Patents by Inventor Sean Michael Russell

Sean Michael Russell 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: 9732353
    Abstract: This invention relates to soybean event pDAB8264.42.32.1 and includes novel expression cassettes and transgenic inserts comprising multiple traits conferring resistance to glyphosate, aryloxyalkanoate, and glufosinate herbicides. This invention also relates in part to methods of controlling resistant weeds, plant breeding and herbicide tolerant plants. In some embodiments, the event sequence can be “stacked” with other traits, including, for example, other herbicide tolerance gene(s) and/or insect-inhibitory proteins. This invention further relates in part to endpoint TAQMAN PCR assays for the detection of Event pDAB8264.42.32.1 in soybeans and related plant material. Some embodiments can perform high throughput zygosity analysis of plant material and other embodiments can be used to uniquely identify the zygosity of and breed soybean lines comprising the event of the subject invention. Kits and conditions useful in conducting these assays are also provided.
    Type: Grant
    Filed: July 13, 2012
    Date of Patent: August 15, 2017
    Assignees: Dow AgroSciences LLC, M.S. Technologies, L.L.C.
    Inventors: Thomas Hoffman, Ning Zhou, Dayakar Pareddy, Yunxing Cory Cui, Dawn Marie Parkhurst, Nathan Bard, Sandra Grace Toledo, Gregory Alan Bradfisch, Bruce Held, Vaithilingam Sekar, Lauren Clark, Sean Michael Russell, Kelly Ann Smith, Yang Wang, Terry R. Wright
  • Patent number: 9540656
    Abstract: This invention relates to soybean event pDAB8291.45.36.2, which includes a novel expression cassette comprising multiple traits conferring resistance to glyphosate, aryloxyalkanoate, and glufosinate herbicides. This invention also relates in part to methods of controlling resistant weeds, plant breeding, and herbicide tolerant plants. In some embodiments, the event sequence can be “stacked” with other traits, including, for example, other herbicide tolerance gene(s) and/or insect-inhibitory proteins. This invention further relates in part to detection methods, including endpoint TaqMan PCR assays, for the detection of Event pDAB8291.45.36.2 in soybeans and related plant material. Some embodiments can perform high throughput zygosity analysis of plant material and other embodiments can be used to uniquely identify the zygosity of and breed soybean lines comprising the event of the subject invention. Kits and conditions useful in conducting these assays are also provided.
    Type: Grant
    Filed: December 2, 2011
    Date of Patent: January 10, 2017
    Assignee: Dow AgroSciences LLC
    Inventors: Yunxing Cory Cui, Thomas Hoffman, Ning Zhou, Stephen Novak, Julissa Colon, Dawn M. Parkhurst, Sandra Grace Toledo, Terry R. Wright, Sean Michael Russell, Bruce Held, Vaithilingam Sekar
  • Patent number: 9150877
    Abstract: Provided are constructs and methods for expressing multiple genes in plant cells and/or plant tissues using a disclosed bidirectional promoter from Brassica napus or Brassica bidirectional constitutive promoter (BBCP). The constructs provided comprise at least one such bi-directional promoter linked to multiple gene expression cassettes, wherein each of the gene expression cassettes comprises at least one transgene. In some embodiments, the constructs and methods provided allow expression of genes between two and twenty.
    Type: Grant
    Filed: October 17, 2012
    Date of Patent: October 6, 2015
    Assignee: Dow AgroSciences LLC
    Inventors: Manju Gupta, Sean Michael Russell, Liu Yin Shen, Sivarama Reddy Chennareddy, Jyoti Rout, Stephen Novak
  • Publication number: 20130338006
    Abstract: This invention relates to soybean event pDAB8291.45.36.2, which includes a novel expression cassette comprising multiple traits conferring resistance to glyphosate, aryloxyalkanoate, and glufosinate herbicides. This invention also relates in part to methods of controlling resistant weeds, plant breeding, and herbicide tolerant plants. In some embodiments, the event sequence can be “stacked” with other traits, including, for example, other herbicide tolerance gene(s) and/or insect-inhibitory proteins. This invention further relates in part to detection methods, including endpoint TaqMan PCR assays, for the detection of Event pDAB8291.45.36.2 in soybeans and related plant material. Some embodiments can perform high throughput zygosity analysis of plant material and other embodiments can be used to uniquely identify the zygosity of and breed soybean lines comprising the event of the subject invention. Kits and conditions useful in conducting these assays are also provided.
    Type: Application
    Filed: December 2, 2011
    Publication date: December 19, 2013
    Applicants: MS TECHNOLOGIES, LLC, DOW AGROSCIENCES LLC
    Inventors: Yunxing Cory Cui, Thomas Hoffman, Ning Zhou, Stephen Novak, Julissa Colon, Dawn M. Parkhurst, Sandra Grace Toledo, Terry R. Wright, Sean Michael Russell, Bruce Held, Vaithilingam Sekar
  • Publication number: 20130055453
    Abstract: This invention relates to soybean event pDAB8264.42.32.1 and includes novel expression cassettes and transgenic inserts comprising multiple traits conferring resistance to glyphosate, aryloxyalkanoate, and glufosinate herbicides. This invention also relates in part to methods of controlling resistant weeds, plant breeding and herbicide tolerant plants. In some embodiments, the event sequence can be “stacked” with other traits, including, for example, other herbicide tolerance gene(s) and/or insect-inhibitory proteins. This invention further relates in part to endpoint TAQMAN PCR assays for the detection of Event pDAB8264.42.32.1 in soybeans and related plant material. Some embodiments can perform high throughput zygosity analysis of plant material and other embodiments can be used to uniquely identify the zygosity of and breed soybean lines comprising the event of the subject invention. Kits and conditions useful in conducting these assays are also provided.
    Type: Application
    Filed: July 13, 2012
    Publication date: February 28, 2013
    Applicants: MS TECHNOLOGIES, LLC, DOW AGROSCIENCES LLC
    Inventors: Thomas Hoffman, Ning Zhou, Dayakar Pareddy, Yunxing Cory Cui, Dawn Marie Parkhurst, Nathan Bard, Sandra Grace Toledo, Gregory Alan Bradfisch, Bruce Held, Vaithilingam Sekar, Lauren Clark, Sean Michael Russell, Kelley Ann Smith, Yang Wang, Terry R. Wright
  • Publication number: 20100004177
    Abstract: The subject invention relates to novel Xenorhabdus toxin complex (TC) proteins and genes that encode these proteins. More specifically, the subject invention relates to TC genes and proteins obtainable from Xenorhabdus bovienii strain ILM104.
    Type: Application
    Filed: September 3, 2009
    Publication date: January 7, 2010
    Applicant: Dow AgroSciences LLC
    Inventors: Patricia C. Apel-Birkhold, Timothy Denver Hey, Robin Leola Thompson, Thomas Meade, Ze-Sheng Li, Sean Michael Russell, Joel Jay Sheets, Justin Michael Lira, Kristin Julee Fencil, Jon Christopher Mitchell
  • Publication number: 20080253991
    Abstract: The invention is directed to a new method for the treatment of new onset Type I diabetes in mammals or for the treatment of pre-Type I diabetic mammals where the method comprises administering (a) anti-T cell therapy to the mammal and administering (b) an autoantigen and optional mucosal antigen composition, wherein (a) and (b) are administered concurrently or sequentially Exemplified is a treatment using a mixture of anti-CD3 antibodies, a glutamic acid decarboxylase (GAD) autoantigen, and an immunoregulatory cytokine Canme GAD sequences are also disclosed.
    Type: Application
    Filed: February 6, 2006
    Publication date: October 16, 2008
    Inventors: Anthony Jevnikar, Shengwu Ma, William Michael Ainley, Donald Joseph Merlo, Sean Michael Russell, Janna M. Armstrong
  • Patent number: 7285632
    Abstract: The subject invention relates to novel Xenorhabdus toxin complex (TC) proteins encoded by genes from Xenorhabdus bovienii strain ILM 104, and methods of controlling an insect with the toxin proteins.
    Type: Grant
    Filed: December 23, 2004
    Date of Patent: October 23, 2007
    Assignee: Dow AgroSciences LLC
    Inventors: Patricia C. Apel-Birkhold, Timothy Denver Hey, Robin Leola Thompson, Thomas Meade, Ze-Sheng Li, Sean Michael Russell, Joel Jay Sheets, Justin Michael Lira, Kristin Julee Fencil, Jon Christopher Mitchell