Abstract:
Genetically engineered cells and microorganisms are provided that produce fatty alcohols from the fatty acid biosynthetic pathway, as well as methods of their use.
Abstract:
Genetically engineered cells and microorganisms are provided that produce fatty alcohols from the fatty acid biosynthetic pathway, as well as methods of their use.
Abstract:
Genetically engineered cells and microorganisms are provided that produce fatty alcohols from the fatty acid biosynthetic pathway, as well as methods of their use.
Abstract:
Genetically engineered cells and microorganisms are provided that produce products from the fatty acid biosynthetic pathway (fatty acid derivatives), as well as methods of their use. The products are particularly useful as biofuels.
Abstract:
Genetically engineered microorganisms that produce fatty alcohols from a sugar source by way of the fatty acid biosynthetic pathway, as well as methods of their use are provided.
Abstract:
Genetically engineered microorganisms that produce fatty alcohols from a sugar source by way of the fatty acid biosynthetic pathway, as well as methods of their use are provided.
Abstract:
Genetically engineered cells and microorganisms are provided that produce products from the fatty acid biosynthetic pathway (fatty acid derivatives), as well as methods of their use. The products are particularly useful as biofuels.
Abstract:
The invention features methods for producing isoprene from cultured cells. The invention also provides compositions that include these cultured cells.
Abstract:
Described are multimeric oxidoreductase complexes which function in the enzymatic conversion of a carbon substrate. The complexes having a dehydrogenase subunit and a cytochrome C subunit. Also described are polynucleotides coding for the multimeric complexes and methods of use thereof.
Abstract:
The present invention relates to a method of creating DNA libraries that include an artificial promoter library and/or a modified ribosome binding site library and transforming bacterial host cells with the library to obtain a population of bacterial clones having a range of expression levels for a chromosomal gene of interest.