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MetaCarto: biologically faithful automatic layout for genome-scale metabolic maps

T. Wu

PreprintCode available

In the authors' words

Motivation: Genome-scale metabolic reconstructions containing thousands of reactions are now curated and published for many organisms, but their visualization still relies heavily on manually constructed pathway maps. As these models grow in size and number, an automatic method is needed to organize their reactions into readable maps for visualization and downstream analysis.\Results: We developed \mytool, an automatic layout framework for genome-scale metabolic maps. \mytool identifies a biologically meaningful primary connection for each reaction and then organizes these connections into readable pathway-scale layouts, separating the biological representation of a reaction from its geometric placement. The resulting maps show strong agreement with curated KEGG pathway representations while maintaining geometric quality comparable to established graph-layout approaches. We applied \mytool to all 108 BiGG models and generated 2621 pathway maps without manual rearrangement. As a large-scale example, the human Recon3D reconstruction, containing 10 600 reactions, was automatically decomposed into 93 maps and laid out in 107 s. The generated maps are exported as Escher-compatible JSON and SVG files and can be directly browsed, edited, and used for metabolic data visualization.\Availability and implementation: Source code is available under CC BY 4.0 at \href{https://github.com/forxhunter/MetaCarto} {github.com/forxhunter/MetaCarto}. The complete collection of generated maps is available at \href{https://github.com/forxhunter/Awesome_visualization_Metabolic_Network} {GitHub map collection} and can be browsed interactively at \href{https://forxhunter.github.io/escher/} {forxhunter.github.io/escher}.\Contact: \href{mailto:tianyu16@illinois.edu}{tianyu16@illinois.edu}\Supplementary information: Supplementary data are available at \href{https://github.com/forxhunter/MetaCarto} {github.com/forxhunter/MetaCarto}.

Main resultThe abstract does not state a limitation.

Appeared: Friday, September 25. bioRxiv. Preprint, not yet peer-reviewed.

DOI: 10.64898/2026.09.19.752882