Flux analysis and metabolomics for systematic metabolic engineering of microorganisms

Biotechnol Adv. 2013 Nov;31(6):818-26. doi: 10.1016/j.biotechadv.2013.05.002. Epub 2013 May 13.

Abstract

Rational engineering of metabolism is important for bio-production using microorganisms. Metabolic design based on in silico simulations and experimental validation of the metabolic state in the engineered strain helps in accomplishing systematic metabolic engineering. Flux balance analysis (FBA) is a method for the prediction of metabolic phenotype, and many applications have been developed using FBA to design metabolic networks. Elementary mode analysis (EMA) and ensemble modeling techniques are also useful tools for in silico strain design. The metabolome and flux distribution of the metabolic pathways enable us to evaluate the metabolic state and provide useful clues to improve target productivity. Here, we reviewed several computational applications for metabolic engineering by using genome-scale metabolic models of microorganisms. We also discussed the recent progress made in the field of metabolomics and (13)C-metabolic flux analysis techniques, and reviewed these applications pertaining to bio-production development. Because these in silico or experimental approaches have their respective advantages and disadvantages, the combined usage of these methods is complementary and effective for metabolic engineering.

Keywords: (13)C-metabolic flux analysis; Elementary mode analysis; Flux balance analysis; Metabolic engineering; Metabolomics; Microorganism.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Algorithms
  • Computational Biology*
  • Genome, Bacterial
  • Humans
  • Metabolic Engineering*
  • Metabolic Networks and Pathways / genetics*
  • Metabolomics*
  • Software
  • Systems Biology