Cao, X., Dallmeyer, A., Lohmann, G., Zhang, X., Ni, J., Andreev, A., Anderson, P. M., Lozhkin, A. V., Bezrukova, E., Rudaya, N., Xu, Q. and Herzschuh, U. (2018) Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp . Vegetation History and Archaeobotany, 27 (2). pp. 365-379. DOI 10.1007/s00334-017-0653-8 <https://doi.org/10.1007/s00334-017-0653-8>. doi:10.1007/s00334-017-0653-8 |
op_rights | info:eu-repo/semantics/restrictedAccess |
publishDate | 2018 |
publisher | Springer |
record_format | openpolar |
spelling | ftoceanrep:oai:oceanrep.geomar.de:44285 2025-01-16T20:01:05+00:00 Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp Tian, Fang Cao, Xianyong Dallmeyer, Anne Lohmann, Gerrit Zhang, Xu Ni, Jian Andreev, Andrei Anderson, Patricia M. Lozhkin, Anatoly V. Bezrukova, Elena Rudaya, Natalia Xu, Qinghai Herzschuh, Ulrike 2018 text https://oceanrep.geomar.de/id/eprint/44285/ https://oceanrep.geomar.de/id/eprint/44285/1/Tian2018_Article_BiomeChangesAndTheirInferredCl.pdf https://doi.org/10.1007/s00334-017-0653-8 en eng Springer https://oceanrep.geomar.de/id/eprint/44285/1/Tian2018_Article_BiomeChangesAndTheirInferredCl.pdf Tian, F., Cao, X., Dallmeyer, A., Lohmann, G., Zhang, X., Ni, J., Andreev, A., Anderson, P. M., Lozhkin, A. V., Bezrukova, E., Rudaya, N., Xu, Q. and Herzschuh, U. (2018) Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp . Vegetation History and Archaeobotany, 27 (2). pp. 365-379. DOI 10.1007/s00334-017-0653-8 <https://doi.org/10.1007/s00334-017-0653-8>. doi:10.1007/s00334-017-0653-8 info:eu-repo/semantics/restrictedAccess Article PeerReviewed 2018 ftoceanrep https://doi.org/10.1007/s00334-017-0653-8 2023-04-07T15:41:22Z Recent global warming is pronounced in high-latitude regions (e.g. northern Asia), and will cause the vegetation to change. Future vegetation trends (e.g. the “arctic greening”) will feed back into atmospheric circulation and the global climate system. Understanding the nature and causes of past vegetation changes is important for predicting the composition and distribution of future vegetation communities. Fossil pollen records from 468 sites in northern and eastern Asia were biomised at selected times between 40 cal ka bp and today. Biomes were also simulated using a climate-driven biome model and results from the two approaches compared in order to help understand the mechanisms behind the observed vegetation changes. The consistent biome results inferred by both approaches reveal that long-term and broad-scale vegetation patterns reflect global- to hemispheric-scale climate changes. Forest biomes increase around the beginning of the late deglaciation, become more widespread during the early and middle Holocene, and decrease in the late Holocene in fringe areas of the Asian Summer Monsoon. At the southern and southwestern margins of the taiga, forest increases in the early Holocene and shows notable species succession, which may have been caused by winter warming at ca. 7 cal ka bp. At the northeastern taiga margin (central Yakutia and northeastern Siberia), shrub expansion during the last deglaciation appears to prevent the permafrost from thawing and hinders the northward expansion of evergreen needle-leaved species until ca. 7 cal ka bp. The vegetation-climate disequilibrium during the early Holocene in the taiga-tundra transition zone suggests that projected climate warming will not cause a northward expansion of evergreen needle-leaved species. Article in Journal/Newspaper Arctic Greening Arctic Global warming permafrost taiga Tundra Yakutia Siberia OceanRep (GEOMAR Helmholtz Centre für Ocean Research Kiel) Arctic Vegetation History and Archaeobotany 27 2 365 379 |
spellingShingle | Tian, Fang Cao, Xianyong Dallmeyer, Anne Lohmann, Gerrit Zhang, Xu Ni, Jian Andreev, Andrei Anderson, Patricia M. Lozhkin, Anatoly V. Bezrukova, Elena Rudaya, Natalia Xu, Qinghai Herzschuh, Ulrike Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp |
title | Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp |
title_full | Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp |
title_fullStr | Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp |
title_full_unstemmed | Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp |
title_short | Biome changes and their inferred climatic drivers in northern and eastern continental Asia at selected times since 40 cal ka bp |
title_sort | biome changes and their inferred climatic drivers in northern and eastern continental asia at selected times since 40 cal ka bp |
url | https://oceanrep.geomar.de/id/eprint/44285/ https://oceanrep.geomar.de/id/eprint/44285/1/Tian2018_Article_BiomeChangesAndTheirInferredCl.pdf https://doi.org/10.1007/s00334-017-0653-8 |