The non-conventional oleaginous yeast Yarrowia lipolytica shows great industrial promise. It naturally produces certain compounds of interest but can also artificially generate non-native metabolites, thanks to an engineering process made possible by the significant expansion of a dedicated genetic toolbox. In this review, we present recently developed synthetic biology tools that facilitate the manipulation of Y. lipolytica, including 1) DNA assembly techniques, 2) DNA parts for constructing expression cassettes, 3) genome-editing techniques, and 4) computational tools
In this study, we have adopted Golden Gate modular cloning strategy to develop a robust and versatil...
In this work the aim was to produce medium chain dicarboxylic acids with metabolically engineered Y....
Unusual fatty acids with special carbon chain length or functional groups have been extensively used...
The non-conventional oleaginous yeast Yarrowia lipolytica shows great industrial promise. It natural...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
International audienceAmong non-conventional yeasts of industrial interest, the dimorphic oleaginous...
The oleaginous yeast Yarrowia lipolytica is an established host for the bio-based production of valu...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
Abstract The oleaginous yeast, Yarrowia lipolytica, has garnered much attention and is gaining recog...
Effective metabolic engineering of microorganisms relies on balanced expression of both heterologous...
Among non-conventional yeasts of industrial interest, the dimorphic oleaginous yeast Yarrowia lipoly...
As redesigning organisms using engineering principles is one of the purposes of synthetic biology (S...
International audienceThe efficient use of the yeast Yarrowia lipolytica as a cell factory is hamper...
Yarrowia lipolytica is a potent microbial cell factory for metabolic engineering that will enable th...
Background: Yarrowia lipolytica is an ascomycete yeast used in biotechnological research for its abi...
In this study, we have adopted Golden Gate modular cloning strategy to develop a robust and versatil...
In this work the aim was to produce medium chain dicarboxylic acids with metabolically engineered Y....
Unusual fatty acids with special carbon chain length or functional groups have been extensively used...
The non-conventional oleaginous yeast Yarrowia lipolytica shows great industrial promise. It natural...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
International audienceAmong non-conventional yeasts of industrial interest, the dimorphic oleaginous...
The oleaginous yeast Yarrowia lipolytica is an established host for the bio-based production of valu...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
Abstract The oleaginous yeast, Yarrowia lipolytica, has garnered much attention and is gaining recog...
Effective metabolic engineering of microorganisms relies on balanced expression of both heterologous...
Among non-conventional yeasts of industrial interest, the dimorphic oleaginous yeast Yarrowia lipoly...
As redesigning organisms using engineering principles is one of the purposes of synthetic biology (S...
International audienceThe efficient use of the yeast Yarrowia lipolytica as a cell factory is hamper...
Yarrowia lipolytica is a potent microbial cell factory for metabolic engineering that will enable th...
Background: Yarrowia lipolytica is an ascomycete yeast used in biotechnological research for its abi...
In this study, we have adopted Golden Gate modular cloning strategy to develop a robust and versatil...
In this work the aim was to produce medium chain dicarboxylic acids with metabolically engineered Y....
Unusual fatty acids with special carbon chain length or functional groups have been extensively used...