Abstract:
This invention relates to polynucleotide sequences encoding a gene that can confer resistance to at least one herbicide. It further relates to plants and seeds of plants carrying chimeric genes comprising said polynucleotide sequences, which enhance or confer resistance to at least one herbicide, and methods of making said plants and seeds. The invention further presents sequences that can be used as molecular markers that in turn can be used to identify the region of interest in corn lines resulting from new crosses and to quickly and efficiently select the best lines for breeding strategies by avoiding sensitive lines.
Abstract:
This invention relates to polynucleotide sequences encoding a gene that can confer resistance to at least one herbicide. It further relates to plants and seeds of plants carrying chimeric genes comprising said polynucleotide sequences, which enhance or confer resistance to at least one herbicide, and methods of making said plants and seeds. The invention further presents sequences that can be used as molecular markers that in turn can be used to identify the region of interest in corn lines resulting from new crosses and to quickly and efficiently select the best lines for breeding strategies by avoiding sensitive lines.
Abstract:
This invention relates to polynucleotide sequences encoding a gene that can confer resistance to at least one herbicide. It further relates to plants and seeds of plants carrying chimeric genes comprising said polynucleotide sequences, which enhance or confer resistance to at least one herbicide, and methods of making said plants and seeds. The invention further presents sequences that can be used as molecular markers that in turn can be used to identify the region of interest in corn lines resulting from new crosses and to quickly and efficiently select the best lines for breeding strategies by avoiding sensitive lines.
Abstract:
A microelectromechanical system (MEMS) device with a mechanism layer having a first part and a second part, and at least one cover for sealing the mechanism layer. The inner surface of at least one of the covers is structured such that a protruding structure is present on the inner surface of the cover and wherein the protruding structure mechanically causes the first part to be deflected out of a plane associated with the second part.
Abstract:
This invention relates to an isolated nucleic acid fragment encoding a geranylgeranyl pyrophosphate synthase. The invention also relates to the construction of a chimeric gene encoding all or a portion of the geranylgeranyl pyrophosphate synthase, in sense or antisense orientation, wherein expression of the chimeric gene results in production of altered levels of the geranylgeranyl pyrophosphate synthase in a transformed host cell.
Abstract:
A system of automatically routing interconnect of a integrated circuit design while taking into consideration the parasitic issues of the wiring as it is created. The system will be able to select an appropriate wiring pattern so that signals meet their performance requirements.
Abstract:
An expected wait time augmentation system generates an expected wait value representing a time duration expected to elapse before a subject client is connected to a resource for servicing. The expected wait time augmentation system comprises an interface to a work force management system for obtaining resource availability data and a wait time augmentation model for calculating an expected wait time value as a function of base expected wait time data and the resource availably data. The estimated wait time value is provided to the subject client. The resource availability data includes, but is not limited to, for a period of time: i) availability of resources; and ii) a scheduled change in the availability of resources. The scheduled change in the availability of resources may comprise a combination of data representing an effective time and a quantity of resources scheduled to be available at the effective time.
Abstract:
The EYEGLASS CARRIER SYSTEM is comprised of: Soft eyeglass case with (7) seven different carriers on the outside of the case. (1) one, or (2) two, full sleeve pen carriers, (bottom enclosed), primarily made for the standard business, or dress pen, (1) one, or (2) two (partial sleeve) pen carriers to fit almost any sized pen, small notepad carrier, contact lens carrier, and small calender carrier. Carriers should be pre-cut and sewn on the case before the material at the seam of case is joined together. Pen carriers are on the front of the case, right or left side, directly on, or beside the seam, where the case is joined together. The other carriers (closed) are placed squarely to the left or right but not exceeding the top of the pen carrier(s). Any carrier on the back of the case should be placed squarely in the middle of the lower half of the case.