C<sub>4</sub> photosynthesis and climate through the lens of optimality.

Zhou, Haoran; Helliker, Brent R; Huber, Matthew; Dicks, Ashley; Akçay, Erol · Proc Natl Acad Sci U S A · 2018

basic_science · Level V

Where this comes from

Abstract

CO<sub>2</sub>, temperature, water availability, and light intensity were all potential selective pressures that determined the competitive advantage and expansion of the C<sub>4</sub> photosynthetic carbon-concentrating mechanism over the last ∼30 My. To tease apart how selective pressures varied along the ecological trajectory of C<sub>4</sub> expansion and dominance, we coupled hydraulics to photosynthesis models while optimizing photosynthesis over stomatal resistance and leaf/fine-root allocation. We further examined the importance of nitrogen reallocation from the dark to the light reactions. We show here that the primary selective pressures favoring C<sub>4</sub> dominance changed through the course of C<sub>4</sub> evolution. The higher stomatal resistance and leaf-to-root ratios enabled by C<sub>4</sub> led to an advantage without any initial difference in hydraulic properties. We further predict a reorganization of the hydraulic system leading to higher turgor-loss points and possibly lower hydraulic conductance. Selection on nitrogen reallocation varied with CO<sub>2</sub> concentration. Through paleoclimate model simulations, we find that water limitation was the primary driver for a C<sub>4</sub> advantage, with atmospheric CO<sub>2</sub> as high as 600 ppm, thus confirming molecular-based estimates for C<sub>4</sub> evolution in the Oligocene. Under these high-CO<sub>2</sub> conditions, nitrogen reallocation was necessary. Low CO<sub>2</sub> and high light, but not nitrogen reallocation, were the primary drivers for the mid- to late-Miocene global expansion of C<sub>4</sub> We also predicted the timing and spatial distribution for origins of C<sub>4</sub> ecological dominance. The predicted origins are broadly consistent with prior estimates, but expand upon them to include a center of origin in northwest Africa and a Miocene-long origin in Australia.

Medical subject headings