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Metabolic systems analysis to advance algal biotechnology
Author(s) -
Schmidt Brian J.,
LinSchmidt Xiefan,
Chamberlin Austin,
SalehiAshtiani Kourosh,
Papin Jason A.
Publication year - 2010
Publication title -
biotechnology journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.144
H-Index - 84
eISSN - 1860-7314
pISSN - 1860-6768
DOI - 10.1002/biot.201000129
Subject(s) - biochemical engineering , biofuel , metabolic network , metabolic engineering , algae fuel , microbiology and biotechnology , organism , computer science , biology , engineering , computational biology , paleontology , biochemistry , biodiesel , enzyme , catalysis
Algal fuel sources promise unsurpassed yields in a carbon neutral manner that minimizes resource competition between agriculture and fuel crops. Many challenges must be addressed before algal biofuels can be accepted as a component of the fossil fuel replacement strategy. One significant challenge is that the cost of algal fuel production must become competitive with existing fuel alternatives. Algal biofuel production presents the opportunity to fine‐tune microbial metabolic machinery for an optimal blend of biomass constituents and desired fuel molecules. Genome‐scale model‐driven algal metabolic design promises to facilitate both goals by directing the utilization of metabolites in the complex, interconnected metabolic networks to optimize production of the compounds of interest. Network analysis can direct microbial development efforts towards successful strategies and enable quantitative fine‐tuning of the network for optimal product yields while maintaining the robustness of the production microbe. Metabolic modeling yields insights into microbial function, guides experiments by generating testable hypotheses, and enables the refinement of knowledge on the specific organism. While the application of such analytical approaches to algal systems is limited to date, metabolic network analysis can improve understanding of algal metabolic systems and play an important role in expediting the adoption of new biofuel technologies.
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