Climate & Environmentarticle2026-08-13

Forest canopy decline under elevated CO 2 during the Paleocene-Eocene Thermal Maximum

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Abstract

Uncertainty remains regarding the impact of rapid anthropogenic warming on forest ecosystem structure, biodiversity, and function. As an analog, we reconstruct forest canopy density and compositional change in Wyoming, USA, through the Paleocene-Eocene Thermal Maximum (PETM), an interval of abrupt carbon increase and warming ~56 million years ago. We develop a proxy to quantify leaf area index and assess shifts in floral composition using palynomorphs. Forest canopies opened abruptly at onset of PETM warming, landscape erosion increased, and vegetation shifted from broad-leaved angiosperm to fern- and palm-dominated ecosystems. When combined with regional data, these patterns suggest that continental-scale changes in plant communities cause landscape destabilization. These shifts also have implications for multimillennial-scale hydrologic and carbon cycle feedbacks in the climate system.

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View paper (DOI)OpenAlexSciencePublished 2026-08-13

Authors: Regan E. Dunn, Marieke Dechesne, Brady Z. Foreman, Keifer Nace, Jenna M. West, Ellen D. Currano

Institutions: University of Southern California, University of Wyoming, United States Geological Survey, Statewide California Earthquake Center, Natural History Museum of Los Angeles County, Western Washington University, Whitman College