Background: Both industrial biotechnology and the use of cellulosic biomass as feedstock for the manufacture of various commercial goods are prominent features of the bioeconomy. In previous work, with the aim of developing a consolidated bioprocess for cellulose bioconversion, we conferred cellulolytic activity of Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast species. However, further engineering this strain often leads to the loss of previously introduced heterologous genes due to the presence of multiple LoxP sites when using Cre-recombinase to remove previously employed selection markers.Results: In the present study, we first optimized the strategy of expression of multiple cellulases and rescue...
Yarrowia lipolytica is a biotechnological chassis for the production of a range of products, such as...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Xylose is the second most abundant sugar in cellulosic hydrolysate. Xylose utilization has been exte...
Abstract Background Both industrial biotechnology and the use of cellulosic biomass as feedstock for...
Background: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
BACKGROUND: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
Background: A recently constructed cellulolytic Yarrowia lipolytica is able to grow efficiently on a...
Background: Yarrowia lipolytica is a common biotechnological chassis for the production of lipids, ...
To develop a direct microbial sugar conversion platform for the production of lipids, drop-in fuels ...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
Lipases are scarcely exploited as feed enzymes in hydrolysis of lipids for increasing energy supply ...
Background: Microbial lipids are produced by many oleaginous organisms including the well-characteri...
Background: Xylose is the most prevalent sugar available in hemicellulose fraction of lignocellulosi...
Yarrowia lipolytica possesses natural and engineered traits that make it a good host for the industr...
Yeasts are employed ubiquitously within industry and academia for basic studies in biology and produ...
Yarrowia lipolytica is a biotechnological chassis for the production of a range of products, such as...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Xylose is the second most abundant sugar in cellulosic hydrolysate. Xylose utilization has been exte...
Abstract Background Both industrial biotechnology and the use of cellulosic biomass as feedstock for...
Background: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
BACKGROUND: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
Background: A recently constructed cellulolytic Yarrowia lipolytica is able to grow efficiently on a...
Background: Yarrowia lipolytica is a common biotechnological chassis for the production of lipids, ...
To develop a direct microbial sugar conversion platform for the production of lipids, drop-in fuels ...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
Lipases are scarcely exploited as feed enzymes in hydrolysis of lipids for increasing energy supply ...
Background: Microbial lipids are produced by many oleaginous organisms including the well-characteri...
Background: Xylose is the most prevalent sugar available in hemicellulose fraction of lignocellulosi...
Yarrowia lipolytica possesses natural and engineered traits that make it a good host for the industr...
Yeasts are employed ubiquitously within industry and academia for basic studies in biology and produ...
Yarrowia lipolytica is a biotechnological chassis for the production of a range of products, such as...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Xylose is the second most abundant sugar in cellulosic hydrolysate. Xylose utilization has been exte...