Patents by Inventor EMILY C. DIERKING

EMILY C. DIERKING 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: 10081814
    Abstract: Soybean seeds having an ultra-low raffinose and stachyose phenotype. Also disclosed is a mutant allele of soybean designated SG-ULRFO which results in an ultra-low raffinose and stachyose phenotype. The present invention also relates to a soybean seed, a soybean plant and parts of a soybean plant and a soybean hybrid which comprises the mutant allele. Also disclosed are ultra-low raffinose and stachyose soybean seeds having unexpectedly increased germination rates when compared with soybean lines not having a low raffinose and stachyose seed content. Also disclosed are mutant RS3 and RS4 genes with polymorphisms which contribute to the ultra-low raffinose and stachyose phenotype as described in the present invention. The present invention also relates for method of using the soybean seeds and plants of the present invention, to plants parts derived from the present invention, to methods of producing transgenic plants using the plants and seeds of the present invention.
    Type: Grant
    Filed: June 21, 2013
    Date of Patent: September 25, 2018
    Assignees: Schillinger Genetics, Inc., The United States of America, as represented by the Secretary of Agriculture
    Inventors: John A. Schillinger, Emily C. Dierking, Kristin D. Bilyeu
  • Patent number: 8728726
    Abstract: A mutation in the gene encoding the raffinose synthase 2 enzyme, RS2, in soybean, Glycine max (L.) Merr., is associated with a reduced raffinose and stachyose seed phenotype. Soybean homozygous for a mutant allele of the RS2 gene which encodes an amino acid change to isoleucine at position 107 of the enzyme's amino acid sequence exhibit significantly reduced seed raffinose and stachyose content, and increased seed sucrose content. Nucleic acid samples of soybean may be assayed for the presence of this mutant allele, and soybean containing the allele may be selected for breeding to generate reduced raffinose and stachyose soybean lines. Alternatively, the mutation may be detected by analysis of the RS2 enzyme produced in the soybean to determine the presence of either an isoleucine or a threonine at amino acid 107. Molecular markers have been developed for detecting the presence or absence of the mutant allele.
    Type: Grant
    Filed: July 6, 2011
    Date of Patent: May 20, 2014
    Assignee: The United States of America, as represented by the Secretary of Agriculture
    Inventors: Kristin D. Bilyeu, Emily C. Dierking
  • Publication number: 20130318660
    Abstract: Soybean seeds having an ultra-low raffinose and stachyose phenotype. Also disclosed is a mutant allele of soybean designated SG-ULRFO which results in an ultra-low raffinose and stachyose phenotype. The present invention also relates to a soybean seed, a soybean plant and parts of a soybean plant and a soybean hybrid which comprises the mutant allele. Also disclosed are ultra-low raffinose and stachyose soybean seeds having unexpectedly increased germination rates when compared with soybean lines not having a low raffinose and stachyose seed content. Also disclosed are mutant RS3 and RS4 genes with polymorphisms which contribute to the ultra-low raffinose and stachyose phenotype as described in the present invention. The present invention also relates for method of using the soybean seeds and plants of the present invention, to plants parts derived from the present invention, to methods of producing transgenic plants using the plants and seeds of the present invention.
    Type: Application
    Filed: June 21, 2013
    Publication date: November 28, 2013
    Inventors: John A. Schillinger, Emily C. Dierking, Kristin D. Bilyeu
  • Patent number: 8471107
    Abstract: Soybean seeds having an ultra-low raffinose and stachyose phenotype. Also disclosed is a mutant allele of soybean designated SG-ULRFO which results in an ultra-low raffinose and stachyose phenotype. The present invention also relates to a soybean seed, a soybean plant and parts of a soybean plant and a soybean hybrid which comprises the mutant allele. Also disclosed are ultra-low raffinose and stachyose soybean seeds having unexpectedly increased germination rates when compared with soybean lines not having a low raffinose and stachyose seed content. Also disclosed are mutant RS3 and RS4 genes with polymorphisms which contribute to the ultra-low raffinose and stachyose phenotype as described in the present invention. The present invention also relates for method of using the soybean seeds and plants of the present invention, to plants parts derived from the present invention, to methods of producing transgenic plants using the plants and seeds of the present invention.
    Type: Grant
    Filed: April 16, 2010
    Date of Patent: June 25, 2013
    Assignees: Schillinger Genetics, Inc., The United States of America as Represented by the Secretary of Agriculture
    Inventors: John A. Schillinger, Emily C. Dierking, Kristin D. Bilyeu
  • Publication number: 20110003045
    Abstract: Soybean seeds having an ultra-low raffinose and stachyose phenotype. Also disclosed is a mutant allele of soybean designated SG-ULRFO which results in an ultra-low raffinose and stachyose phenotype. The present invention also relates to a soybean seed, a soybean plant and parts of a soybean plant and a soybean hybrid which comprises the mutant allele. Also disclosed are ultra-low raffinose and stachyose soybean seeds having unexpectedly increased germination rates when compared with soybean lines not having a low raffinose and stachyose seed content. Also disclosed are mutant RS3 and RS4 genes with polymorphisms which contribute to the ultra-low raffinose and stachyose phenotype as described in the present invention. The present invention also relates for method of using the soybean seeds and plants of the present invention, to plants parts derived from the present invention, to methods of producing transgenic plants using the plants and seeds of the present invention.
    Type: Application
    Filed: April 16, 2010
    Publication date: January 6, 2011
    Inventors: JOHN A. SCHILLINGER, EMILY C. DIERKING, KRISTIN D. BILYEU