Extreme variability in atmospheric oxygen levels in the late Precambrian.

Krause, Alexander J; Mills, Benjamin J W; Merdith, Andrew S; Lenton, Timothy M; Poulton, Simon W · Sci Adv · 2022

basic_science · Level V

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Abstract

Mapping the history of atmospheric O<sub>2</sub> during the late Precambrian is vital for evaluating potential links to animal evolution. Ancient O<sub>2</sub> levels are often inferred from geochemical analyses of marine sediments, leading to the assumption that the Earth experienced a stepwise increase in atmospheric O<sub>2</sub> during the Neoproterozoic. However, the nature of this hypothesized oxygenation event remains unknown, with suggestions of a more dynamic O<sub>2</sub> history in the oceans and major uncertainty over any direct connection between the marine realm and atmospheric O<sub>2</sub>. Here, we present a continuous quantitative reconstruction of atmospheric O<sub>2</sub> over the past 1.5 billion years using an isotope mass balance approach that combines bulk geochemistry and tectonic recycling rate calculations. We predict that atmospheric O<sub>2</sub> levels during the Neoproterozoic oscillated between ~1 and ~50% of the present atmospheric level. We conclude that there was no simple unidirectional rise in atmospheric O<sub>2</sub> during the Neoproterozoic, and the first animals evolved against a backdrop of extreme O<sub>2</sub> variability.