Decoding microbial metabolism is of great importance in revealing the mechanisms governing the physiology of microbes and rewiring the cellular functions in metabolic engineering. Complementing the genomics, transcriptomics, proteinomics and metabolomics analysis of microbial metabolism, fluxomics tools can measure and simulate the in vivo enzymatic reactions as direct readouts of microbial metabolism. This dissertation develops and applies broad-scope tools in metabolic flux analysis to investigate metabolic insights of non-model environmental microorganisms. 13C-based pathway analysis has been applied to analyze specific carbon metabolic routes by tracing and analyzing isotopomer labeling patterns of different metabolites after growing ce...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Metabolic engineering endeavors seek to develop microorganisms as feedstocks for biofuels and commod...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2006.Includes...
Flux analysis techniques, including flux balance analysis (FBA) and 13C-metabolic flux analysis (MFA...
Metabolic engineering of various industrial microorganisms to produce chemicals, fuels, and drugs ha...
Metabolic flux analysis (MFA) quantitatively describes cellular fluxes to understand metabolic pheno...
Metabolic flux analysis (MFA) quantitatively describes cellular fluxes to understand metabolic pheno...
The determination of fluxes is an important parameter to define the extent to which enzymes particip...
Antoniewicz, Maciek R.13C-Metabolic flux analysis (13C-MFA) is a powerful tool for characterizing me...
The central metabolic fluxes of Shewanella oneidensis MR-1were examined under carbon-limited (aerobi...
Fluxomics is an innovative -omics research field that measures the rates of all intracellular fluxes...
All bioconversions in cells derive from metabolism. Microbial metabolisms contain potential for bioc...
We explored the metabolic pathways in two industrially relevant marine microorganisms to understand ...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
The growing energy demand coupled with the rising climate crisis warrant a need for greener and sust...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Metabolic engineering endeavors seek to develop microorganisms as feedstocks for biofuels and commod...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2006.Includes...
Flux analysis techniques, including flux balance analysis (FBA) and 13C-metabolic flux analysis (MFA...
Metabolic engineering of various industrial microorganisms to produce chemicals, fuels, and drugs ha...
Metabolic flux analysis (MFA) quantitatively describes cellular fluxes to understand metabolic pheno...
Metabolic flux analysis (MFA) quantitatively describes cellular fluxes to understand metabolic pheno...
The determination of fluxes is an important parameter to define the extent to which enzymes particip...
Antoniewicz, Maciek R.13C-Metabolic flux analysis (13C-MFA) is a powerful tool for characterizing me...
The central metabolic fluxes of Shewanella oneidensis MR-1were examined under carbon-limited (aerobi...
Fluxomics is an innovative -omics research field that measures the rates of all intracellular fluxes...
All bioconversions in cells derive from metabolism. Microbial metabolisms contain potential for bioc...
We explored the metabolic pathways in two industrially relevant marine microorganisms to understand ...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
The growing energy demand coupled with the rising climate crisis warrant a need for greener and sust...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Metabolic engineering endeavors seek to develop microorganisms as feedstocks for biofuels and commod...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2006.Includes...