Abstract:
The present disclosure is in the field of plant breeding. The disclosure provides methods for breeding corn plants having a brachytic trait using marker-assisted selection. The disclosure further provides brachytic germplasm, markers associated with a brachytic trait for introgressing the trait into elite germplasm in a breeding program. This disclosure also provides brachytic or dwarf elite corn varieties having yield equal to or higher than conventional non-brachytic corn varieties.
Abstract:
The present invention is in the field of plant breeding and disease resistance. More specifically, the invention includes a method for breeding corn plants containing one or more markers that are associated with resistance to bacteria. The invention further includes germplasm and the use of germplasm containing at least one marker associated with resistance to Bacterial Stalk Rot (BSR) infection for introgression into elite germplasm in a breeding program, thus producing novel BSR resistant germplasm.
Abstract:
The present disclosure is in the field of plant breeding and disease resistance. The disclosure provides methods for breeding corn plants having late wilt (LW) resistance using marker-assisted selection. The disclosure further provides corn germplasm resistant to LW. The disclosure also provides markers associated with LW resistance loci for introgressing these loci into elite germplasm in a breeding program, thus producing novel LW resistant germplasm.
Abstract:
The present disclosure is in the field of plant breeding. The disclosure provides methods for breeding corn plants having a brachytic trait using marker-assisted selection. The disclosure further provides brachytic germplasm, markers associated with a brachytic trait for introgressing the trait into elite germplasm in a breeding program. This disclosure also provides brachytic or dwarf elite corn varieties having yield equal to or higher than conventional non-brachytic corn varieties.
Abstract:
The present disclosure is in the field of plant breeding and disease resistance. The disclosure provides methods for breeding corn plants having northern leaf blight (NLB) resistance using marker-assisted selection. The disclosure further provides corn germplasm resistant to NLB. The disclosure also provides markers associated with NLB resistance loci for introgressing these loci into elite germplasm in a breeding program, thus producing novel NLB resistant germplasm.
Abstract:
The present invention is in the field of plant breeding and disease resistance. More specifically, the invention includes a method for breeding corn plants containing one or more markers that are associated with resistance to bacteria. The invention further includes germplasm and the use of germplasm containing at least one marker associated with resistance to Bacterial Stalk Rot (BSR) infection for introgression into elite germplasm in a breeding program, thus producing novel BSR resistant germplasm.
Abstract:
The present disclosure is in the field of plant breeding and disease resistance. The disclosure provides methods for breeding corn plants having downy mildew (DM) resistance using marker-assisted selection. The disclosure further provides corn germplasm resistant to DM. The disclosure also provides markers associated with DM resistance loci for introgressing these loci into elite germplasm in a breeding program, thus producing novel DM resistant germplasm.
Abstract:
The present disclosure is in the field of plant breeding and disease resistance. The disclosure provides methods for breeding corn plants having downy mildew (DM) resistance using marker-assisted selection. The disclosure further provides corn germplasm resistant to DM. The disclosure also provides markers associated with DM resistance loci for introgressing these loci into elite germplasm in a breeding program, thus producing novel DM resistant germplasm.
Abstract:
The present disclosure is in the field of plant breeding and disease resistance. The disclosure provides methods for breeding corn plants having northern leaf blight (NLB) resistance using marker-assisted selection. The disclosure further provides corn germplasm resistant to NLB. The disclosure also provides markers associated with NLB resistance loci for introgressing these loci into elite germplasm in a breeding program, thus producing novel NLB resistant germplasm.
Abstract:
The present disclosure is in the field of plant breeding. The disclosure provides methods for breeding corn plants having a brachytic trait using marker-assisted selection. The disclosure further provides brachytic germplasm, markers associated with a brachytic trait for introgressing the trait into elite germplasm in a breeding program. This disclosure also provides brachytic or dwarf elite corn varieties having yield equal to or higher than conventional non-brachytic corn varieties.