This proof-of-concept study establishes Yarrowia lipolytica(Y. lipolytica) as a whole cell factory for the de novoproduction of long chain dicarboxylic acid (LCDCA-16 and 18) using glycerol as the sole source of carbon. Modification of the fatty acid metabolism pathway enabled creating a pool of fatty acids in a β-oxidation deficient strain. We then selectively upregulated the native fatty acid ω-oxidation pathway for the enhanced terminal oxidation of the endogenous fatty acid precursors. Nitrogen-limiting conditions and leucine supplementation were employed to induce fatty acid biosynthesis in an engineered Leu− modified strain. Our genetic engineering strategy allowed a minimum production of 330 mg/L LCDCAs in shake flask. Scale up to a ...
Background Recently, there have been several attempts to produce long-chain dicarbo...
Book of Abstracts of CEB Annual Meeting 2017Yarrowia lipolytica, a strictly aerobic yeast, with GRAS...
Due to their vital physiological functions, nutritional fatty acids have great potential as nutraceu...
This proof-of-concept study establishes Yarrowia lipolytica (Y. lipolytica) as a whole cell factory ...
This proof-of-concept study establishes Yarrowia lipolytica (Y. lipolytica) as a whole cell factory ...
Yarrowia lipolytica is a potent microbial cell factory for metabolic engineering that will enable th...
Yarrowia lipolytica is a safe and robust yeast that has a history of industrial applications. Its ph...
Increasing demand for plant oil for food, feed, and fuel production has led to food-fuel competition...
Lignocellulose-derived sugars and other biorefinery by-product streams such as glycerol and acetic a...
Background: Yarrowia lipolytica is a common biotechnological chassis for the production of lipids, ...
Background: Oleaginous yeast Yarrowia lipolytica is an organism of choice for the development of bio...
In this work the aim was to produce medium chain dicarboxylic acids with metabolically engineered Y....
Background: Microbial lipids are produced by many oleaginous organisms including the well-characteri...
Microbial production of value-added chemicals derived from fatty acids is a sustainable alternative ...
AbstractOne of the most promising alternatives to petroleum for the production of fuels and chemical...
Background Recently, there have been several attempts to produce long-chain dicarbo...
Book of Abstracts of CEB Annual Meeting 2017Yarrowia lipolytica, a strictly aerobic yeast, with GRAS...
Due to their vital physiological functions, nutritional fatty acids have great potential as nutraceu...
This proof-of-concept study establishes Yarrowia lipolytica (Y. lipolytica) as a whole cell factory ...
This proof-of-concept study establishes Yarrowia lipolytica (Y. lipolytica) as a whole cell factory ...
Yarrowia lipolytica is a potent microbial cell factory for metabolic engineering that will enable th...
Yarrowia lipolytica is a safe and robust yeast that has a history of industrial applications. Its ph...
Increasing demand for plant oil for food, feed, and fuel production has led to food-fuel competition...
Lignocellulose-derived sugars and other biorefinery by-product streams such as glycerol and acetic a...
Background: Yarrowia lipolytica is a common biotechnological chassis for the production of lipids, ...
Background: Oleaginous yeast Yarrowia lipolytica is an organism of choice for the development of bio...
In this work the aim was to produce medium chain dicarboxylic acids with metabolically engineered Y....
Background: Microbial lipids are produced by many oleaginous organisms including the well-characteri...
Microbial production of value-added chemicals derived from fatty acids is a sustainable alternative ...
AbstractOne of the most promising alternatives to petroleum for the production of fuels and chemical...
Background Recently, there have been several attempts to produce long-chain dicarbo...
Book of Abstracts of CEB Annual Meeting 2017Yarrowia lipolytica, a strictly aerobic yeast, with GRAS...
Due to their vital physiological functions, nutritional fatty acids have great potential as nutraceu...