zea mays irs1563 a comprehensive genome-scale metabolic reconstruction of maize metabolism玉蜀黍irs1563公司综合代谢重建玉米新陈代谢.pdfVIP
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zea mays irs1563 a comprehensive genome-scale metabolic reconstruction of maize metabolism玉蜀黍irs1563公司综合代谢重建玉米新陈代谢
Zea mays i RS1563: A Comprehensive Genome-Scale Metabolic Reconstruction of Maize Metabolism Rajib Saha, Patrick F. Suthers, Costas D. Maranas* Department of Chemical Engineering, The Pennsylvania State University, University Park, Pennsylvania, United States of America Abstract The scope and breadth of genome-scale metabolic reconstructions have continued to expand over the last decade. Herein, we introduce a genome-scale model for a plant with direct applications to food and bioenergy production (i.e., maize). Maize annotation is still underway, which introduces significant challenges in the association of metabolic functions to genes. The developed model is designed to meet rigorous standards on gene-protein-reaction (GPR) associations, elementally and charged balanced reactions and a biomass reaction abstracting the relative contribution of all biomass constituents. The metabolic network contains 1,563 genes and 1,825 metabolites involved in 1,985 reactions from primary and secondary maize metabolism. For approximately 42% of the reactions direct literature evidence for the participation of the reaction in maize was found. As many as 445 reactions and 369 metabolites are unique to the maize model compared to the AraGEM model for A. thaliana. 674 metabolites and 893 reactions are present in Zea mays i RS1563 that are not accounted for in maize C4GEM. All reactions are elementally and charged balanced and localized into six different compartments (i.e., cytoplasm, mitochondrion, plastid, peroxisome, vacuole and extracellular). GPR associations are also established based on the functional annotation information and homology prediction accounting for monofunctional, multifunctional and multimeric protei
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