IP Library Granted Patent US 8,829,273
Granted Patent B2
US 8,829,273 · App. 13/295,316 · Granted Sep 9, 2014

DGAT genes from

Inventors: Knut Meyer (Wilmington, DE); Kevin L Stecca (New Castle, DE)
Assignee: E.I. du Pont de Nemours and Company
C12N9/1033C12N9/1037C12N9/1029C12N15/8247
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Quick Facts
Patent No.
US 8,829,273
App. No.
13/295,316
Granted
Sep 9, 2014
Kind
B2
Abstract

Transgenic soybean seed having increased total fatty acid content of at least 20% and altered fatty acid profiles when compared to the total fatty acid content of non-transgenic, null segregant soybean seed are described. DGAT genes from Yarrowia lipolytica combined with plastidic phosphoglucomutase down regulation are used to achieve the increase in seed storage lipids.

Claims (16)

1. A transgenic soybean seed having increased total fatty acid content of at least 20% when compared to the total fatty acid content of a non-transgenic, null segregant soybean seed wherein said seed comprises at least one recombinant construct having at least one DGAT sequence, a construct downregulating plastidic phosphoglucomutase activity and a construct downregulating GAS activity wherein the DGAT sequence, the plastidic phosphoglucomutase and GAS construct can be in the same recombinant construct or in separate recombinant constructs.

2. A meal obtained from a transgenic soybean seed having increased total fatty acid content of at least 20% when compared to the total fatty acid content of a non-transgenic, null segregant soybean seed wherein said seed comprises at least one recombinant construct having at least one DGAT sequence and a construct downregulating plastidic phosphoglucomutase activity wherein the DGAT sequence and the plastidic phosphoglucomutase construct can be in the same recombinant construct or in separate recombinant constructs, further wherein protein content is increased by at least 1.5% points when compared to the protein content of a meal obtained from a non-transgenic, null segregant soybean seed.

3. The meal of claim 2 , wherein the DGAT sequence is a Yarrowia DGAT sequence.

4. The meal of claim 1 or 2 , further wherein soluble carbohydrate content is reduced when compared to the soluble carbohydrate content of a meal obtained from a non-transgenic, null segregant soybean seed.

5. The meal of claim 4 , wherein the soluble carbohydrate content is reduced by at least 17% when compared to the soluble carbohydrate content of a meal obtained from a non-transgenic, null segregant soybean seed.

6. The meal of claim 5 , wherein the soluble carbohydrate content is at least one selected from the group of stachyose and raffinose.

7. A method for increasing the protein content and reducing the soluble carbohydrate content of a meal obtained from a soybean seed comprising:

(a) transforming at least one soybean cell with at least one recombinant construct having at least one DGAT sequence and a construct downregulating plastidic phosphoglucomutase activity wherein the DGAT sequence and the plastidic phosphoglucomutase construct can be in the same recombinant construct or in separate recombinant constructs;

(b) selecting the transformed soybean cell(s) of step (a) or progeny thereof having an increased protein content and reduced soluble carbohydrate content of at least 17% when compared to the protein and soluble carbohydrate content of a non-transgenic, null segregant soybean seed;

(c) preparing a meal from the transgenic soybean seed of step (b) or from progeny thereof.

8. A method for increasing the protein content and reducing the soluble carbohydrate content of a meal obtained from a soybean seed comprising:

(a) transforming at least one soybean cell with at least one recombinant construct having at least one DGAT sequence, a construct downregulating plastidic phosphoglucomutase activity and a construct downregulating GAS activity wherein the DGAT sequence, the plastidic phosphoglucomutase and GAS construct can be in the same recombinant construct or in separate recombinant constructs;

(b) selecting the transformed soybean cell(s) of step (a) or progeny thereof having an increased protein content and reduced soluble carbohydrate content of at least 17% when compared to the total fatty acid content and soluble carbohydrate content of a non-transgenic, null segregant soybean seed;

(c) preparing a meal from the transgenic soybean seed of step (b) or from the progeny.

9. The method of claim 8 , wherein the soluble carbohydrate content is at least one selected from the group of stachyose and raffinose.

10. Progeny obtained from the transgenic soybeans of claim 1 or 2 , wherein said progeny comprise said construct or constructs.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2016
From: MEYER, KNUT; STECCA, KEVIN L
To: E. I. DU PONT DE NEMOURS AND COMPANY
Reel/Frame 039030/0245 →
Continuity (3)
Continuation 12470509 · May 22, 2009
Provisional Application 61055580 · May 23, 2008
Related Publication 20120058245A1 · Mar 8, 2012