bioRxiv · 10.1101/2024.10.16.618214
Alternatives to photorespiration: A systems-level analysis reveals mechanisms of enhanced plant productivity
Abstract
Photorespiration causes a significant decrease in crop yield due to mitochondrial decarboxylation. Alternative pathways (APs) have been designed to relocate the decarboxylating step or even fix additional carbon. To improve the success of transferring those engineered APs from model species to crops we must understand how they will interact with metabolism and how the plant physiology affects their performance. Here we used multiple mathematical modelling techniques to analyse and compare existing AP designs. We show that carbon-fixing APs are the most promising candidates to replace native photorespiration in major crop species. Our results demonstrate the different metabolic routes that APs employ to increase yield and which plant physiology can profit most from them. We anticipate our results to guide the design of new APs and to help improve existing ones. Codehttps://gitlab.com/gain4crops/2024-paper
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Smith, E. N., van Aalst, M., Weber, A. P. M., Ebenhoeh, O., Heinemann, M.. 2024-10-17. Alternatives to photorespiration: A systems-level analysis reveals mechanisms of enhanced plant productivity. https://doi.org/10.1101/2024.10.16.618214
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