Patents by Inventor Billy Fred McCutchen
Billy Fred McCutchen has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 8710296Abstract: Methods and compositions for modulating development and defense responses are provided. Nucleotide sequences encoding defensin proteins are provided. The sequences can be used in expression cassettes for modulating development, developmental pathways, and defense responses. Transformed plants, plant cells, tissues, and seed are also provided.Type: GrantFiled: March 29, 2011Date of Patent: April 29, 2014Assignee: Pioneer Hi Bred International IncInventors: Carl R. Simmons, Pedro A. Navarro Acevedo, Leslie Harvell, Rebecca Cahoon, Billy Fred McCutchen, Albert L. Lu, Rafael Herrmann, James F. H. Wong
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Publication number: 20130288898Abstract: Methods and compositions are provided related to improved plants that are tolerant to more than one herbicide. Particularly, the invention provides plants that are tolerant of glyphosate and are tolerant to at least one ALS inhibitor, and methods of use thereof. The glyphosate/ALS inhibitor-tolerant plants comprise a polynucleotide that encodes a polypeptide that confers tolerance to glyphosate and a polynucleotide that encodes an ALS inhibitor-tolerant polypeptide. In specific embodiments, a plant of the invention expresses a GAT polypeptide and an HRA polypeptide. Methods to control weeds, improve plant yield, and increase transformation efficiencies are provided.Type: ApplicationFiled: July 1, 2013Publication date: October 31, 2013Inventors: Timothy K Chicoine, Jerry M. Green, Christine B. Hazel, Jeffrey M. Hegstad, James M. Hutchison, Donglong Liu, Albert L. Lu, Billy Fred McCutchen, Kenneth A. Peeples, David W. Saunders, Mark D. Vogt, James F.H. Wong
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Publication number: 20130102765Abstract: Novel proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are novel polynucleotides capable of encoding these proteins, compositions that include one or more of these novel proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these novel compounds, diversification methods involving the novel compounds, and methods of using the compounds. Some of the novel methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: ApplicationFiled: June 5, 2012Publication date: April 25, 2013Applicants: Verdia Inc., E.I. du Pont de Nemours and Company, Pioneer Hi-Bred International, Inc.Inventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Christina Ivy, Yong Hong Chen, Phillip A. Patten, Rebecca Gorton, Nicholas B. Duck, Billy Fred McCutchen, Roger Kemble
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Publication number: 20120245339Abstract: Novel proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are novel polynucleotides capable of encoding these proteins, compositions that include one or more of these novel proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these novel compounds, diversification methods involving the novel compounds, and methods of using the compounds. Some of the novel methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: ApplicationFiled: June 5, 2012Publication date: September 27, 2012Applicants: Verdia Inc., E.I. du Pont de Nemours and Company, Pioneer Hi-Bred International, Inc.Inventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Christina Ivy, Yong Hong Chen, Phillip A. Patten, Rebecca Gorton, Nicholas B. Duck, Billy Fred McCutchen, Roger Kemble
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Publication number: 20120157308Abstract: Methods and compositions are provided related to improved plants that are tolerant to more than one herbicide. Particularly, the invention provides plants that are tolerant of glyphosate and are tolerant to at least one ALS inhibitor, and methods of use thereof. The glyphosate/ALS inhibitor-tolerant plants comprise a polynucleotide that encodes a polypeptide that confers tolerance to glyphosate and a polynucleotide that encodes an ALS inhibitor-tolerant polypeptide. In specific embodiments, a plant of the invention expresses a GAT polypeptide and an HRA polypeptide. Methods to control weeds, improve plant yield, and increase transformation efficiencies are provided.Type: ApplicationFiled: December 16, 2011Publication date: June 21, 2012Applicants: E.I. du Pont de Nemours and Company, Pioneer Hi-Bred International, Inc.Inventors: Billy Fred McCutchen, Timothy K. Chicoine, Jerry M. Green, Christine B. Hazel, Jeffrey M. Hegstad, James M. Hutchison, Donglong Liu, Albert L. Lu, Kenneth A. Peeples, David W. Saunders, Mark D. Vogt, James F.H. Wong
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Patent number: 8203033Abstract: Methods and compositions are provided related to improved plants that are tolerant to more than one herbicide. Particularly, the invention provides plants that are tolerant of glyphosate and are tolerant to at least one ALS inhibitor, and methods of use thereof. The glyphosate/ALS inhibitor-tolerant plants comprise a polynucleotide that encodes a polypeptide that confers tolerance to glyphosate and a polynucleotide that encodes an ALS inhibitor-tolerant polypeptide. In specific embodiments, a plant of the invention expresses a GAT polypeptide and an HRA polypeptide. Methods to control weeds, improve plant yield, and increase transformation efficiencies are provided.Type: GrantFiled: April 2, 2009Date of Patent: June 19, 2012Assignees: Pioneer Hi-Bred International, Inc., E.I. Du Pont de Nemours and CompanyInventors: Billy Fred McCutchen, Timothy K. Chicoine, Jerry M. Green, Christine B. Hazel, Jeffrey M. Hegstad, James M. Hutchison, Donglong Liu, Albert L. Lu, Kenneth A. Peeples, David W. Saunders, Mark D. Vogt, James F. H. Wong
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Publication number: 20120122686Abstract: Novel proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are novel polynucleotides capable of encoding these proteins, compositions that include one or more of these novel proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these novel compounds, diversification methods involving the novel compounds, and methods of using the compounds. Some of the novel methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: ApplicationFiled: November 18, 2011Publication date: May 17, 2012Applicants: Verdia, Inc., E.I. Du Pont De Nemours, Pioneer Hi-Bred International, Inc.Inventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Christina Ivy, Yong Hong Chen, Phillip A. Patten, Rebecca Gorton, Nicholas B. Duck, Billy Fred McCutchen, Roger Kemble
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Patent number: 8088972Abstract: Proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are polynucleotides capable of encoding these proteins, compositions that include one or more of these proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these compounds, diversification methods involving the compounds, and methods of using the compounds. Some of the methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: GrantFiled: April 1, 2009Date of Patent: January 3, 2012Assignees: Verdia, Inc., Pioneer Hi-Bred International, Inc., E.I. DuPont de NemoursInventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Cristina Ivy, Yong Hong Chen, Phillip A. Patten, Rebecca Gorton, Nicholas B. Duck, Billy Fred McCutchen, Roger Kemble
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Patent number: 8044261Abstract: Proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are polynucleotides capable of encoding these proteins, compositions that include one or more of these proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these compounds, diversification methods involving the compounds, and methods of using the compounds. Some of the methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: GrantFiled: August 3, 2009Date of Patent: October 25, 2011Assignees: E. I. du Pont de Nemours, Verdia Inc., Pioneer Hi-Bred International, Inc.Inventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Cristina Ivy, Yong Hong Chen, Phillip A. Patten, Nicholas B. Duck, Rebecca Gorton, Billy Fred McCutchen, Roger Kemble
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Patent number: 8026415Abstract: Methods and compositions for modulating development and defense responses are provided. Nucleotide sequences encoding defensin proteins are provided. The sequences can be used in expression cassettes for modulating development, developmental pathways, and defense responses. Transformed plants, plant cells, tissues, and seed are also provided.Type: GrantFiled: June 3, 2008Date of Patent: September 27, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. DuPont de Nemours and CompanyInventors: Carl R. Simmons, Pedro A. Navarro Acevedo, Leslie Harvell, Rebecca Cahoon, Billy Fred McCutchen, Albert L. Lu, Rafael Herrmann, James F. H. Wong
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Patent number: 8021857Abstract: Novel proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are novel polynucleotides capable of encoding these proteins, compositions that include one or more of these novel proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these novel compounds, diversification methods involving the novel compounds, and methods of using the compounds. Some of the novel methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: GrantFiled: August 3, 2009Date of Patent: September 20, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. du Pont de Nemours, Verdia Inc.Inventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Cristina Ivy, Yong Hong Chen, Phillip A. Patten, Nicholas B. Duck, Rebecca Gorton, Billy Fred McCutchen, Roger Kemble
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Patent number: 8008547Abstract: Proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are polynucleotides capable of encoding these proteins, compositions that include one or more of these proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these compounds, diversification methods involving the compounds, and methods of using the compounds. Some of the methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: GrantFiled: April 1, 2009Date of Patent: August 30, 2011Assignees: E.I. duPont de Nemours, Verdia Inc., Pioneer Hi-Bred International Inc,Inventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Cristina Ivy, Yong Hong Chen, Phillip A. Patten, Rebecca Gorton, Nicholas B. Duck, Billy Fred McCutchen, Roger Kemble
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Patent number: 7998703Abstract: Proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are polynucleotides capable of encoding these proteins, compositions that include one or more of these proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these compounds, diversification methods involving the compounds, and methods of using the compounds. Some of the methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: GrantFiled: April 1, 2009Date of Patent: August 16, 2011Assignees: Verdia, Inc., Pioneer Hi-Bred International, Inc., E.I. DuPont De NemoursInventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Cristina Ivy, Yong Hong Chen, Phillip A. Patten, Rebecca Gorton, Nicholas B. Duck, Billy Fred McCutchen, Roger Kemble
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Patent number: 7999152Abstract: Proteins are provided herein, including proteins capable of catalyzing the acetylation of glyphosate and other structurally related proteins. Also provided are polynucleotides capable of encoding these proteins, compositions that include one or more of these proteins and/or polynucleotides, recombinant cells and transgenic plants comprising these compounds, diversification methods involving the compounds, and methods of using the compounds. Some of the methods and compounds provided herein can be used to render an organism, such as a plant, resistant to glyphosate.Type: GrantFiled: August 3, 2009Date of Patent: August 16, 2011Assignees: Pioneer Hi-Bred International, Inc., Verdia, Inc., E.I. du Pont de Nemours and CompanyInventors: Linda A. Castle, Dan Siehl, Lorraine Giver, Jeremy Minshull, Cristina Ivy, Yong Hong Chen, Phillip A. Patten, Nicholas B. Duck, Rebecca Gorton, Billy Fred McCutchen, Roger Kemble
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Publication number: 20110179522Abstract: Methods and compositions for modulating development and defense responses are provided. Nucleotide sequences encoding defensin proteins are provided. The sequences can be used in expression cassettes for modulating development, developmental pathways, and defense responses. Transformed plants, plant cells, tissues, and seed are also provided.Type: ApplicationFiled: March 29, 2011Publication date: July 21, 2011Applicants: Pioneer Hi-Bred International, Inc., E.I. du Pont de Nemours and CompanyInventors: Carl R. Simmons, Pedro A. Navarro Acevedo, Leslie Harvell, Rebecca Cahoon, Billy Fred McCutchen, Albert L. Lu, Rafael Herrmann, James F. H. Wong
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Patent number: 7973218Abstract: Methods and compositions are provided related to improved plants that are tolerant to more than one herbicide. Particularly, the invention provides plants that are tolerant of glyphosate and are tolerant to at least one ALS inhibitor, and methods of use thereof. The glyphosate/ALS inhibitor-tolerant plants comprise a polynucleotide that encodes a polypeptide that confers tolerance to glyphosate and a polynucleotide that encodes an ALS inhibitor-tolerant polypeptide. In specific embodiments, a plant of the invention expresses a GAT polypeptide and an HRA polypeptide. Methods to control weeds, improve plant yield, and increase transformation efficiencies are provided.Type: GrantFiled: August 22, 2006Date of Patent: July 5, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. duPont de Nemours and CompanyInventors: Billy Fred McCutchen, Timothy K. Chicoine, Jerry M. Green, Christine B. Hazel, Donglong Liu, Kenneth A. Peeples, David W. Saunders
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Maize event DP-098140-6 and compositions and methods for the identification and/or detection thereof
Patent number: 7928296Abstract: Compositions and methods related to transgenic glyphosate/ALS inhibitor-tolerant maize plants are provided. Specifically, the present invention provides maize plants having a DP-098140-6 event which imparts tolerance to glyphosate and at least one ALS-inhibiting herbicide. The maize plant harboring the DP-098140-6 event at the recited chromosomal location comprises genomic/transgene junctions having at least the polynucleotide sequence of SEQ ID NO:5 and/or 6. The characterization of the genomic insertion site of the DP-098140-6 event provides for an enhanced breeding efficiency and enables the use of molecular markers to track the transgene insert in the breeding populations and progeny thereof. Various methods and compositions for the identification, detection, and use of the maize DP-098140-6 events are provided.Type: GrantFiled: October 10, 2007Date of Patent: April 19, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. DuPont de Nemours and Co.Inventors: Timothy K. Chicoine, Jeffery W. Derry, Christine B. Hazel, Donglong Liu, Billy Fred McCutchen, Wayne J. Mehre, Kenneth A. Peeples, David W. Saunders, Gan-Yuan Zhong -
Patent number: 7919686Abstract: Methods and compositions for modulating development and defense responses are provided. Nucleotide sequences encoding defensin proteins are provided. The sequences can be used in expression cassettes for modulating development, developmental pathways, and defense responses. Transformed plants, plant cells, tissues, and seed are also provided.Type: GrantFiled: June 3, 2008Date of Patent: April 5, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. du Pont de Nemours and CompanyInventors: Carl R. Simmons, Pedro A. Navarro Acevedo, Leslie Harvell, Rebecca Cahoon, Billy Fred McCutchen, Albert L. Lu, Rafael Herrmann, James F. H. Wong
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Patent number: 7910806Abstract: Methods and compositions for modulating development and defense responses are provided. Nucleotide sequences encoding defensin proteins are provided. The sequences can be used in expression cassettes for modulating development, developmental pathways, and defense responses. Transformed plants, plant cells, tissues, and seed are also provided.Type: GrantFiled: June 3, 2008Date of Patent: March 22, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. du Pont de Nemours and CompanyInventors: Carl R. Simmons, Pedro A. Navarro Acevedo, Leslie Harvell, Rebecca Cahoon, Billy Fred McCutchen, Albert L. Lu, Rafael Herrmann, James F. H. Wong
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Patent number: 7897847Abstract: Methods and compositions for modulating development and defense responses are provided. Nucleotide sequences encoding defensin proteins are provided. The sequences can be used in expression cassettes for modulating development, developmental pathways, and defense responses. Transformed plants, plant cells, tissues, and seed are also provided.Type: GrantFiled: June 3, 2008Date of Patent: March 1, 2011Assignees: Pioneer Hi-Bred International, Inc., E.I. du Pont de Nemours and CompanyInventors: Carl R. Simmons, Pedro A. Navarro Acevedo, Leslie Harvell, Rebecca Cahoon, Billy Fred McCutchen, Albert L. Lu, Rafael Herrmann, James F. H. Wong