Low atmospheric CO<sub>2</sub> levels before the rise of forested ecosystems.

Dahl, Tais W; Harding, Magnus A R; Brugger, Julia; Feulner, Georg; Norrman, Kion; Lomax, Barry H; Junium, Christopher K · Nat Commun · 2022

basic_science · Level V

Where this comes from

Abstract

The emergence of forests on Earth (~385 million years ago, Ma)<sup>1</sup> has been linked to an order-of-magnitude decline in atmospheric CO<sub>2</sub> levels and global climatic cooling by altering continental weathering processes, but observational constraints on atmospheric CO<sub>2</sub> before the rise of forests carry large, often unbound, uncertainties. Here, we calibrate a mechanistic model for gas exchange in modern lycophytes and constrain atmospheric CO<sub>2</sub> levels 410-380 Ma from related fossilized plants with bound uncertainties of approximately ±100 ppm (1 sd). We find that the atmosphere contained ~525-715 ppm CO<sub>2</sub> before continents were afforested, and that Earth was partially glaciated according to a palaeoclimate model. A process-driven biogeochemical model (COPSE) shows the appearance of trees with deep roots did not dramatically enhance atmospheric CO<sub>2</sub> removal. Rather, shallow-rooted vascular ecosystems could have simultaneously caused abrupt atmospheric oxygenation and climatic cooling long before the rise of forests, although earlier CO<sub>2</sub> levels are still unknown.

Medical subject headings