Triple oxygen isotope evidence for limited mid-Proterozoic primary productivity.

Crockford, Peter W; Hayles, Justin A; Bao, Huiming; Planavsky, Noah J; Bekker, Andrey; Fralick, Philip W; Halverson, Galen P; Bui, Thi Hao et al. · Nature · 2018

basic_science · Level V

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Abstract

The global biosphere is commonly assumed to have been less productive before the rise of complex eukaryotic ecosystems than it is today<sup>1</sup>. However, direct evidence for this assertion is lacking. Here we present triple oxygen isotope measurements (∆<sup>17</sup>O) from sedimentary sulfates from the Sibley basin (Ontario, Canada) dated to about 1.4 billion years ago, which provide evidence for a less productive biosphere in the middle of the Proterozoic eon. We report what are, to our knowledge, the most-negative ∆<sup>17</sup>O values (down to -0.88‰) observed in sulfates, except for those from the terminal Cryogenian period<sup>2</sup>. This observation demonstrates that the mid-Proterozoic atmosphere was distinct from what persisted over approximately the past 0.5 billion years, directly reflecting a unique interplay among the atmospheric partial pressures of CO<sub>2</sub> and O<sub>2</sub> and the photosynthetic O<sub>2</sub> flux at this time<sup>3</sup>. Oxygenic gross primary productivity is stoichiometrically related to the photosynthetic O<sub>2</sub> flux to the atmosphere. Under current estimates of mid-Proterozoic atmospheric partial pressure of CO<sub>2</sub> (2-30 times that of pre-anthropogenic levels), our modelling indicates that gross primary productivity was between about 6% and 41% of pre-anthropogenic levels if atmospheric O<sub>2</sub> was between 0.1-1% or 1-10% of pre-anthropogenic levels, respectively. When compared to estimates of Archaean<sup>4-6</sup> and Phanerozoic primary production<sup>7</sup>, these model solutions show that an increasingly more productive biosphere accompanied the broad secular pattern of increasing atmospheric O<sub>2</sub> over geologic time<sup>8</sup>.

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