Bactabolize is a tool for high-throughput generation of bacterial strain-specific metabolic models

Loading...
Thumbnail Image
File version

Version of Record (VoR)

Author(s)
Vezina, Ben
Watts, Stephen C
Hawkey, Jane
Cooper, Helena B
Judd, Louise M
Jenney, Adam WJ
Monk, Jonathan M
Holt, Kathryn E
Wyres, Kelly L
Griffith University Author(s)
Primary Supervisor
Other Supervisors
Editor(s)
Date
2023
Size
File type(s)
Location
Abstract

Metabolic capacity can vary substantially within a bacterial species, leading to ecological niche separation, as well as differences in virulence and antimicrobial susceptibility. Genome-scale metabolic models are useful tools for studying the metabolic potential of individuals, and with the rapid expansion of genomic sequencing there is a wealth of data that can be leveraged for comparative analysis. However, there exist few tools to construct strain-specific metabolic models at scale. Here, we describe Bactabolize, a reference-based tool which rapidly produces strain-specific metabolic models and growth phenotype predictions. We describe a pan reference model for the priority antimicrobial-resistant pathogen, Klebsiella pneumoniae, and a quality control framework for using draft genome assemblies as input for Bactabolize. The Bactabolize-derived model for K. pneumoniae reference strain KPPR1 performed comparatively or better than currently available automated approaches CarveMe and gapseq across 507 substrate and 2317 knockout mutant growth predictions. Novel draft genomes passing our systematically defined quality control criteria resulted in models with a high degree of completeness (≥99% genes and reactions captured compared to models derived from matched complete genomes) and high accuracy (mean 0.97, n=10). We anticipate the tools and framework described herein will facilitate large-scale metabolic modelling analyses that broaden our understanding of diversity within bacterial species and inform novel control strategies for priority pathogens.

Journal Title

eLife

Conference Title
Book Title
Edition
Volume

12

Issue
Thesis Type
Degree Program
School
Publisher link
Patent number
Funder(s)
Grant identifier(s)
Rights Statement
Rights Statement

© 2023, Vezina, Watts et al. This article is distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use and redistribution provided that the original author and source are credited.

Item Access Status
Note
Access the data
Related item(s)
Subject

Biological sciences

Biomedical and clinical sciences

Health sciences

Persistent link to this record
Citation

Vezina, B; Watts, SC; Hawkey, J; Cooper, HB; Judd, LM; Jenney, AWJ; Monk, JM; Holt, KE; Wyres, KL, Bactabolize is a tool for high-throughput generation of bacterial strain-specific metabolic models, eLife, 12, pp. RP87406

Collections