Abstract:
Described herein are inventions in the field of genetic engineering of plants, including isolated nucleic acid molecules encoding Sucrose Synthase-like (S US-like) polypeptides to improve agronomic, horticultural, and quality traits. This invention relates generally to nucleic acid sequences encoding proteins that are related to the presence of seed storage compounds in plants. More specifically, the present invention relates to SUS-like nucleic acid sequences encoding sugar and lipid metabolism regulator proteins and the use of these sequences in transgenic plants. In particular, the invention is directed to methods for manipulating sugar-related compounds and for increasing oil level and altering the fatty acid composition in plants and seeds. The invention further relates to methods of using these novel plant polypeptides to stimulate plant growth and/or to increase yield and/or composition of seed storage compounds.
Abstract:
Described herein are inventions in the field of genetic engineering of plants, including combinations of nucleic acid molecules encoding pyruvate kinase subunits to improve agronomic, horticultural, and quality traits. This invention relates generally to the combination of nucleic acid sequences encoding pyruvate kinase proteins that are related to the presence of seed storage compounds in plants. More specifically, the present invention relates to the use of these combinations of these sequences, their order and direction in the combination, and the regulatory elements used to control expression and transcript termination in these combinations in transgenic plants. In particular, the invention is directed to methods for manipulating seed storage compounds in plants and seeds. The invention further relates to methods of using these novel combinations of polypeptides to stimulate plant growth and/or root growth and/or to increase yield and/or composition of seed storage compounds.
Abstract:
The present invention relates to pyruvate-orthophosphate dikinase encoding polynucleotides and polypeptides. Further, the present invention relates to the use of the aforementioned nucleic acid sequences and proteins in transgenic plants. In particular, the invention is directed to methods for manipulating sugar-related compounds and for increasing oil level and altering the fatty acid composition in plants and seeds. The invention further relates to methods of using these novel plant polypeptides to stimulate plant growth and/or to increase yield and/or composition of seed storage compounds.
Abstract:
Isolated nucleic acids and polypeptides associated with lipid and sugar metabolism regulation are provided. In particular, lipid metabolism proteins (LMP) and encoding nucleic acids originating from Arabidopsis thaliana are provided. The nucleic acids and polypeptides are used in methods of producing transgenic plants and modulating levels of seed storage compounds in a plant. Preferably, the seed storage compounds are lipids, fatty acids, starches, or seed storage proteins.
Abstract:
Isolated nucleic acids and proteins associated with lipid and sugar metabolism regulation are provided. In particular, lipid metabolism proteins (LMP) and encoding nucleic acids originating from Arabidopsis thaliana, Brassica napus, Glycine max, Oryza sativa, and Triticum aestivum are provided. The nucleic acids and proteins are used in methods of producing transgenic plants and modulating levels of seed storage compounds. Preferably, the seed storage compounds are lipids, fatty acids, starches, or seed storage proteins. The nucleic acids and proteins also are used in methods of modulating the seed size, seed number, seed weight, root length, and leaf size of plants.
Abstract:
Isolated nucleic acids and proteins associated with lipid and sugar metabolism regulation are provided. In particular, lipid metabolism proteins (LMP) and encoding nucleic acids originating from Arabidopsis thaliana, Brassica napus, Glycine max, Oryza sativa, and Triticum aestivum are provided. The nucleic acids and proteins are used in methods of producing transgenic plants and modulating levels of seed storage compounds. Preferably, the seed storage compounds are lipids, fatty acids, starches, or seed storage proteins. The nucleic acids and proteins also are used in methods of modulating the seed size, seed number, seed weight, root length, and leaf size of plants.
Abstract:
The present invention relates to Constitutive Triple Response-like (CTR1-like) nucleic acid sequences and the sugar and lipid metabolism regulator proteins encoded by the said nucleic acid sequences. Further, the present invention relates to the use of the aforementioned nucleic acid sequences and proteins in transgenic plants. In particular, the invention is directed to methods for manipulating sugar-related compounds and for increasing oil level and altering the fatty acid composition in plants and seeds. The invention further relates to methods of using these novel plant polypeptides to stimulate plant growth and/or to increase yield and/or composition of seed storage compounds.
Abstract:
The present invention relates to a bZip transcription factor encoding polynucleotides and polypeptides. Further, the present invention relates to the use of the aforementioned nucleic acid sequences and proteins in transgenic plants. In particular, the invention is directed to methods for manipulating sugar-related compounds and for increasing oil level and altering the fatty acid composition in plants and seeds. The invention further relates to methods of using these novel plant polypeptides to stimulate plant growth and/or to increase yield and/or composition of seed storage compounds.
Abstract:
The present invention is directed to novel nucleic acid and amino acid sequences associated with the metabolism of seed storage compounds in plants. More particularly novel lipid metabolism protein (LMP) sequences are provided herein. Preferably, the seed storage compounds are lipids, fatty acids, starches or seed storage proteins.
Abstract:
Described herein are inventions in the field of genetic engineering of plants, including combinations of nucleic acid molecules encoding pyruvate kinase subunits to improve agronomic, horticultural, and quality traits. This invention relates generally to the combination of nucleic acid sequences encoding pyruvate kinase proteins that are related to the presence of seed storage compounds in plants. More specifically, the present invention relates to the use of these combinations of these sequences, their order and direction in the combination, and the regulatory elements used to control expression and transcript termination in these combinations in transgenic plants. In particular, the invention is directed to methods for manipulating seed storage compounds in plants and seeds. The invention further relates to methods of using these novel combinations of polypeptides to stimulate plant growth and/or root growth and/or to increase yield and/or composition of seed storage compounds.