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A 90,000-year record of Afromontane forest responses to climate change.

Anne-Marie LézineKenji IzumiMasa KageyamaGaston Achoundong
Published in: Science (New York, N.Y.) (2019)
Pollen records from African highlands are scarce; hence, the paleoecology of the Afromontane forest and its responses to glacial cycles are poorly known. Lake Bambili (Cameroon) provides a record of vegetation changes in the tropical mountains of Africa over the past 90,000 years, with high temporal resolution. Pollen data and biome reconstructions show a diverging response of forests to climate changes; the upper tree line was extremely unstable, shifting substantially in response to glacial-interglacial climate alternation, whereas the transition between the montane and lowland forests remained remarkably stable. Such ecological instability may have had a critical influence on species richness in the Afromontane forests.
Keyphrases
  • climate change
  • human health
  • electronic health record
  • big data
  • computed tomography
  • data analysis
  • genetic diversity
  • contrast enhanced