Search bioRxiv⌕ Search

Biology subjects

Orr, D. J.

Publications and source records attributed to Orr, D. J..

2 recordsLinked to original sources

Rubisco Dark Inhibition in Angiosperms Shows a Complex Distribution Pattern

Crop yields can be improved through making photosynthesis more efficient. The regulation of the CO2-fixing enzyme Rubisco during fluctuating light conditions limits productivity and is a target for improvement. Regulation in low light and darkness by accumulation of Rubisco inhibitors, predominantly via 2-carboxy-d-arabinitol 1-phosphate, has been known for over 4 decades but an explanation is still lacking for its physiological role and high variability across species. We compiled all published data for dark inhibition of Rubisco in flowering plants and investigated phylogenetic trends. Literature data for 157 species across 14 orders was compared and standardised, categorised into four dark inhibition levels, and analysed in the context of current phylogenetic information. We created a novel resource for Rubisco dark inhibition across flowering plants, highlighting clear gaps and biases in the available data, while also raising further questions on the evolution of this trait. Our work supports better understanding of the enigmatic process of photosynthetic regulation by Rubisco dark and low light inhibition and informs future efforts in enhancing photosynthesis in crops. HighlightCompilation and analysis of all available data on Rubisco dark inhibition from literature to date showed a complex distribution of levels of inhibition of the CO2 fixing enzyme in flowering plants. Such a distribution suggests there may be chloroplast microenvironment drivers for low vs. high Rubisco inhibition.

plant biology↗

Two cowpea Rubisco activase isoforms for crop thermotolerance

O_LIA vital crop for sub-Saharan Africa, cowpea productivity is threatened by climate change, including increased heatwave intensity, duration, and frequency. Rubisco activase (Rca) is a key molecular chaperone that maintains Rubisco activity and due to its thermal sensitivity is a key target for improving crop climate resilience. C_LIO_LIWe identified and characterised four Rca isoforms in Vigna unguiculata (L.) Walp. cv. IT97K-499-35 in vitro: Rca1{beta}, Rca8, Rca10 and Rca10{beta}. Cowpea leaf and plant growth traits were also investigated during a 5-day +10 {degrees}C heatwave that included assessment of Rubisco and Rca activity in leaf extracts, and relative changes in the abundance of the four Rca isoforms. C_LIO_LICowpea Rca10 and Rca10{beta} had higher thermal maxima, broader thermal optima and higher rates of ATP hydrolysis and Rubisco reactivation in vitro. In the absence of water deficit, the heatwave caused only mild effects, including increases in leaf temperature and expression of Rca10, small decreases in Rubisco activity and activation state, and unaltered temperature response of Rubisco activation by Rca. C_LIO_LIThe superior Rca10 and Rca10{beta} isoforms offer the prospect of enhancing the thermotolerance of cowpea and other crops in anticipation of more extreme future heatwaves. C_LI

plant biology↗