Abstract: The present invention provides materials and methods useful for error correction of nucleic acid molecules. In one embodiment of the invention, a first plurality of double-stranded nucleic acid molecules having a nucleotide mismatch are fragmented by exposure to a molecule having unidirectional mismatch endonuclease activity. The nucleic acid molecules are cut at the mismatch site or near the mismatch site, leaving a double-stranded nucleic acid molecule having a mismatch at the end or near end of the molecule. The nucleic acid molecule is then exposed to a molecule having unidirectional exonuclease activity to remove the mismatched nucleotide. The missing nucleotides can then be filled in by the action of, e.g., a molecule having DNA polymerase activity. The result is double-stranded nucleic acid molecules with a decreased frequency of nucleotide mismatches.
Abstract: The present invention provides compositions and methods for treating, inhibiting or preventing the developing of a plant pathogenic disease. The compositions comprise volatile organic compounds effective to inhibit the growth of, or kill pathogenic microbes, including Ganoderma boninense. Invention compositions are especially useful in preventing and treating basal stem rot in the oil palm, and can be applied in the vicinity of the plant or used to sterilize the plant growth medium prior to or concurrent with plant growth therein.
Abstract: The present invention relates, e.g., to a method for amplifying a small number of copies (e.g. a single copy) of a single-stranded circular DNA molecule (e.g. having a size of about 5-6 kb) by an isothermal rolling circle mechanism, using random or partially random primers and a F29-type DNA polymerase. The method, which can also be used for amplifying DNAs by non-rolling types of multiple displacement amplification, comprises incubating the reaction components in a small volume, e.g. about 10 ?l or less, such as about 0.6 ?l or less. The degree of amplification can be about 109 fold, or higher. A method for cell-free cloning of DNA, using the rolling circle amplification method of the invention, is described.
Type:
Grant
Filed:
May 1, 2006
Date of Patent:
July 30, 2013
Assignee:
Synthetic Genomics, Inc.
Inventors:
Clyde A. Hutchison, III, Hamilton O. Smith
Abstract: The present invention describes methods of identifying stimulants for the biogenic production of methane in hydrocarbon-bearing formations. Methods involve the use of microbial nucleic acid sequence information for the determination of gene products that are enzymes in a variety of pathways involved in the conversion of hydrocarbons to methane. Enzymes and stimulants identified by invention methods can be used in processes for enhancing biogenic methane production, for example, by addition to coal seams and coalbed methane wells.
Type:
Grant
Filed:
July 6, 2011
Date of Patent:
May 28, 2013
Assignee:
Synthetic Genomics, Inc.
Inventors:
Gerardo Vicente Toledo, Toby Howard Richardson, Ulrich Stingl, Eric J. Mathur, J. Craig Venter
Abstract: The present invention provides genes, polypeptides and expression constructs therefor, recombinant photosynthetic microorganisms, and method of use thereof, such as for the production of branched-chain alcohols (including 2-methyl-1-butanol, 3-methyl-1-butanol, and isobutanol) and derivatives thereof for a variety of uses.
Type:
Grant
Filed:
December 28, 2011
Date of Patent:
May 21, 2013
Assignee:
Synthetic Genomics, Inc.
Inventors:
Paul Gordon Roessler, Bo Liu, Jessica Roxane Kristof
Abstract: The present invention relates to an in vitro method, using isolated protein reagents, for joining two double-stranded (ds) DNA molecules of interest, wherein the distal region of the first DNA molecule and the proximal region of the second DNA molecule share a region of sequence identity. The method allows the joining of a number of DNA fragments, in a predetermined order and orientation, without the use of restriction enzymes. It can be used, e.g., to join synthetically produced sub-fragments of a gene or genome of interest.
Abstract: The present invention provides compositions and methods for treating, inhibiting or preventing the developing of a plant pathogenic disease. The compositions comprise volatile organic compounds effective to inhibit the growth of, or kill pathogenic microbes, including Ganoderma boninense. Invention compositions are especially useful in preventing and treating basal stem rot in the oil palm, and can be applied in the vicinity of the plant or used to sterilize the plant growth medium prior to or concurrent with plant growth therein.
Abstract: The invention relates to acyl-CoA-independent methods of producing fatty alcohols in recombinant host cells engineered to express an alcohol-forming acyl-ACP reductase. The recombinant host cells may be photosynthetic microorganisms, such as cyanobacteria. Isolated nucleic acid molecules, vectors, and recombinant host cells expressing an alcohol-forming acyl-ACP reductase, and systems for producing fatty alcohols via an acyl-CoA-independent pathway, are also provided. Also provided are microorganisms engineered for the secretion of fatty acids and fatty acid derivatives, including fatty alcohols, and methods of producing fatty acid derivatives using such engineering microorganisms.
Abstract: Recombinant photosynthetic microorganisms that convert inorganic carbon to secreted fatty acids are described. Methods to recover the secreted fatty acids from the culture medium without the need for cell harvesting are also described.
Type:
Application
Filed:
December 29, 2011
Publication date:
January 3, 2013
Applicant:
SYNTHETIC GENOMICS, INC.
Inventors:
PAUL GORDON ROESSLER, YOU CHEN, BO LIU, COREY NEAL DODGE
Abstract: This invention describes genes, metabolic pathways, microbial strains and methods to produce 2,6-dimethyloctane as an advanced biofuel from renewable feedstocks.
Type:
Grant
Filed:
November 13, 2008
Date of Patent:
November 13, 2012
Assignee:
Synthetic Genomics, Inc.
Inventors:
Kevin V. Martin, Stephen Picataggio, Paul Roessler, John Verruto, Kevin Watts
Abstract: The present invention describes methods of stimulating the biogenic production of methane in hydrocarbon-bearing formations. The present application provides various stimulants which, when contacted with a hydrocarbon deposit in situ or ex situ, induce or enhance coalbed methane production.
Type:
Application
Filed:
June 3, 2011
Publication date:
June 7, 2012
Applicant:
SYNTHETIC GENOMICS, INC.
Inventors:
Brian G. Clement, James G. Ferry, Stuart Underwood
Abstract: The present invention relates to high-throughput methods of screening biological samples to identify microorganisms having potential utilities as biocontrol agents. The methods include, for example, the use of multitest platforms for the simultaneous identification of microorganisms having biocontrol activity, including those useful in improving plant, animal, and human health. In particular, the present invention provides screening methods suitable for identification of microorganisms having potential applications in combating diseases caused by plant pathogens. The disclosure also provides microorganisms having biocontrol activity that are identified by the screening methods disclosed herein.
Abstract: The present invention provides genes, polypeptides and expression constructs therefor, recombinant photosynthetic microorganisms, and method of use thereof, such as for the production of branched-chain alcohols (including 2-methyl-1-butanol, 3-methyl-1-butanol, and isobutanol) and derivatives thereof for a variety of uses.
Type:
Application
Filed:
December 28, 2011
Publication date:
April 19, 2012
Applicant:
Synthetic Genomics, Inc.
Inventors:
Paul Gordon Roessler, Bo Liu, Jessica Roxane Kristof
Abstract: The invention provides a mechanism for semi-quantitatively measuring individual isotopomer species of a molecule using gas chromatograph mass spectrometry. The method allows for semi-quantitatively tracking the movement of ions by measuring the individual isotopomer species of a molecule.
Type:
Application
Filed:
September 30, 2011
Publication date:
April 5, 2012
Applicant:
SYNTHETIC GENOMICS, INC.
Inventors:
Kevin Martin, Markus Herrgard, Kathleen Reeves
Abstract: The present methods deal with the solubilization of coal and lignocellulose biomass using pyrophosphates, polyphosphates, or derivatives thereof.
Type:
Application
Filed:
September 9, 2011
Publication date:
March 15, 2012
Applicant:
SYNTHETIC GENOMICS, INC.
Inventors:
Brian G. Clement, Toby Richardson, Stuart A. Underwood
Abstract: The present invention relates to methods of joining two or more double-stranded (ds) or single-stranded (ss) DNA molecules of interest in vitro, wherein the distal region of the first DNA molecule and the proximal region of the second DNA molecule of each pair share a region of sequence identity. The method allows the joining of a large number of DNA fragments, in a predetermined order and orientation, without the use of restriction enzymes. It can be used, e.g., to join synthetically produced sub-fragments of a gene or genome of interest. Kits for performing the method are also disclosed. The methods of joining DNA molecules may be used to generate combinatorial libraries useful to generate, for example, optimal protein expression through codon optimization, gene optimization, and pathway optimization.
Type:
Application
Filed:
February 25, 2011
Publication date:
March 1, 2012
Applicant:
Synthetic Genomics, Inc.
Inventors:
Daniel G. Gibson, Hamilton O. Smith, Clyde A. Hutchison, Lei Young, J. Craig Venter
Abstract: The present invention provides genes, polypeptides and expression constructs therefor, recombinant photosynthetic microorganisms, and method of use thereof, such as for the production of branched-chain alcohols (including 2-methyl-1-butanol, 3-methyl-1-butanol, and isobutanol) and derivatives thereof for a variety of uses.
Type:
Grant
Filed:
December 10, 2009
Date of Patent:
February 28, 2012
Assignee:
Synthetic Genomics, Inc.
Inventors:
Paul Gordon Roessler, Bo Liu, Jessica Roxane Kristof
Abstract: This invention describes genes, metabolic pathways, microbial strains and methods to produce methyl butanol and other compounds of interest from renewable feedstocks.
Type:
Grant
Filed:
December 10, 2008
Date of Patent:
February 14, 2012
Assignee:
Synthetic Genomics, Inc.
Inventors:
Stephen Picataggio, Robert C. Brown, Jessica R. Kristof, Gena Roy, Prachee Prakash, Stuart A. Underwood, Kevin Watts, Kevin V. Martin