Patents by Inventor Jason S. Milligan

Jason S. Milligan 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).

  • Patent number: 12240874
    Abstract: Disclosed herein are nucleotide sequences encoding an insecticidal protein exhibiting Lepidopteran inhibitory activity, as well as novel insecticidal proteins referred to herein as a BCW 001, BCW 002, BCW 003, and BCW toxic protein-containing chimeras and BCW toxin insecticide, transgenic plants expressing the chimeras or the insecticide, and methods for detecting the presence of the nucleotide sequences or the insecticide in a biological sample.
    Type: Grant
    Filed: May 17, 2023
    Date of Patent: March 4, 2025
    Assignee: Monsanto Technology LLC
    Inventors: James A. Baum, David J. Bowen, Catherine A. Chay, David J. Chi, William P. Clinton, Crystal L. Dart, Leigh English, Stanislaw Flasinski, Victor M. Guzov, Kevin A. Jarrell, Uma R. Kesanapalli, Thomas M. Malvar, Robert M. McCarroll, Jason S. Milligan, Jay P. Morgenstern, Deborah G. Rucker, Sara A. Salvador, Temple F. Smith, Carlos E. Soto, Collin M. Stultz, Brian M. Turczyk, Ty T. Vaughn, Moritz W. F. Von Rechenberg
  • Publication number: 20250002932
    Abstract: Pesticidal proteins exhibiting toxic activity against Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran pest species are disclosed, and include, but are not limited to, TIC6280, TIC6281, TIC6282, TIC6283, TIC8808, TIC9480, TIC9257, TIC7106, TIC7017, TIC7107, TIC7108, TIC7109, TIC7110, TIC7111, TIC7589, TIC9258, and TIC9259. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding the pesticidal proteins provided. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran, Coleopteran, Hemipteran and Thysanopteran infestation are provided which contain recombinant nucleic acid sequences encoding the disclosed pesticidal proteins. Methods for detecting the presence of the recombinant nucleic acid sequences or the protein of the present invention in a biological sample, and methods of controlling Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran species pests using the disclosed pesticidal proteins are also provided.
    Type: Application
    Filed: September 10, 2024
    Publication date: January 2, 2025
    Inventors: David J. Bowen, Catherine A. Chay, Todd A. Ciche, Stanislaw Flasinski, Arlene R. Howe, Jason S. Milligan, James K. Roberts, Yong Yin
  • Patent number: 12123011
    Abstract: Pesticidal proteins exhibiting toxic activity against Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran pest species are disclosed, and include, but are not limited to, TIC6280, TIC6281, TIC6282, TIC6283, TIC8808, TIC9480, TIC9257, TIC7106, TIC7017, TIC7107, TIC7108, TIC7109, TIC7110, TIC7111, TIC7589, TIC9258, and TIC9259. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding the pesticidal proteins provided. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran, Coleopteran, Hemipteran and Thysanopteran infestation are provided which contain recombinant nucleic acid sequences encoding the disclosed pesticidal proteins. Methods for detecting the presence of the recombinant nucleic acid sequences or the protein of the present invention in a biological sample, and methods of controlling Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran species pests using the disclosed pesticidal proteins are also provided.
    Type: Grant
    Filed: October 4, 2022
    Date of Patent: October 22, 2024
    Assignee: Monsanto Technology LLC
    Inventors: David J. Bowen, Catherine A. Chay, Todd A. Ciche, Stanislaw Flasinski, Arlene R. Howe, Jason S. Milligan, James K. Roberts, Yong Yin
  • Publication number: 20240287539
    Abstract: Insecticidal proteins exhibiting toxic activity against Coleopteran and Lepidopteran pest species are disclosed, and include, but are not limited to, TIC3668, TIC3669, TIC3670, TIC4076, TIC4078, TIC4260, TIC4346, TIC4826, TIC4861, TIC4862, TIC4863, TIC11239, TIC11243, TIC11256, TIC4544, TIC4545, TIC6871, TIC7429, TIC7497, TIC7511, TIC7513, TIC7518, TIC7524, TIC7526, TIC7528, TIC7535 and TIC-3668-type proteins. DNA molecules and constructs are provided which contain a polynucleotide sequence encoding one or more of the disclosed TIC3668-type proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran and Coleopteran infestation are provided which contain polynucleotide sequences encoding the insecticidal proteins of the present invention.
    Type: Application
    Filed: January 30, 2024
    Publication date: August 29, 2024
    Inventors: Gregory J. Bean, David J. Bowen, Catherine A. Chay, Arlene R. Howe, Jason S. Milligan, Yong Yin
  • Publication number: 20240207703
    Abstract: A golf bag with a removable snap-in strap system wherein the strap system comprises a set of heterogeneous connectors that fasten a set straps to the golf bag. The connectors are able to accommodate the dominant hand of the user through a variety of heterogeneous configurations of the connectors, including geometry, ability to angle the straps, and surface area. These configurations allow the straps to create more arm space for the user, an easier assembly to a corresponding divider top, and equal distribution of weight across the straps, thereby, promoting comfort and balance for the user.
    Type: Application
    Filed: March 7, 2024
    Publication date: June 27, 2024
    Inventors: James D. Martell, Jason S. Milligan
  • Publication number: 20240198195
    Abstract: Described herein is a golf bag with a collapsible pocket assembly. The golf bag can comprise a first pocket, a second pocket, and a third pocket, wherein the third pocket comprises a wall. The third pocket wall can comprise a first region and a second region, wherein the first region of the third pocket wall is the same wall as at least one of the sidewalls of the second pocket. When shipping golf bags, the golf bag flats oftentimes must be shipped separately from the golf bag tops. The instant golf bag can be collapsed for shipping, allowing the golf bag tops to be partially installed onto the golf bag flats prior to shipping, reducing shipping and assembly labor costs.
    Type: Application
    Filed: February 27, 2024
    Publication date: June 20, 2024
    Inventors: James D. Martell, Brian J. McGuire, Jason S. Milligan
  • Patent number: 11925842
    Abstract: A golf bag with a removable snap-in strap system wherein the strap system comprises a set of heterogeneous connectors that fasten a set straps to the golf bag. The connectors are able to accommodate the dominant hand of the user through a variety of heterogeneous configurations of the connectors, including geometry, ability to angle the straps, and surface area. These configurations allow the straps to create more arm space for the user, an easier assembly to a corresponding divider top, and equal distribution of weight across the straps, thereby, promoting comfort and balance for the user.
    Type: Grant
    Filed: December 1, 2021
    Date of Patent: March 12, 2024
    Assignee: KARSTEN MANUFACTURING CORPORATION
    Inventors: James D. Martell, Jason S. Milligan
  • Patent number: 11920145
    Abstract: Insecticidal proteins exhibiting toxic activity against Coleopteran and Lepidopteran pest species are disclosed, and include, but are not limited to, TIC3668, TIC3669, TIC3670, TIC4076, TIC4078, TIC4260, TIC4346, TIC4826, TIC4861, TIC4862, TIC4863, TIC11239, TIC11243, TIC11256, TIC4544, TIC4545, TIC6871, TIC7429, TIC7497, TIC7511, TIC7513, TIC7518, TIC7524, TIC7526, TIC7528, TIC7535 and TIC-3668-type proteins. DNA molecules and constructs are provided which contain a polynucleotide sequence encoding one or more of the disclosed TIC3668-type proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran and Coleopteran infestation are provided which contain polynucleotide sequences encoding the insecticidal proteins of the present invention.
    Type: Grant
    Filed: September 27, 2021
    Date of Patent: March 5, 2024
    Assignee: Monsanto Technology LLC
    Inventors: Gregory J. Bean, David J. Bowen, Catherine A. Chay, Arlene R. Howe, Jason S. Milligan, Yong Yin
  • Patent number: 11911673
    Abstract: Described herein is a golf bag with a collapsible pocket assembly. The golf bag can comprise a first pocket, a second pocket, and a third pocket, wherein the third pocket comprises a wall. The third pocket wall can comprise a first region and a second region, wherein the first region of the third pocket wall is the same wall as at least one of the sidewalls of the second pocket. When shipping golf bags, the golf bag flats oftentimes must be shipped separately from the golf bag tops. The instant golf bag can be collapsed for shipping, allowing the golf bag tops to be partially installed onto the golf bag flats prior to shipping, reducing shipping and assembly labor costs.
    Type: Grant
    Filed: July 17, 2020
    Date of Patent: February 27, 2024
    Assignee: Karsten Manufacturing Corporation
    Inventors: James D. Martell, Brian J. McGuire, Jason S. Milligan
  • Publication number: 20240050821
    Abstract: Described herein is a golf bag with a sub-assembly and a stand assembly that together form a carry bag. The sub-assembly can comprise a divider top, a base, a divider sleeve, one or more stays that secure the base to the divider top, and a flat. The stand assembly can comprise a pair of legs, a spring, a pair of brackets for attaching the spring to the legs, and a pair of leg end cap protectors. When strapped to a golf cart, a golf bag can rub against portions of the cart, wearing paint off the legs. The instant golf bag comprises leg end cap protectors that can prevent wear on an upper portion of the legs. Furthermore, the stand assembly can be shipped disconnected from the sub-assembly to allow the sub-assembly to collapse and reduce shipping box size.
    Type: Application
    Filed: October 17, 2023
    Publication date: February 15, 2024
    Inventors: James D. Martell, John Loudenslager, Brian McGuire, Ryan Bruce, David A. Higdon, Jason S. Milligan
  • Patent number: 11825850
    Abstract: Pesticidal proteins exhibiting toxic activity against Lepidopteran pest species are disclosed, and include, but are not limited to, TIC4029, TIC4029_1, and TIC4029_8. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding one or more of the disclosed pesticidal proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran infestation are provided which contain recombinant nucleic acid sequences encoding pesticidal proteins of the TIC4029 class. Methods for detecting the presence of the recombinant nucleic acid sequences or the proteins of the TIC4029 class in a biological sample, and methods of controlling Lepidopteran species pests using any of the TIC4029, TIC4029_1, and TIC4029_8 pesticidal proteins are also provided.
    Type: Grant
    Filed: December 20, 2021
    Date of Patent: November 28, 2023
    Inventors: David J. Bowen, Catherine A. Chay, Arlene R. Howe, Matthew S. Marengo, Jason Meyer, Jason S Milligan, Brian E. Weiner
  • Publication number: 20230348543
    Abstract: Disclosed herein are nucleotide sequences encoding an insecticidal protein exhibiting Lepidopteran inhibitory activity, as well as novel insecticidal proteins referred to herein as a BCW 001, BCW 002, BCW 003, and BCW toxic protein-containing chimeras and BCW toxin insecticide, transgenic plants expressing the chimeras or the insecticide, and methods for detecting the presence of the nucleotide sequences or the insecticide in a biological sample.
    Type: Application
    Filed: May 17, 2023
    Publication date: November 2, 2023
    Inventors: James A. BAUM, David J. BOWEN, Catherine A. CHAY, David J. CHI, William P. CLINTON, Crystal L. DART, Leigh ENGLISH, Stanislaw FLASINSKI, Victor M. GUZOV, Kevin A. JARRELL, Uma R. KESANAPALLI, Thomas M. MALVAR, Robert M. MCCARROLL, Jason S. MILLIGAN, Jay P. MORGENSTERN, Deborah G. RUCKER, Sara A. SALVADOR, Temple F. SMITH, Carlos E. SOTO, Collin M. STULTZ, Brian M. TURCZYK, Ty T. VAUGHN, Moritz W.F. VON RECHENBERG
  • Patent number: 11786790
    Abstract: Described herein is a golf bag with a sub-assembly and a stand assembly that together form a carry bag. The sub-assembly can comprise a divider top, a base, a divider sleeve, one or more stays that secure the base to the divider top, and a flat. The stand assembly can comprise a pair of legs, a spring, a pair of brackets for attaching the spring to the legs, and a pair of leg end cap protectors. When strapped to a golf cart, a golf bag can rub against portions of the cart, wearing paint off the legs. The instant golf bag comprises leg end cap protectors that can prevent wear on an upper portion of the legs. Furthermore, the stand assembly can be shipped disconnected from the sub-assembly to allow the sub-assembly to collapse and reduce shipping box size.
    Type: Grant
    Filed: March 19, 2020
    Date of Patent: October 17, 2023
    Assignee: KARSTEN MANUFACTURING CORPORATION
    Inventors: James D. Martell, John Loudenslager, Brian McGuire, Ryan Bruce, David A. Higdon, Jason S. Milligan
  • Publication number: 20230301308
    Abstract: Pesticidal proteins exhibiting inhibitory, suppressive, and toxic activity against Lepidopteran pest species are disclosed, and include, but are not limited to, TIC4064 and TIC4064 amino acid sequence variants. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding one or more of the disclosed pesticidal proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran infestation are provided which contain recombinant nucleic acid sequences encoding the pesticidal proteins of the present invention. Methods for detecting the presence of the recombinant nucleic acid sequences or the proteins of the present invention in a biological sample, and methods of controlling Lepidopteran species pests using any of the TIC4064 and TIC4064 amino acid sequence variant pesticidal proteins are also provided.
    Type: Application
    Filed: February 28, 2023
    Publication date: September 28, 2023
    Inventors: David J. Bowen, Catherine A. Chay, Arlene R. Howe, Jason S. Milligan, Christina M. Taylor, Monika R. VanGordon, Kimberly M. Wegener, Brian E. Weiner
  • Patent number: 11744250
    Abstract: Pesticidal proteins exhibiting inhibitory, suppressive, and toxic activity against Lepidopteran pest species are disclosed, and include, but are not limited to, TIC4064 and TIC4064 amino acid sequence variants. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding one or more of the disclosed pesticidal proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran infestation are provided which contain recombinant nucleic acid sequences encoding the pesticidal proteins of the present invention. Methods for detecting the presence of the recombinant nucleic acid sequences or the proteins of the present invention in a biological sample, and methods of controlling Lepidopteran species pests using any of the TIC4064 and TIC4064 amino acid sequence variant pesticidal proteins are also provided.
    Type: Grant
    Filed: December 22, 2021
    Date of Patent: September 5, 2023
    Assignee: MONSANTO TECHNOLOGY, LLC
    Inventors: David J. Bowen, Catherine A. Chay, Arlene R. Howe, Jason S. Milligan, Christina M. Taylor, Monika R. VanGordon, Kimberly M. Wegener, Brian E. Weiner
  • Patent number: 11702455
    Abstract: Disclosed herein are nucleotide sequences encoding an insecticidal protein exhibiting Lepidopteran inhibitory activity, as well as novel insecticidal proteins referred to herein as a BCW 001, BCW 002, BCW 003, and BCW toxic protein-containing chimeras and BCW toxin insecticide, transgenic plants expressing the chimeras or the insecticide, and methods for detecting the presence of the nucleotide sequences or the insecticide in a biological sample.
    Type: Grant
    Filed: June 5, 2020
    Date of Patent: July 18, 2023
    Assignee: Monsanto Technology LLC
    Inventors: James A. Baum, David J. Bowen, Catherine A. Chay, David J. Chi, William P. Clinton, Crystal L. Dart, Leigh English, Stanislaw Flasinski, Victor M. Guzov, Kevin A. Jarrell, Uma R. Kesanapalli, Thomas M. Malvar, Robert M. McCarroll, Jason S. Milligan, Jay P. Morgenstern, Deborah G. Rucker, Sara A. Salvador, Temple F. Smith, Carlos E. Soto, Collin M. Stultz, Brian M. Turczyk, Ty T. Vaughn, Moritz W. F. Von Rechenberg
  • Publication number: 20230108260
    Abstract: Pesticidal proteins exhibiting toxic activity against Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran pest species are disclosed, and include, but are not limited to, TIC6280, TIC6281, TIC6282, TIC6283, TIC8808, TIC9480, TIC9257, TIC7106, TIC7017, TIC7107, TIC7108, TIC7109, TIC7110, TIC7111, TIC7589, TIC9258, and TIC9259. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding the pesticidal proteins provided. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran, Coleopteran, Hemipteran and Thysanopteran infestation are provided which contain recombinant nucleic acid sequences encoding the disclosed pesticidal proteins. Methods for detecting the presence of the recombinant nucleic acid sequences or the protein of the present invention in a biological sample, and methods of controlling Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran species pests using the disclosed pesticidal proteins are also provided.
    Type: Application
    Filed: October 4, 2022
    Publication date: April 6, 2023
    Inventors: David J. Bowen, Catherine A. Chay, Todd A. Ciche, Stanislaw Flasinski, Arlene R Howe, Jason S. Milligan, James K. Roberts, Yong Yin
  • Patent number: 11492640
    Abstract: Pesticidal proteins exhibiting toxic activity against Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran pest species are disclosed, and include, but are not limited to, TIC6280, TIC6281, TIC6282, TIC6283, TIC8808, TIC9480, TIC9257, TIC7106, TIC7017, TIC7107, TIC7108, TIC7109, TIC7110, TIC7111, TIC7589, TIC9258, and TIC9259. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding the pesticidal proteins provided. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran, Coleopteran, Hemipteran and Thysanopteran infestation are provided which contain recombinant nucleic acid sequences encoding the disclosed pesticidal proteins. Methods for detecting the presence of the recombinant nucleic acid sequences or the protein of the present invention in a biological sample, and methods of controlling Coleopteran, Lepidopteran, Hemipteran, and Thysanopteran species pests using the disclosed pesticidal proteins are also provided.
    Type: Grant
    Filed: June 8, 2020
    Date of Patent: November 8, 2022
    Assignee: MONSANTO TECHNOLOGY, LLC
    Inventors: David J. Bowen, Catherine A. Chay, Todd A. Ciche, Stanislaw Flasinski, Arlene R. Howe, Jason S. Milligan, James K. Roberts, Yong Yin
  • Publication number: 20220256863
    Abstract: Pesticidal proteins exhibiting toxic activity against Lepidopteran pest species are disclosed, and include, but are not limited to, TIC4029, TIC4029_1, and TIC4029_8. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding one or more of the disclosed pesticidal proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran infestation are provided which contain recombinant nucleic acid sequences encoding pesticidal proteins of the TIC4029 class. Methods for detecting the presence of the recombinant nucleic acid sequences or the proteins of the TIC4029 class in a biological sample, and methods of controlling Lepidopteran species pests using any of the TIC4029, TIC4029_1, and TIC4029_8 pesticidal proteins are also provided.
    Type: Application
    Filed: December 20, 2021
    Publication date: August 18, 2022
    Inventors: David J. Bowen, Catherine A. Chay, Arlene R. Howe, Matthew S. Marengo, Jason Meyer, Jason S. Milligan, Brian E. Weiner
  • Publication number: 20220192200
    Abstract: Pesticidal proteins exhibiting inhibitory, suppressive, and toxic activity against Lepidopteran pest species are disclosed, and include, but are not limited to, TIC4064 and TIC4064 amino acid sequence variants. DNA constructs are provided which contain a recombinant nucleic acid sequence encoding one or more of the disclosed pesticidal proteins. Transgenic plants, plant cells, seed, and plant parts resistant to Lepidopteran infestation are provided which contain recombinant nucleic acid sequences encoding the pesticidal proteins of the present invention. Methods for detecting the presence of the recombinant nucleic acid sequences or the proteins of the present invention in a biological sample, and methods of controlling Lepidopteran species pests using any of the TIC4064 and TIC4064 amino acid sequence variant pesticidal proteins are also provided.
    Type: Application
    Filed: December 22, 2021
    Publication date: June 23, 2022
    Inventors: David J. Bowen, Catherine A. Chay, Arlene R. Howe, Jason S. Milligan, Christina M. Taylor, Monika R. VanGordon, Kimberly M. Wegener, Brian E. Weiner