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Effects of rapid global warming at the paleocene-eocene boundary on neotropical vegetation

  • Carlos Jaramillo
  • , Diana Ochoa
  • , Lineth Contreras
  • , Mark Pagani
  • , Humberto Carvajal-Ortiz
  • , Lisa M. Pratt
  • , Srinath Krishnan
  • , Agustin Cardona
  • , Millerlandy Romero
  • , Luis Quiroz
  • , Guillermo Rodriguez
  • , Milton J. Rueda
  • , Felipe De La Parra
  • , Sara Morón
  • , Walton Green
  • , German Bayona
  • , Camilo Montes
  • , Oscar Quintero
  • , Rafael Ramirez
  • , Germán Mora
  • Stefan Schouten, Hermann Bermudez, Rosa Navarrete, Francisco Parra, Mauricio Alvarán, Jose Osorno, James L. Crowley, Victor Valencia, Jeff Vervoort
  • Smithsonian Tropical Research Institute
  • East Tennessee State University
  • Ecopetrol
  • Goethe University
  • Yale University
  • Indiana University Bloomington
  • University of Saskatchewan
  • Missouri University of Science and Technology
  • University of Minnesota
  • Corporación Geológica ARES
  • PDVSA
  • Goucher College
  • NIOZ Royal Netherlands Institute for Sea Research
  • Universidad de Caldas
  • Paleosedes E.U.
  • Université de Toulouse
  • Agencia Nacional de Hidrocarburos
  • Boise State University
  • Valencia Geoservices
  • Washington State University Pullman

Research output: Contribution to journalArticlepeer-review

281 Scopus citations

Abstract

Temperatures in tropical regions are estimated to have increased by 3° to 5°C, compared with Late Paleocene values, during the Paleocene-Eocene Thermal Maximum (PETM, 56.3 million years ago) event. We investigated the tropical forest response to this rapid warming by evaluating the palynological record of three stratigraphic sections in eastern Colombia and western Venezuela. We observed a rapid and distinct increase in plant diversity and origination rates, with a set of new taxa, mostly angiosperms, added to the existing stock of low-diversity Paleocene flora. There is no evidence for enhanced aridity in the northern Neotropics. The tropical rainforest was able to persist under elevated temperatures and high levels of atmospheric carbon dioxide, in contrast to speculations that tropical ecosystems were severely compromised by heat stress.

Original languageEnglish
Pages (from-to)957-961
Number of pages5
JournalScience
Volume330
Issue number6006
DOIs
StatePublished - 12 Nov 2010
Externally publishedYes

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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