摘要:
An isolated polynucleotide comprising a nucleotide sequence encoding a polypeptide having starch R1 phosphorylation activity, or the complement of the nucleotide sequence. Plant transformation and regeneration methods using the polynucleotides. Vectors and recombinant DNA constructs containing the polynucleotides. Cells, plants, and seeds containing the recombinant DNA constructs. Methods for isolating polypeptides having starch R1 phosphorylation activity.
摘要:
An isolated nucleic acid fragment encoding a plastidic phosphoglucomutase protein is disclosed. Also disclosed is the construction of a chimeric gene encoding all or a substantial portion of the plastidic phosphoglucomutase, in sense or antisense orientation, wherein expression of the chimeric gene results in production of altered levels of the plastidic phosphoglucomutase in a transformed host cell.
摘要:
This invention relates to isolated nucleic acid fragments encoding fructosyltransferases. More specifically, this invention relates to polynucleotides encoding 1-FFTs, 6-SFTs, or 1-SSTs. The invention also relates to the construction of a recombinant DNA constructs encoding all or a portion of the fructosyltransferases, in sense or antisense orientation, wherein expression of the recombinant DNA construct results in production of altered levels of the fructosyltransferases in a transformed host cell.
摘要:
This invention relates to isolated nucleic acid fragments encoding fructosyltransferases. More specifically, this invention relates to polynucleotides encoding 1-FFTs, 6-SFTs, or 1-SSTs. The invention also relates to the construction of a recombinant DNA constructs encoding all or a portion of the fructosyltransferases, in sense or antisense orientation, wherein expression of the recombinant DNA construct results in production of altered levels of the fructosyltransferases in a transformed host cell.
摘要:
This invention relates to an isolated nucleic acid fragment encoding a plastidic phosphoglucomutase protein. The invention also relates to the construction of a chimeric gene encoding all or a substantial portion of the plastidic phosphoglucomutase, in sense or antisense orientation, wherein expression of the chimeric gene results in production of altered levels of the plastidic phosphoglucomutase in a transformed host cell.
摘要:
An isolated nucleic acid fragment encoding a plastidic phosphoglucomutase protein is disclosed. Also disclosed is the construction of a chimeric gene encoding all or a substantial portion of the plastidic phosphoglucomutase, in sense or antisense orientation, wherein expression of the chimeric gene results in production of altered levels of the plastidic phosphoglucomutase in a transformed host cell.
摘要:
An isolated nucleic acid fragment encoding a plastidic phosphoglucomutase protein is disclosed. Also disclosed is the construction of a chimeric gene encoding all or a substantial portion of the plastidic phosphoglucomutase, in sense or antisense orientation, wherein expression of the chimeric gene results in production of altered levels of the plastidic phosphoglucomutase in a transformed host cell.
摘要:
This invention relates to isolated nucleic acid fragments encoding fructosyltransferases. More specifically, this invention relates to polynucleotides encoding 1-FFTs, 6-SFTs, or 1-SSTs. The invention also relates to the construction of a recombinant DNA constructs encoding all or a portion of the fructosyltransferases, in sense or antisense orientation, wherein expression of the recombinant DNA construct results in production of altered levels of the fructosyltransferases in a transformed host cell.
摘要:
This invention relates to an isolated nucleic acid fragment encoding a cholinephosphate cytidylyltransferase. The invention also relates to the construction of a chimeric gene encoding all or a portion of the cholinephosphate cytidylyltransferase, in sense or antisense orientation, wherein expression of the chimeric gene results in production of altered levels of the cholinephosphate cytidylyltransferase in a transformed host cell.
摘要:
Isolated nucleic acid fragments encoding starch synthase isoform V. are presented. Recombinant DNA constructs encoding all or a portion of starch synthase isoform V, in sense or antisense orientation, can be made, wherein expression of the recombinant DNA construct results in production of altered levels of the starch synthase isoform V in a transformed host cell.