C4 photosynthetic pathway fluxes in transgenic rice plants
Most land plants photosynthesize using the C3 pathway, in which ribulose bisphosphate carboxylase/oxygenase (Rubisco) fixes CO2 into 3-carbon acids. The C4 pathway, a biochemical CO2-concentrating mechanism that operates in the context of specialized leaf anatomy to concentrate CO2 around Rubisco, is more efficient. Introduction of the C4 pathway into the C3 crop rice could increase yield by 50%. Expression of five C4 enzymes in transgenic rice previously led to flux through the first step. However, there was no evidence for flux later in the cycle. Here we developed new transgenic rice lines and novel protocols to detect C4 cycle activity: CO2 fixation into C4 acids by carboxylation of a C3 compound, decarboxylation, refixation of CO2 by Rubisco, and regeneration of the C3 donor. We demonstrate that these four core C4 reactions are operating in rice, establishing the in vivo flux framework needed to progress towards a functional carbon-concentrating mechanism