Abstract:
Provided is a microorganism of the genus Komagataeibacter having enhanced cellulose productivity and yield, a method of producing cellulose by using the same, and a method of producing the microorganism.
Abstract:
Provided are a microorganism of genus Komagataeibacter having enhanced cellulose productivity and yield, a method of producing cellulose by using the microorganism, and a method of producing the microorganism.
Abstract:
A microorganism of the genus Gluconacetobacter has enhanced cellulose productivity due to overexpression of fructose-bisphosphate aldolase, and optionally, phosphoglucomutase, UTP-glucose-1-phosphate uridylyltransferase, or cellulose synthase. A method of producing cellulose and a method of producing the microorganism are provided.
Abstract:
Provided are an isolated polynucleotide, a host cell including the isolated polynucleotide, and a method of expressing a target gene in the host cell, wherein the isolated polynucleotide includes a promoter region derived from a bacterium of the genus Pseudomonas.
Abstract:
Provided is a genetically engineered yeast cell having increased NADPH production, a method of increasing a NADPH level in a yeast cell, a method of preparing the genetically engineered yeast cell, and a method of producing lactate using the genetically engineered yeast cell.
Abstract:
A genetically engineered bacteria cell having an enhanced activity of GlnD or GlnK, and a method of producing succinic acid by using the genetically engineered bacteria cell are provided.
Abstract:
A method of screening a microorganisim having a mutant lactate dehydrogenase with increased activity, a mutant lactate dehydrogenase polypeptide, a polynucleotide and vector encoding same, and a microorganism that expresses the lactate dehydrogenase mutant, and a method of producing lactate using the microorganism.
Abstract:
A genetically engineered bacterial cell wherein activity of a pathway in the cell of converting α-ketoglutarate into succinate semialdehyde; or activity of succinyl semialdehyde dehydrogenase in the cell is increased compared to the activity in a non-genetically engineered cell of the same type, and a method of producing succinic acid by using the same.