Abstract:
The present disclosure is in the field of plant breeding and genetics, particularly as it pertains to the genus Glycine. More specifically, the invention relates to methods and compositions for producing a population of soybean plants with enhanced resistance to soybean cyst nematode. The methods use the detection of molecular genetic markers linked to soybean cyst nematode resistance loci to select for plants displaying an enhanced soybean cyst nematode resistance phenotype.
Abstract:
The present invention is in the field of plant breeding and aphid resistance. More specifically, the invention includes a method for breeding soybean plants containing quantitative trait loci that are associated with resistance to aphids, Aphis glycines. The invention further includes method for monitoring the introgression quantitative trait loci (QTL) conferring aphid resistance into elite germplasm in a breeding program.
Abstract:
The present invention is in the field of plant breeding and aphid resistance. More specifically, the invention includes a method for breeding soybean plants containing quantitative trait loci that are associated with resistance to aphids, Aphis glycines. The invention further includes method for monitoring the introgression quantitative trait loci (QTL) conferring aphid resistance into elite germplasm in a breeding program.
Abstract:
The present invention is in the field of plant breeding and aphid resistance. More specifically, the invention includes a method for breeding soybean plants containing quantitative trait loci that are associated with resistance to aphids, Aphis glycines. The invention further includes method for monitoring the introgression quantitative trait loci (QTL) conferring aphid resistance into elite germplasm in a breeding program.
Abstract:
The invention relates to the soybean variety designated XB47AA14R2. Provided by the invention are the seeds, plants and derivatives of the soybean variety XB47AA14R2. Also provided by the invention are tissue cultures of the soybean variety XB47AA14R2 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety XB47AA14R2 with itself or another soybean variety and plants produced by such methods.
Abstract:
The invention relates to the soybean variety designated XB44K13. Provided by the invention are the seeds, plants and derivatives of the soybean variety XB44K13. Also provided by the invention are tissue cultures of the soybean variety XB44K13 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety XB44K13 with itself or another soybean variety and plants produced by such methods.
Abstract:
The invention relates to the soybean variety designated XB49AE13. Provided by the invention are the seeds, plants and derivatives of the soybean variety XB49AE13. Also provided by the invention are tissue cultures of the soybean variety XB49AE13 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety XB49AE13 with itself or another soybean variety and plants produced by such methods.
Abstract:
The present invention is in the field of plant breeding and aphid resistance. More specifically, the invention includes a method for breeding soybean plants containing quantitative trait loci that are associated with resistance to aphids, Aphis glycines. The invention further includes method for monitoring the introgression quantitative trait loci (QTL) conferring aphid resistance into elite germplasm in a breeding program.
Abstract:
The present invention provides methods and compositions for the identification and selection of loci modulating phenotypic expression of a chloride tolerant trait in plant breeding. In addition, methods are provided for screening germplasm entries for the performance and expression of this trait.
Abstract:
The present invention is in the field of plant breeding and aphid resistance. More specifically, the invention includes a method for breeding soybean plants containing quantitative trait loci that are associated with resistance to aphids, Aphis glycines. The invention further includes method for monitoring the introgression quantitative trait loci (QTL) conferring aphid resistance into elite germplasm in a breeding program.