Advances in metabolic modeling of oleaginous microalgae

被引:0
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作者
Juan D. Tibocha-Bonilla
Cristal Zuñiga
Rubén D. Godoy-Silva
Karsten Zengler
机构
[1] Universidad Nacional de Colombia,Grupo de Investigación en Procesos Químicos y Bioquímicos, Departamento de Ingeniería Química y Ambiental
[2] University of California,Department of Pediatrics
[3] San Diego,Department of Bioengineering
[4] University of California,Center for Microbiome Innovation
[5] San Diego,undefined
[6] University of California,undefined
[7] San Diego,undefined
来源
Biotechnology for Biofuels | / 11卷
关键词
Oleaginous phototrophs; Lipid production; Constraint-based metabolic modeling; Central carbon metabolism;
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中图分类号
学科分类号
摘要
Production of biofuels and bioenergy precursors by phototrophic microorganisms, such as microalgae and cyanobacteria, is a promising alternative to conventional fuels obtained from non-renewable resources. Several species of microalgae have been investigated as potential candidates for the production of biofuels, for the most part due to their exceptional metabolic capability to accumulate large quantities of lipids. Constraint-based modeling, a systems biology approach that accurately predicts the metabolic phenotype of phototrophs, has been deployed to identify suitable culture conditions as well as to explore genetic enhancement strategies for bioproduction. Core metabolic models were employed to gain insight into the central carbon metabolism in photosynthetic microorganisms. More recently, comprehensive genome-scale models, including organelle-specific information at high resolution, have been developed to gain new insight into the metabolism of phototrophic cell factories. Here, we review the current state of the art of constraint-based modeling and computational method development and discuss how advanced models led to increased prediction accuracy and thus improved lipid production in microalgae.
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