Please use this identifier to cite or link to this item: https://cir.cenieh.es/handle/20.500.12136/3155
Title: Concurrent Asian monsoon strengthening and early modern human dispersal to East Asia during the last interglacial
Authors: Ao, Hong
Ruan, Jiaoyang
Martinón-Torres, María
Krapp, Mario
Liebrand, Diederik
Dekkers, Mark‏ J.
Caley, Thibaut
Jonell, Tara N
Zhu, Zongmin
Huang, Chunju
Li, Xinxia
Zhang, Ziyun
Sun, Qiang
Yang, Pingguo
Jiang, Jiali
Li, Xinzhou
Xie, Xiaoxun
Song, Yougui
Qiang, Xiaoke
Zhang, Peng
An, Zhisheng
Keywords: Asian monsoon;Paleoclimate;Loess;Environmental magnetism;Human dispersal
Issue Date: Jan-2024
Publisher: National Academy of Science
Citation: Proceedings of the National Academy of Sciences, 2024, 121(3), e2308994121
Abstract: The relationship between initial Homo sapiens dispersal from Africa to East Asia and the orbitally paced evolution of the Asian summer monsoon (ASM)—currently the largest monsoon system—remains underexplored due to lack of coordinated synthesis of both Asian paleoanthropological and paleoclimatic data. Here, we investigate orbital-scale ASM dynamics during the last 280 thousand years (kyr) and their likely influences on early H. sapiens dispersal to East Asia, through a unique integration of i) new centennial-resolution ASM records from the Chinese Loess Plateau, ii) model-based East Asian hydroclimatic reconstructions, iii) paleoanthropological data compilations, and iv) global H. sapiens habitat suitability simulations. Our combined proxy- and model-based reconstructions suggest that ASM precipitation responded to a combination of Northern Hemisphere ice volume, greenhouse gas, and regional summer insolation forcing, with cooccurring primary orbital cycles of ~100-kyr, 41-kyr, and ~20-kyr. Between ~125 and 70 kyr ago, summer monsoon rains and temperatures increased in vast areas across Asia. This episode coincides with the earliest H. sapiens fossil occurrence at multiple localities in East Asia. Following the transcontinental increase in simulated habitat suitability, we suggest that ASM strengthening together with Southeast African climate deterioration may have promoted the initial H. sapiens dispersal from their African homeland to remote East Asia during the last interglacial.
URI: https://cir.cenieh.es/handle/20.500.12136/3155
ISSN: 1091-6490
DOI: 10.1073/pnas.2308994121
Editor version: https://doi.org/10.1073/pnas.2308994121
Type: Article
Appears in Collections:Paleobiología



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