Abstract:
The present invention provides an inbred corn line designated NPID5702, methods for producing a corn plant by crossing plants of the inbred line NPID5702 with plants of another corn plant. The invention further encompasses all parts of inbred corn line NPID5702, including culturable cells. Additionally provided herein are methods for introducing transgenes into inbred corn line NPID5702, and plants produced according to these methods.
Abstract:
The present invention provides an inbred corn line designated FF5130, methods for producing a corn plant by crossing plants of the inbred line FF5130 with plants of another corn plant. The invention further encompasses all parts of inbred corn line FF5130, including culturable cells. Additionally provided herein are methods for introducing transgenes into inbred corn line FF5130, and plants produced according to these methods.
Abstract:
This invention provides for an inbred corn line designated G1505, methods for producing a corn plant by crossing plants of the inbred line G1505 with plants of another corn plants. The invention relates to tissue culture of various parts of inbred G1505 including culturable cells. This invention also relates to plants and seed of the inbred corn line G1505 further comprising transgenic genes and mutant genes and F1 hybrid seed and plants produced from the inbred G1505.
Abstract:
The present invention provides an optical method of analyzing seed quality characteristics such as percent of hard endosperm and seed color utilizing the transmitted visible light, and means to carry out the described method.
Abstract:
The present invention provides an inbred corn line designated NPID5702, methods for producing a corn plant by crossing plants of the inbred line NPID5702 with plants of another corn plant. The invention further encompasses all parts of inbred corn line NPID5702, including culturable cells. Additionally provided herein are methods for introducing transgenes into inbred corn line NPID5702, and plants produced according to these methods.
Abstract:
An apparatus for measuring stalk strength of a plant is disclosed. A force sensor is mounted to a harvester in a position to measure the resistance to crushing of the plant stalk by a stalk roll of the harvester. The apparatus may include a pair of counter rotating stalk rolls that pull and crush the plant stalk between them and a pair of stain gauges attached on either side of a mounting apparatus of the stalk rolls to sense both the tension and compression forces induced in the mounting apparatus by each of the rolls in response to the resistance to crushing of the plant stalk. Data collected by the invention can be advantageously used in a breeding program wherein breeding decisions are made based at least in part on stalk strength.
Abstract:
Broadly this invention provides inbred corn line ZS01595. The methods for producing a corn plant by crossing the inbred line ZS01595 are encompassed by the invention. Additionally, the invention relates to the various parts of inbred ZS01595 including culturable cells. This invention relates to hybrid corn seeds and plants produced by crossing the inbred line ZS01595 with at least one other corn line.
Abstract:
The present invention provides an inbred corn line designated FF5130, methods for producing a corn plant by crossing plants of the inbred line FF5130 with plants of another corn plant. The invention further encompasses all parts of inbred corn line FF5130, including culturable cells. Additionally provided herein are methods for introducing transgenes into inbred corn line FF5130, and plants produced according to these methods.
Abstract:
Basically, this invention provides for an inbred corn line designated NPDC5592, methods for producing a corn plant by crossing plants of the inbred line NPDC5592, with plants of another corn plant. The invention relates to the various parts of inbred NPDC5592, including culturable cells. This invention also relates to methods for introducing transgenic transgenes into inbred corn line NPDC5592, and plants produced by said methods.
Abstract:
An apparatus for measuring stalk strength of a plant is disclosed. A force sensor is mounted to a harvester in a position to measure the resistance to crushing of the plant stalk by a stalk roll of the harvester. The apparatus may include a pair of counter rotating stalk rolls that pull and crush the plant stalk between them and a pair of stain gauges attached on either side of a mounting apparatus of the stalk rolls to sense both the tension and compression forces induced in the mounting apparatus by each of the rolls in response to the resistance to crushing of the plant stalk. Data collected by the invention can be advantageously used in a breeding program wherein breeding decisions are made based at least in part on stalk strength.