Patents by Inventor Yunxing Cui

Yunxing Cui 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: 9540655
    Abstract: This invention relates in part to soybean event pDAB8264.44.06.1 and includes a 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 pDAB8264.44.06.1 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: December 2, 2011
    Date of Patent: January 10, 2017
    Assignees: Dow AgroSciences LLC, MS Technologies, L.L.C.
    Inventors: Yunxing Cui, Thomas Hoffman, Ning Zhou, Stephen N. Novak, Julissa Colon, Dawn Parkhurst, Sandra Toledo, Terry Wright, Sean Russell, Bruce Held, Vaithilingam Sekar
  • Publication number: 20160295862
    Abstract: This invention is related to methods for improving plant height and/or yield of crop plants that are resistant to herbicide 2,4-D by treating the plants with 2,4-D at application rates which are not harmful to the plants. In particular, provided is a method using 2,4-D application to increase yield of crop plants that express an AAD-12 gene for 2,4-D resistance. Soybeans are a preferred crop for use according to the subject invention.
    Type: Application
    Filed: June 16, 2016
    Publication date: October 13, 2016
    Inventors: Thomas HOFFMAN, Yunxing CUI, Malcolm OBOURN, Dawn PARKHURST, Barry WIGGINS, Michael VERCAUTEREN, Terrence Anthony WALSH
  • Publication number: 20140041083
    Abstract: This invention relates in part to soybean event pDAB8264.44.06.1 and includes a 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 pDAB8264.44.06.1 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: December 2, 2011
    Publication date: February 6, 2014
    Applicants: MS TECHNOLOGIES, LLC, DOW AGROSCIENCES LLC
    Inventors: Yunxing Cui, Thomas Hoffman, Ning Zhou, Stephen N. Novak, Julissa Colon, Dawn Parkhurst, Sandra Toledo, Terry Wright, Sean Russell, Bruce Held, Vaithilingam Sekar
  • Patent number: 8598413
    Abstract: This invention relates in part to plant breeding and herbicide tolerant plants. This invention includes a novel aad-1 transformation event in corn plants comprising a polynucleotide sequence, as described herein, inserted into a specific site within the genome of a corn cell. In some embodiments, said event/polynucleotide sequence can be “stacked” with other traits, including, for example, other herbicide tolerance gene(s) and/or insect-inhibitory proteins. Additionally, the subject invention provides assays for detecting the presence of the subject event in a sample (of corn grain, for example). The assays can be based on the DNA sequence of the recombinant construct, inserted into the corn genome, and on the genomic sequences flanking the insertion site. Kits and conditions useful in conducting the assays are also provided. The subject invention also includes related methods of controlling weeds.
    Type: Grant
    Filed: February 22, 2011
    Date of Patent: December 3, 2013
    Assignee: Dow AgroSciecnes, LLC.
    Inventors: Yunxing Cui, Jill Rene Bryan, Donald Glynn Maum, Terry Wright, Jennifer L. Hamilton, Nicole L Arnold, Nathan VanOpdorp, Tina Marie Kaiser, Ning Zhou, Steve Allan McMaster, Mark Allen Peterson, Leon Bo Braxton, Gregory J. Gilles
  • Publication number: 20110289620
    Abstract: This invention relates in part to plant breeding and herbicide tolerant plants. This invention includes a novel aad-1 transformation event in corn plants comprising a polynucleotide sequence, as described herein, inserted into a specific site within the genome of a corn cell. In some embodiments, said event/polynucleotide sequence can be “stacked” with other traits, including, for example, other herbicide tolerance gene(s) and/or insect-inhibitory proteins. Additionally, the subject invention provides assays for detecting the presence of the subject event in a sample (of corn grain, for example). The assays can be based on the DNA sequence of the recombinant construct, inserted into the corn genome, and on the genomic sequences flanking the insertion site. Kits and conditions useful in conducting the assays are also provided. The subject invention also includes related methods of controlling weeds.
    Type: Application
    Filed: February 22, 2011
    Publication date: November 24, 2011
    Applicant: Dow AgroSciences LLC
    Inventors: Yunxing Cui, Jill Rene Bryan, Donald Glynn Maum, Terry Wright, Jennifer L. Hamilton, Nicole L. Arnold, Nathan Vanopdorp, Tina Marie Kaiser, Ning Zhou, Steve Allan McMaster, Mark Allen Peterson, Leon Bo Braxton, Gregory J. Gilles