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A multimillennial climatic context for the megafaunal extinctions in Madagascar and Mascarene Islands

  • Hanying Li
  • , Ashish Sinha
  • , Aurèle Anquetil André
  • , Christoph Spötl
  • , Hubert B. Vonhof
  • , Arnaud Meunier
  • , Gayatri Kathayat
  • , Pengzhen Duan
  • , Ny Riavo G. Voarintsoa
  • , Youfeng Ning
  • , Jayant Biswas
  • , Peng Hu
  • , Xianglei Li
  • , Lijuan Sha
  • , Jingyao Zhao
  • , R. Lawrence Edwards
  • , Hai Cheng
  • Xi'an Jiaotong University
  • California State University Dominguez Hills
  • François Leguat Giant Tortoise and Cave Reserve
  • University of Innsbruck
  • Max Planck Institute for Chemistry
  • KU Leuven
  • National Cave Research and Protection Organization
  • CAS - Institute of Atmospheric Physics
  • University of Chinese Academy of Sciences
  • University of Minnesota Twin Cities

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

Madagascar and the Mascarene Islands of Mauritius and Rodrigues underwent catastrophic ecological and landscape transformations, which virtually eliminated their entire endemic vertebrate megafauna during the past millennium. These ecosystem changes have been alternately attributed to either human activities, climate change, or both, but parsing their relative importance, particularly in the case of Madagascar, has proven difficult. Here, we present a multimillennial (approximately the past 8000 years) reconstruction of the southwest Indian Ocean hydroclimate variability using speleothems from the island of Rodrigues, located ∼1600 km east of Madagascar. The record shows a recurring pattern of hydroclimate variability characterized by submillennial-scale drying trends, which were punctuated by decadal-to-multidecadal megadroughts, including during the late Holocene. Our data imply that the megafauna of the Mascarenes and Madagascar were resilient, enduring repeated past episodes of severe climate stress, but collapsed when a major increase in human activity occurred in the context of a prominent drying trend.

Original languageEnglish
Article numbereabb2459
JournalScience Advances
Volume6
Issue number42
DOIs
StatePublished - Oct 2020

UN SDGs

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

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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