IP Library Granted Patent US 9,593,344
Granted Patent B2
US 9,593,344 · App. 14/790,139 · Granted Mar 14, 2017

Enhanced triacylglycerol accumulation in vegetative tissues of plants

Inventors: Changcheng Xu (Calverton, NY); Jilian Fan (Calverton, NY); Chengshi Yan (Coppell, TX); John Shanklin (Shoreham, NY)
Assignee: Brookhaven Science Associates, LLC
C12N15/8247C12N15/8218C12N5/14
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Quick Facts
Patent No.
US 9,593,344
App. No.
14/790,139
Granted
Mar 14, 2017
Kind
B2
Abstract

In the tgd1-1 mutant that displays substantially enhanced TAG synthesis and turnover, disruption of SUGAR-DEPENDENT1 (SDP1) TAG lipase or PEROXISOMAL TRANSPORTER1 (PXA1) severely decreases FA turnover, leading to an increase in leaf TAG content up to 9% of dry weight and total leaf lipid by three-fold. The membrane lipid content and composition of tgd1-1 sdp1-4 and tgd1-1 pxa1-2 double mutants are altered and they are compromised in growth and development and fertility.

Claims (16)

1. A plant comprising a plant vegetative tissue comprising five percent or more of dry weight triacylglycerol (TAG) compounds wherein the plant is Arabidopsis thaliana, Beta vulgaris, Brassica napus, miscanthus, camellina , switchgrass, corn, sugarcane, sorghum, Sacharum spontaneum , soybean, sunflower, cotton, or duckweeds which are members of the Lemnoideae; in which a gene encoding a trigalactosyldiacylglycerol (TGD) protein is mutated and either a gene encoding a sugar dependent 1 (SDP1) triacylglycerol lipase is mutated or a gene encoding a peroxisomal transporter 1 (PXA1) protein is mutated, or both, wherein said mutations substantially inactivate said encoded protein, lipase and/or transporter.

2. The plant of claim 1 wherein the plant is Arabidopsis thaliana.

3. The plant of claim 1 wherein the tissue is selected from the group consisting of leaves, stems and roots.

4. The plant of claim 1 wherein the tissue is stems and leaves.

5. The plant of claim 1 wherein the tissue is leaves.

6. A plant comprising a plant vegetative tissue having five percent or more of dry weight triacylglycerol (TAG) compounds and a defective trigalactosyldiacylglycerol 1 (TGD 1) protein and either a defective sugar dependent triacylglycerol lipase (SDP1) or a defective peroxisomal transporter 1 (PXA1) protein, or both wherein the plant is Arabidopsis thaliana, Beta vulgaris, Brassica napus, miscanthus, camellina , switchgrass, corn, sugarcane, sorghum, Sacharum spontaneum , soybean, sunflower, cotton, or duckweeds which are members of the Lemnoideae.

7. A plant comprising a plant vegetative tissue having five percent or more of dry weight triacylglycerol (TAG) compounds and a defective gene encoding a substantially an inactive TGD1 protein and either a defective gene encoding a defective SDP1 lipase or a defective PXA1 protein, or both wherein the plant is Arabidopsis thaliana, Beta vulgaris, Brassica napus, miscanthus, camellina , switchgrass, corn, sugarcane, sorghum, Sacharum spontaneum , soybean, sunflower, cotton, or duckweeds which are members of the Lemnoideae.

8. The plant of claim 7 wherein the defective gene encoding the inactive TGD1 protein is tgd l-1.

9. The plant of claim 7 wherein said defective genes are created by mutation, DNA insertion, DNA deletion, or by knockout.

10. A plant comprising a plant vegetative tissue having five percent or more of dry weight triacylglycerol (TAG) compounds and substantially suppressed TGD1 protein activity and either a substantially suppressed SDP1 lipase activity or a substantially suppressed PXA1 transporter activity, or both wherein the plant is Arabidopsis thaliana, Beta vulgaris, Brassica napus, miscanthus, camellina , switchgrass, corn, sugarcane, sorghum, Sacharum spontaneum , soybean, sunflower, cotton, or duckweeds which are members of the Lemnoideae.

11. The plant of claim 10 wherein suppressed activity of one or more of said protein, lipase or transporter is the result of introduction of one or more inhibitory RNA sequences.

12. A plant comprising a plant vegetative tissue having five percent or more of dry weight triacylglycerol (TAG) compounds and mutant plant cells in which TGD1 protein and either SDP1 or PXA1 protein, or both, are substantially inactive wherein the plant is Arabidopsis thaliana, Beta vulgaris, Brassica napus, miscanthus, camellina , switchgrass, corn, sugarcane, sorghum, Sacharum spontaneum , soybean, sunflower, cotton, or duckweeds which are members of the Lemnoideae.

13. The plant of claim 12 wherein the plant is Arabidopsis thaliana.

14. The plant of claim 6 wherein activity of TGD1 and either or both SDP1 and PXA1 protein is less than 50% of the activity of wild type plant cells.

15. The plant of claim 14 wherein activity of TGD1 protein and either or both SDP1 and PXA1 protein is less than 70% of the activity of wild type plant cells.

16. The plant of claim 15 wherein activity of TGD1 protein and either or both SDP1 and PXA1 protein is less than 90% of the activity of wild type plant cells.

Assignments (2)
CONFIRMATORY LICENSE Recorded Aug 11, 2015
From: BROOKHAVEN SCIENCES ASSOCIATES, LLC
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 036347/0651 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2015
From: XU, CHANGCHENG; FAN, JILIAN; YAN, CHENGSHI; SHANKLIN, JOHN
To: BROOKHAVEN SCIENCE ASSOCIATES, LLC
Reel/Frame 036180/0862 →
Continuity (2)
Provisional Application 62020640 · Jul 3, 2014
Related Publication 20160002651A1 · Jan 7, 2016