Patent classifications
C12N9/0044
RECOMBINANT MICROORGANISM HAVING ENHANCED ABILITY TO REMOVE NITRIC OXIDE AND USE THEREOF
A recombinant microorganism including a genetic modification that increases expression of a gene encoding a ferric enterobactin transporter-associated protein or a gene encoding a TonB-dependent transporter-associated protein, or a genetic modification that decreases expression of a fur gene encoding a ferric uptake regulator (Fur) protein, wherein the recombinant microorganism removes greater amounts of nitric oxide from a sample comprising nitric oxide than a same microorganism without the genetic modification
REDUCING TOBACCO SPECIFIC NITROSAMINES THROUGH ALTERATION OF THE NITRATE ASSIMILATION PATHWAY
Provided are modified tobacco plants having reduced nitrate levels and tobacco products generated from the modified tobacco plants having reduced tobacco specific nitrosamines (TSNAs). Also provided are methods of reducing TSNAs in tobacco products by altering the gene expression of the nitrate assimilation pathway
Reducing tobacco specific nitrosamines through alteration of the nitrate assimilation pathway
Provided are modified tobacco plants having reduced nitrate levels and tobacco products generated from the modified tobacco plants having reduced tobacco specific nitrosamines (TSNAs). Also provided are methods of reducing TSNAs in tobacco products by altering the gene expression of the nitrate assimilation pathway
Methods for Increasing the Stability of Production of Compounds in Microbial Host Cells
Methods for increasing the genetic stability of genetically enhanced microbial host cells capable of producing a compound of interest are disclosed.
Microbial deactivation of explosive compositions
A method of deactivating an explosive composition being used in a blasting operation, which method comprises exposing the explosive composition to a micro-organism that is indigenous to the environment in which the explosive composition is being used and that is capable of producing an enzyme that degrades the explosive composition, wherein the explosive composition has associated with it a chemical inducing agent that promotes production of the enzyme by the micro-organism.
Resistant protein for use in herbicide, encoding gene and application thereof
Provided are a resistant protein for use in herbicide dicamba, encoding gene and application thereof, the gene comprising: (a) a nucleotide sequence of an amino acid sequence as shown in SEQ ID NO: 2; or (b) a nucleotide sequence which is complementary to the nucleotide sequence as defined by (a) under stringent conditions; or (c) a nucleotide sequence as shown in SEQ ID NO: 1.
MODULATION OF NITRATE LEVELS IN PLANTS VIA MUTATION OF NITRATE REDUCTASE
A plant cell comprising: (a) a polynucleotide sequence encoding a nitrate reductase polypeptide comprising a contiguous polypeptide sequence of SEQ ID NO: 5 or SEQ ID NO: 7, wherein methionine is substituted for an amino acid that reduces nitrate reductase activity in the plant cell as compared to a control plant cell; (b) a polypeptide sequence encoded by the polynucleotide sequence set forth in (a); or (c) a construct, vector or expression vector comprising the polynucleotide sequence set forth in (b).
RECOMBINANT MICROORGANISM INCLUDING GENETIC MODIFICATION THAT INCREASES ACTIVITY OF NITROUS OXIDE REDUCTASE PATHWAY AND METHOD OF REDUCING CONCENTRATION OF NITROUS OXIDE IN SAMPLE BY USING THE SAME
A recombinant microorganism of the genus Escherichia, comprises a genetic modification that increases expression of a nosZ gene encoding NosZ, which is a nitrous oxide reductase, in the recombinant microorganism, wherein the recombinant microorganism comprises a nosR gene encoding NosR, a nosD gene encoding NosD, a nosF gene encoding NosF, a nosY gene encoding NosY, and an apbE gene encoding ApbE, and wherein the nosR gene, the nosD gene, the nosF gene, the nosY gene and the apbE gene are derived from a microorganism of the genus Pseudomonas, the genus Paracoccus, or a combination thereof.
RECOMBINANT MICROORGANISM INCLUDING GENETIC MODIFICATION THAT INCREASES ACTIVITY OF NITRIC OXIDE REDUCTASE AND METHOD OF REDUCING CONCENTRATION OF NITRIC OXIDE IN SAMPLE BY USING THE SAME
A recombinant microorganism including a genetic modification that increases activity of nitric oxide reductase in the recombinant microorganism, a composition for reducing a concentration of nitric oxide in a sample, the composition including the recombinant microorganism, and a method of reducing a concentration of nitric oxide in a sample, are disclosed.
SACCHAROMYCES YEAST CELL AND FERMENTATION PROCESS USING SUCH
A Saccharomyces yeast cell, preferably a Saccharomyces cerevisae yeast cell, comprising one or more nucleic acid sequences encoding an enzyme having NADH-dependent nitrate reductase activity and/or one or more nucleic acid sequences encoding an enzyme having NADH-dependent nitrite reductase activity. An anaerobic fermentation process for the production of a fermentation product using such Saccharomyces yeast cell and a fermentation co-product produced.