Abstract:
The present invention is directed to plants that display an altered oil content phenotype due to altered expression of a HIO32.2 nucleic acid. The invention is further directed to methods of generating plants with an altered oil content phenotype.
Abstract:
The present invention is directed to isolated HI041 nucleic acid and protein, and to plants that display an altered oil content phenotype due to altered expression of a HI041 nucleic acid. The invention is further directed to methods of generating plants with an altered oil content phenotype.
Abstract:
The present invention is directed to an isolated starch, a transgenic plant or plant part producing the starch, flour and a thickened foodstuff prepared from a grain capable of producing such isolated starch. The present invention is directed to a method for altering starch amylose composition of a cereal grain.
Abstract:
The present invention is directed to plants that display an altered oil content phenotype due to altered expression of a HIO102 nucleic acid. The invention is further directed to methods of generating plants with an altered oil content phenotype.
Abstract:
The present invention is directed to plants that display an altered oil content phenotype due to altered expression of a HIO102 nucleic acid. The invention is further directed to methods of generating plants with an altered oil content phenotype.
Abstract:
The present invention is directed to plants that display an altered oil content phenotype due to altered expression of a HIO30 nucleic acid. The invention is further directed to methods of generating plants with an altered oil content phenotype.
Abstract:
A method for the rapid evaluation of transgene function in maize plants. The method combines high throughput gene construction methods and high efficiency plant transformation techniques in a specifically developed germplasm. In one as aspect, the method uses quantitative, non-destructive imaging technology applied in a portion or throughout the entire life cycle of a test plant to evaluate agronomic traits of interest in a controlled, statistically relevant greenhouse environment. The method reports transgene function early in the transgenic variety development process, eliminating the need to generate seed necessary for multi-location replicated field trials.
Abstract:
Plant promoters that exhibit seed-associated expression are described, including bi-directional promoters capable of directing seed-associated expression in either orientation.
Abstract:
Tomato anthocyanin vacuolar transporter (“MTP77”) and chalcone isomerase (“MTP96”) are up-regulated in tomato plants that overexpress the ANT1 gene. Plant transformation vectors comprising isolated MTP77 or MTP96 polynucleotides can be made to generate transgenic plants having increased anthocyanin content relative to control plants.
Abstract:
The present invention is directed to plants that display an altered oil content phenotype due to altered expression of a HIO103.1 nucleic acid. The invention is further directed to methods of generating plants with an altered oil content phenotype.