Fatty acid-derived biofuels and biochemicals can be produced in microbes using β-oxidation pathway engineering. In this study, the β-oxidation pathway of Saccharomyces cerevisiae was engineered to accumulate a higher ratio of medium chain fatty acids (MCFAs) when cells were grown on fatty acid-rich feedstock. For this purpose, the haploid deletion strain Δpox1 was obtained, in which the sole acyl-CoA oxidase encoded by POX1 was deleted. Next, the POX2 gene from Yarrowia lipolytica, which encodes an acyl-CoA oxidase with a preference for long chain acyl-CoAs, was expressed in the Δpox1 strain. The resulting Δpox1 [pox2+] strain exhibited a growth defect because the β-oxidation pathway was blocked in peroxisomes. To unblock the β-oxidation pa...
Microbial production of fatty acid derived chemicals and fuels is currently of great interest due to...
In this project, we demonstrated the genetic engineering of POX deletion strains of S. cerevisiae (b...
Background: In the future, oil-and gas-derived polymers may be replaced with bio-based polymers, pro...
Fatty acid-derived biofuels and biochemicals can be produced in microbes using β-oxidation pathway e...
Fatty acid-derived biofuels and biochemicals can be produced in microbes using β-oxidation pathway e...
Fatty acid-derived biofuels and biochemicals can be produced in microbes using b-oxidation pathway e...
Advances in biotechnology have enabled potential solutions to the oil-dependency of the chemical ind...
Medium-chain (C8–C14) α, ω-dicarboxylic acids (α, ω-DCAs), which have numerous applications as raw m...
The production of fuels and chemicals from biorenewable resources is important to alleviate the inst...
The oleochemical and petrochemical industries provide diverse chemicals used in personal care produc...
Biotechnologies could potentially support renewable fuels production by modifying existing pathways ...
<p>The dashed line represents the original pathway; the solid line represents the modified pathway. ...
Saccharomyces cerevisiae has been widely established as a platform microorganism for industrial prod...
Fatty acid ethyl esters are fatty acid derived molecules similar to first generation biodiesel (fatt...
AbstractMicrobial production of fatty acid derived chemicals and fuels is currently of great interes...
Microbial production of fatty acid derived chemicals and fuels is currently of great interest due to...
In this project, we demonstrated the genetic engineering of POX deletion strains of S. cerevisiae (b...
Background: In the future, oil-and gas-derived polymers may be replaced with bio-based polymers, pro...
Fatty acid-derived biofuels and biochemicals can be produced in microbes using β-oxidation pathway e...
Fatty acid-derived biofuels and biochemicals can be produced in microbes using β-oxidation pathway e...
Fatty acid-derived biofuels and biochemicals can be produced in microbes using b-oxidation pathway e...
Advances in biotechnology have enabled potential solutions to the oil-dependency of the chemical ind...
Medium-chain (C8–C14) α, ω-dicarboxylic acids (α, ω-DCAs), which have numerous applications as raw m...
The production of fuels and chemicals from biorenewable resources is important to alleviate the inst...
The oleochemical and petrochemical industries provide diverse chemicals used in personal care produc...
Biotechnologies could potentially support renewable fuels production by modifying existing pathways ...
<p>The dashed line represents the original pathway; the solid line represents the modified pathway. ...
Saccharomyces cerevisiae has been widely established as a platform microorganism for industrial prod...
Fatty acid ethyl esters are fatty acid derived molecules similar to first generation biodiesel (fatt...
AbstractMicrobial production of fatty acid derived chemicals and fuels is currently of great interes...
Microbial production of fatty acid derived chemicals and fuels is currently of great interest due to...
In this project, we demonstrated the genetic engineering of POX deletion strains of S. cerevisiae (b...
Background: In the future, oil-and gas-derived polymers may be replaced with bio-based polymers, pro...