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Two-stage mid-Brunhes climate transition and mid-Pleistocene human diversification

  • Hong Ao
  • , Eelco J. Rohling
  • , Chris Stringer
  • , Andrew P. Roberts
  • , Mark J. Dekkers
  • , Guillaume Dupont-Nivet
  • , Jimin Yu
  • , Qingsong Liu
  • , Peng Zhang
  • , Zhonghui Liu
  • , Xiaolin Ma
  • , Weijian Zhou
  • , Zhangdong Jin
  • , Guoqiao Xiao
  • , Hong Wang
  • , Qiang Sun
  • , Pingguo Yang
  • , Xianzhe Peng
  • , Zhengguo Shi
  • , Xiaoke Qiang
  • Zhisheng An
  • CAS - Institute of Earth Environment
  • Chinese Academy of Sciences
  • Pilot National Laboratory for Marine Science and Technology
  • China University of Geosciences, Wuhan
  • Australian National University
  • University of Southampton
  • The Natural History Museum, London
  • Utrecht University
  • Géosciences Rennes
  • Southern University of Science and Technology
  • The University of Hong Kong
  • Beijing Normal University
  • Xi'an University of Science and Technology
  • Shanxi Normal University

Research output: Contribution to journalReview articlepeer-review

63 Scopus citations

Abstract

Global climate shifted to markedly warmer interglacial conditions across the “mid-Brunhes transition” (MBT, ~400 ka). However, a global MBT synthesis that spans marine and terrestrial evidence remains elusive, which limits our understanding of the role of the MBT in mid-Pleistocene human evolution. We synthesize Asian precipitation reconstructions within a context of global palaeoclimatic records and find that the MBT occurred in two stages. First, stronger warming of northern hemisphere continents, weaker southern hemisphere warming, and related more extensive northward displacement of the intertropical convergence zone (ITCZ) during interglacial marine isotope stage (MIS) 13 intensified and expanded precipitation in Asian monsoon regions and in other widespread northern hemisphere regions, with accompanying carbon reservoir changes featuring globally high marine benthic δ13C values because of vegetation expansion at ~500 ka. Subdued southern hemisphere warming and northward ITCZ displacement decreased southern hemisphere precipitation simultaneously during MIS 13. Second, a shift to globally warmer interglacials at ~400 ka, with elevated atmospheric CO2 concentrations, smaller ice volume, and higher sea level resulted in sustained high interglacial precipitation in East Asia from MIS 11 onward and sustained high marine benthic δ13C values during MIS 11. We also synthesize palaeoanthropological data and find that the climate and ecosystem changes across the MBT coincided with the timing of human lineage diversification, including the emergence of Neanderthals and Denisovans in Eurasia and Homo sapiens in Africa, and their potential coexistence with H. heidelbergensis, H. erectus, H. floresiensis, H. naledi, and other Homo archaics. The timing of the MBT also coincided with novel hominin behavioural developments, including fire control and the transition from handaxe industries to more versatile Levallois techniques. Combined with environmental theories of human evolution, this chronological coincidence suggests a potential link between mid-Pleistocene environmental changes and human evolution.

Original languageEnglish
Article number103354
JournalEarth-Science Reviews
Volume210
DOIs
StatePublished - Nov 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 14 - Life Below Water
    SDG 14 Life Below Water
  3. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • Chinese Loess Plateau
  • Human evolution
  • Interglacial climates
  • Mid-Brunhes transition
  • Middle Pleistocene climate variability
  • Monsoon
  • Precipitation

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