Temperature-dependent hypoxia explains biogeography and severity of end-Permian marine mass extinction.
basic_science · Level V
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- Record sourced from PubMed, PMID 30523082.
- Also identified by DOI 10.1126/science.aat1327.
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Abstract
Rapid climate change at the end of the Permian Period (~252 million years ago) is the hypothesized trigger for the largest mass extinction in Earth's history. We present model simulations of the Permian/Triassic climate transition that reproduce the ocean warming and oxygen (O<sub>2</sub>) loss indicated by the geologic record. The effect of these changes on animal survival is evaluated using the Metabolic Index (Φ), a measure of scope for aerobic activity governed by organismal traits sampled in diverse modern species. Modeled loss of aerobic habitat predicts lower extinction intensity in the tropics, a pattern confirmed with a spatially explicit analysis of the marine fossil record. The combined physiological stresses of ocean warming and O<sub>2</sub> loss can account for more than half the magnitude of the "Great Dying."
Medical subject headings
- Aquatic Organisms
- Climate Change
- Extinction, Biological
- Greenhouse Effect
- Oxygen