Chemical and fuel production by photosynthetic cyanobacteria is a promising technology but to date has not reached competitive rates and titers. Genome-scale metabolic modeling can reveal limitations in cyanobacteria metabolism and guide genetic engineering strategies to increase chemical production. Here, we used constraint-based modeling and optimization algorithms on a genome-scale model of Synechocystis PCC6803 to find ways to improve productivity of fermentative, fatty-acid, and terpene-derived fuels. OptGene and MOMA were used to find heuristics for knockout strategies that could increase biofuel productivity. OptKnock was used to find a set of knockouts that led to coupling between biofuel and growth. Our results show that high produ...
In the last few decades, concerns over global climate change, energy security, and environmental pol...
In the last few decades, concerns over global climate change, energy security, and environmental pol...
In this work, we propose a genomic scale metabolic network model of the genetically engineered Synec...
Flux Balance Analysis was performed with the Genome Scale Metabolic Model of a fast growing cyanobac...
<p>This thesis is focused on the construction and uses of genome-scale metabolic models to efficient...
Cyanobacteria have potential to produce drop-in bio-fuels such as ethanol via photoautotrophic metab...
Cyanobacteria are a promising biological chassis for the synthesis of renewable fuels and chemical b...
The environmental consequences associated with the use of fossil-sourced fuels and chemicals have br...
The environmental consequences associated with the use of fossil-sourced fuels and chemicals have br...
The environmental consequences associated with the use of fossil-sourced fuels and chemicals have br...
Cyanobacteria have been considered as promising candidates for sustainable bioproduction from inexpe...
peer-reviewedPhotoautotrophic ethanol production using model cyanobacteria is an attractive technolo...
Bio-based production of biochemicals and biofuels holds great promises for the transition towards a ...
The current investigation is aimed at the reconstruction and analysis of genome-scale metabolic mode...
Photoautotrophic ethanol production using model cyanobacteria is an attractive technology that offer...
In the last few decades, concerns over global climate change, energy security, and environmental pol...
In the last few decades, concerns over global climate change, energy security, and environmental pol...
In this work, we propose a genomic scale metabolic network model of the genetically engineered Synec...
Flux Balance Analysis was performed with the Genome Scale Metabolic Model of a fast growing cyanobac...
<p>This thesis is focused on the construction and uses of genome-scale metabolic models to efficient...
Cyanobacteria have potential to produce drop-in bio-fuels such as ethanol via photoautotrophic metab...
Cyanobacteria are a promising biological chassis for the synthesis of renewable fuels and chemical b...
The environmental consequences associated with the use of fossil-sourced fuels and chemicals have br...
The environmental consequences associated with the use of fossil-sourced fuels and chemicals have br...
The environmental consequences associated with the use of fossil-sourced fuels and chemicals have br...
Cyanobacteria have been considered as promising candidates for sustainable bioproduction from inexpe...
peer-reviewedPhotoautotrophic ethanol production using model cyanobacteria is an attractive technolo...
Bio-based production of biochemicals and biofuels holds great promises for the transition towards a ...
The current investigation is aimed at the reconstruction and analysis of genome-scale metabolic mode...
Photoautotrophic ethanol production using model cyanobacteria is an attractive technology that offer...
In the last few decades, concerns over global climate change, energy security, and environmental pol...
In the last few decades, concerns over global climate change, energy security, and environmental pol...
In this work, we propose a genomic scale metabolic network model of the genetically engineered Synec...