摘要:
Methods and compositions for modulating plant development are provided. Nucleotide sequences and amino acid sequences encoding Ovule Development Protein 2 (ODP2) proteins are provided. The sequences can be used in a variety of methods including modulating development, developmental pathways, altering oil content in a plant, increasing transformation efficiencies, modulating stress tolerance, and modulating the regenerative capacity of a plant. Transformed plants, plant cells, tissues, and seed are also provided.
摘要:
Methods and compositions for modulating plant development are provided. Nucleotide sequences and amino acid sequences encoding Ovule Development Protein 2 (ODP2) proteins are provided. The sequences can be used in a variety of methods including modulating development, developmental pathways, altering oil content in a plant, increasing transformation efficiencies, modulating stress tolerance, and modulating the regenerative capacity of a plant. Transformed plants, plant cells, tissues, and seed are also provided.
摘要翻译:提供了调节植物发育的方法和组合物。 提供编码Ovule Development Protein 2(ODP2)蛋白的核苷酸序列和氨基酸序列。 这些序列可以用于各种方法,包括调节发育,发育途径,改变植物中的油含量,提高转化效率,调节胁迫耐受性和调节植物的再生能力。 还提供了转化的植物,植物细胞,组织和种子。
摘要:
The preparation and use of nucleic acid fragments useful in altering the oil phenotype in plants are disclosed. Chimeric constructs incorporating such nucleic acid fragments and suitable regulatory sequences can be used to create transgenic plants having altered lipid profiles. Methods for altering the oil phenotype in plants using such nucleic acid fragments also are disclosed.
摘要:
The preparation and use of nucleic acid fragments useful in altering the oil phenotype in plants are disclosed. Recombinant DNA construct incorporating such nucleic acid fragments and suitable regulatory sequences can be used to create transgenic plants having altered lipid profiles. Methods for altering the oil phenotype in plants using such nucleic acid fragments also are disclosed.
摘要:
The preparation and use of nucleic acid fragments useful in altering the oil phenotype in plants are disclosed. Chimeric construct incorporating such nucleic acid fragments and suitable regulatory sequences can be used to create transgenic plants having altered lipid profiles. Methods for altering the oil phenotype in plants using such nucleic acid fragments also are disclosed.
摘要:
The preparation and use of nucleic acid fragments useful in altering the phenotype in plants are disclosed. Chimeric constructs incorporating such nucleic acid fragments and suitable regulatory sequences can be used to create transgenic plants having altered phenotypes. Methods for altering the phenotype of plants using such nucleic acid fragments also are disclosed.
摘要:
Methods for modulating levels of at least one organic sulfur compound in plants are provided. Also provided are plants and seeds produced by the methods. The methods comprise stably transforming a plant with a DNA construct encoding a cystathionine gamma synthase enzyme, a serine acetyl transferase enzyme and/or other sulfur assimilating enzymes capable of altering the level of at least one organic sulfur compound.
摘要:
Methods for modulating levels of at least one organic sulfur compound in plants are provided. Also provided are plants and seeds produced by the methods. The methods comprise stably transforming a plant with a DNA construct encoding a cystathionine gamma synthase enzyme, a serine acetyl transferase enzyme and/or other sulfur assimilating enzymes capable of altering the level of at least one organic sulfur compound.
摘要:
Transgenic oilseeds having increased total fatty acid content of at least 10% and altered fatty acid profiles when compared to the total fatty acid content of null segregant oilseeds are described. Novel DGAT genes are used to achieve the increase in seed storage lipids.
摘要:
Compositions comprising a modulated tocol content in a plant or plant part are provided. In specific embodiments, the compositions and methods of the invention modulate tocol content by modulating the level of a polypeptide having a LEC1-type B domain in combination with modulating the level of at least one other polypeptide involved in tocol biosynthesis. Plants, plant parts, grain, seed and oil having the modulated tocol level are also provided. Methods to enhance oxidative stress tolerance of a plant or plant part, increase shelf-life, enhance the nutritional value, and improve tissue quality are also provided.