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Extreme ecosystem instability suppressed tropical dinosaur dominance for 30 million years

  • Jessica H. Whiteside
  • , Sofie Lindström
  • , Randall B. Irmis
  • , Ian J. Glasspool
  • , Morgan F. Schaller
  • , Maria Dunlavey
  • , Sterling J. Nesbitt
  • , Nathan D. Smith
  • , Alan H. Turner
  • University of Southampton
  • Geological Survey of Denmark and Greenland
  • Natural History Museum of Utah
  • University of Utah
  • Colby College
  • Field Museum of Natural History
  • Rensselaer Polytechnic Institute
  • Brown University
  • Virginia Polytechnic Institute and State University
  • Howard University
  • Natural History Museum of Los Angeles County

Research output: Contribution to journalArticlepeer-review

93 Scopus citations

Abstract

A major unresolved aspect of the rise of dinosaurs is why early dinosaurs and their relatives were rare and species-poor at low paleolatitudes throughout the Late Triassic Period, a pattern persisting 30 million years after their origin and 10-15 million years after they became abundant and speciose at higher latitudes. New palynological, wildfire, organic carbon isotope, and atmospheric pCO2data from early dinosaur-bearing strata of low paleolatitudes in western North America show that large, high-frequency, tightly correlated variations in δ13Corg and palynomorph ecotypes occurred within a context of elevated and increasing pCO2 and pervasive wildfires. Whereas pseudosuchian archosaur-dominated communities were able to persist in these same regions under rapidly fluctuating extreme climatic conditions until the end-Triassic, large-bodied, fast-growing tachymetabolic dinosaurian herbivores requiring greater resources were unable to adapt to unstable high CO2 environmental conditions of the Late Triassic.

Original languageEnglish
Pages (from-to)7909-7913
Number of pages5
JournalProceedings of the National Academy of Sciences of the United States of America
Volume112
Issue number26
DOIs
StatePublished - Jun 30 2015

Keywords

  • Atmospheric CO
  • Carbon cycling
  • Early mesozoic
  • Terrestrial ecosystems
  • Wildfires

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