Related Experiment Video
Updated: Jun 22, 2026

High-Throughput Metabolic Profiling for Model Refinements of Microalgae
Published on: December 4, 2021
Capturing the essence of a metabolic network: a flux balance analysis approach
Ettore Murabito1, Evangelos Simeonidis, Kieran Smallbone
1Doctoral Training Centre Integrative Systems Biology from Molecules to Life, Manchester Interdisciplinary Biocentre, The University of Manchester, Manchester M1 7DN, UK. ettore.murabito@postgrad.manchester.ac.uk
Abstract:
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be increasingly important. Flux balance analysis (FBA) is a constraint-based approach widely used to study the metabolic capabilities of cellular or subcellular systems. FBA problems are highly underdetermined and many different phenotypes can satisfy any set of constraints through which the metabolic system is represented. Two of the main concerns in FBA are exploring the space of solutions for a given metabolic network and finding a specific phenotype which is representative for a given task such as maximal growth rate. Here, we introduce a recursive algorithm suitable for overcoming both of these concerns. The method proposed is able to find the alternate optimal patterns of active reactions of an FBA problem and identify the minimal subnetwork able to perform a specific task as optimally as the whole. Our method represents an alternative to and an extension of other approaches conceived for exploring the space of solutions of an FBA problem. It may also be particularly helpful in defining a scaffold of reactions upon which to build up a dynamic model, when the important pathways of the system have not yet been well-defined.
Related Concept Videos
Introduction to Metabolism
Overview of Metabolism
Plant Metabolism
Sunlight, the primary source of energy in plants, is first absorbed by the chlorophyll pigments present in their leaves. Plants then use this energy to carry out photosynthesis, where water is oxidized into oxygen and carbon dioxide...
Metabolic States of the Body: The Absorptive State
Operon Model
Metabolism of Chemolithotrophs
Non-equilibrium in the Cell

