Generation of plants with altered oil, protein, or fiber content
View Patent ↗The present invention is directed to plants that display an improved oil quantity phenotype or an improved meal quality phenotype due to altered expression of an HIO nucleic acid. The invention is further directed to methods of generating plants with an improved oil quantity phenotype or improved meal quality phenotype.
1. A transgenic plant, comprising a plant transformation vector comprising a nucleotide sequence that encodes an HIO polypeptide comprising an amino acid sequence at least 95% identical to the amino acid sequence as set forth in SEQ ID NO: 2, whereby the transgenic plant has an increased oil content phenotype or an increased meal quality phenotype, relative to control plants.
2. The transgenic plant of claim 1 , which is selected from the group consisting of plants of the Brassica species, including canola and rapeseed, soy, corn, sunflower, cotton, cocoa, safflower, oil palm, coconut palm, flax, castor, peanut, wheat, oat, and rice.
3. A plant part obtained from the plant according to claim 1 .
4. The plant part of claim 3 , which is a seed.
5. Meal, feed, or food produced from the seed of claim 4 .
6. A method of producing oil comprising growing the transgenic plant of claim 1 and recovering oil from said plant.
7. The method of claim 6 , wherein the oil is recovered from a seed of the plant.
8. A feed, meal, grain, food, or seed from the transgenic plant of claim 1 , wherein the feed, meal, grain, food, or seed comprises a polypeptide encoded by the nucleic acid sequence as set forth in SEQ ID NO: 1.
9. A feed, meal, grain, food, or seed from the transgenic plant of claim 1 , wherein the feed, meal, grain, food, or seed comprises a polypeptide comprising the amino acid sequence as set forth in SEQ ID NO: 2 or a polypeptide comprising an amino acid sequence at least 95% identical to the amino acid sequence as set forth in SEQ ID NO: 2.
10. The transgenic plant of claim 1 , wherein an increased meal quality phenotype comprises an increase in available metabolizable energy in meal produced from seeds of the transgenic plant, relative to control plants.
11. The transgenic plant of claim 10 , wherein an increase in available metabolizable energy comprises an altered protein and/or fiber content in the seeds of the transgenic plant.
12. The transgenic plant of claim 11 , wherein the protein content is increased and/or the fiber content is decreased.
13. The transgenic plant of claim 10 , wherein an increase in available metabolizable energy comprises a decreased fiber content in the seeds of the transgenic plant.
14. A method of producing meal, comprising growing the transgenic plant of claim 1 , and recovering meal from the plant, thereby producing meal.
15. The method of claim 14 , wherein the meal is produced from seeds of the plant.
16. A method of producing increased oil content in a plant, said method comprising:
a) introducing into progenitor cells of the plant a plant transformation vector comprising a nucleotide sequence that encodes a HIO polypeptide comprising an amino acid sequence at least 95% identical to the amino acid sequence as set forth in SEQ ID NO: 2, and b) growing the transformed progenitor cells to produce a transgenic plant, wherein said polynucleotide sequence is expressed, and said transgenic plant exhibits an increased oil content phenotype relative to control plants.
17. A plant obtained by a method of claim 16 .
18. The plant of claim 17 , which is selected from the group consisting of plants of the Brassica species, including canola and rapeseed, soy, corn, sunflower, cotton, cocoa, safflower, oil palm, coconut palm, flax, castor, peanut, wheat, oat, and rice.
19. The plant of claim 17 , wherein the plant is selected from the group consisting of a plant grown from said progenitor cells, a plant that is the direct progeny of a plant grown from said progenitor cells, and a plant that is the indirect progeny of a plant grown from said progenitor cells.
20. A method of producing an improved meal quality phenotype in a plant, said method comprising:
a) introducing into progenitor cells of the plant a plant transformation vector comprising a nucleotide sequence that encodes an HIO polypeptide comprising an amino acid sequence at least 95% identical to the amino acid sequence set forth in SEQ ID NO: 2, and
b) growing the transformed progenitor cells to produce a transgenic plant, wherein the nucleotide sequence is expressed, and the transgenic plant exhibits an increased meal quality phenotype relative to control plants, thereby producing the improved meal quality phenotype in the plant.
21. A plant obtained by a method of claim 20 .
22. The plant of claim 21 , which is selected from the group consisting of plants of the Brassica species, including canola and rapeseed, soy, corn, sunflower, cotton, cocoa, safflower, oil palm, coconut palm, flax, castor, peanut, wheat, oat, and rice.
23. The plant of claim 21 , wherein the plant is selected from the group consisting of a plant grown from said progenitor cells, a plant that is the direct progeny of a plant grown from said progenitor cells, and a plant that is the indirect progeny of a plant grown from said progenitor cells.
24. The feed, meal, grain, food, or seed of claim 9 , wherein the polypeptide comprises the amino acid sequence as set forth in SEQ ID NO: 2.