Fossil Plants and Global Warming at the Triassic-Jurassic Boundary
Jennifer C. McElwain, David J. Beerling, F. I. Woodward
Abstract
Jennifer C. McElwain, David J. Beerling, F. I. Woodward
Abstract
The Triassic-Jurassic boundary marks a major faunal mass extinction, but records of accompanying environmental changes are limited. Paleobotanical evidence indicates a fourfold increase in atmospheric carbon dioxide concentration and suggests an associated 3 degrees to 4 degrees C "greenhouse" warming across the boundary. These environmental conditions are calculated to have raised leaf temperatures above a highly conserved lethal limit, perhaps contributing to the >95 percent species-level turnover of Triassic-Jurassic megaflora.
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The Triassic-Jurassic boundary marks a major faunal mass extinction, but records of accompanying environmental changes are limited. Paleobotanical evidence indicates a fourfold increase in atmospheric carbon dioxide concentration and suggests an associated 3 degrees to 4 degrees C "greenhouse" warming across the boundary. These environmental conditions are calculated to have raised leaf temperatures above a highly conserved lethal limit, perhaps contributing to the >95 percent species-level turnover of Triassic-Jurassic megaflora.
Key concepts: Extinction event, Extinction (optical mineralogy), Global warming, Paleontology, Carbon dioxide, Greenhouse gas, Boundary (topology), Ecology