C12Y402/03052

PRODUCTION OF BETA-PHELLANDRENE USING GENETICALLY ENGINEERED PHOTOSYNTHETIC MICROORGANISMS

The present invention provides methods and compositions for producing -phellandrene hydrocarbons from a photosynthetic microorganism such as cyanobacteria.

Production of β-phellandrene using genetically engineered photosynthetic microorgamisms

The present invention provides methods and compositions for producing -phellandrene hydrocarbons from a photosynthetic microorganism such as cyanobacteria.

PRODUCTION OF BETA-PHELLANDRENE USING GENETICALLY ENGINEERED PHOTOSYNTHETIC MICROORGANISMS

The present invention provides methods and compositions for producing -phellandrene hydrocarbons from a photosynthetic microorganism such as cyanobacteria.

Production of β-phellandrene using genetically engineered cyanobacteria

The present invention provides methods and compositions for producing -phellandrene hydrocarbons from cyanobacteria.

NUCLEIC ACID, FUSION PROTEIN, RECOMBINED CELL, AND ISOPRENE OR CYCLIC TERPENE PRODUCTION METHOD

Provided is a nucleic acid encoding a fusion protein, the fusion protein including a first protein selected from the group consisting of isoprene synthase and cyclic terpene synthase, and a FKBP family protein linked to the first protein. Provided is a fusion protein encoded by the nucleic acid. Provided is a recombinant cell including the nucleic acid and expressing the fusion protein. Further provided is a recombinant cell including a first nucleic acid encoding the first protein and a second nucleic acid encoding the FKBP family protein, and expressing the first protein and the FKBP family protein. As a host cell, a syngas-assimilating bacterium or a methanol assimilating bacterium can be used.