Patent classifications
C12N15/8285
COMPOSITIONS AND METHODS FOR MODULATING IMMUNITY IN PLANTS
Compositions and methods for enhancing disease resistance in plants are disclosed.
Pesticidal genes and methods of use
Compositions having pesticidal activity and methods for their use are provided. Compositions include isolated and recombinant polypeptides having pesticidal activity, recombinant and synthetic nucleic acid molecules encoding the polypeptides, DNA constructs and vectors comprising the nucleic acid molecules, host cells comprising the vectors, and antibodies to the polypeptides. Polynucleotide sequences encoding the polypeptides can be used in DNA constructs or expression cassettes for transformation and expression in organisms of interest. The compositions and methods provided are useful for producing organisms with enhanced pest resistance or tolerance. Transgenic plants and seeds comprising a nucleotide sequence that encodes a pesticidal protein of the invention are also provided. Such plants are resistant to insects and other pests. Methods are provided for producing the various polypeptides disclosed herein, and for using those polypeptides for controlling or killing a pest. Methods and kits for detecting polypeptides of the invention in a sample are also included.
Methods and DNA Constructs for Autoregulating Transgene Silencing
This invention provides a method to autoregulate expression of a transgene susceptible to sRNA silencing by concomitantly transcribing RNA from DNA of a transgene and RNA from DNA from at least one sRNA silencing pathway gene. An aspect of the invention provides use of a recombinant DNA construct that includes DNA of a transgene and DNA of an sRNA silencing regulator. Also disclosed are transgenic cells and organisms having in their genome a recombinant DNA construct that includes DNA of a transgene and DNA of an sRNA silencing regulator.
PLANTS CONTAINING ELITE EVENT EE-GM4 AND METHODS AND KITS FOR IDENTIFYING SUCH EVENT IN BIOLOGICAL SAMPLES, AND TREATMENT THEREOF
The invention provides specific transgenic soybean plants, plant material and seeds, characterized in that these harbor a specific nematode resistance and herbicide tolerance elite transformation event at a specific location in the soybean genome, and also said plants, material and seeds treated with compounds and/or biological control agents or mixtures thereof. Tools are also provided which allow rapid and unequivocal identification of the event in biological sample.
RESISTANCE TO SOYBEAN CYST NEMATODE THROUGH GENE EDITING
This invention relates to compositions and methods for modifying Soluble NSF Attachment Protein18 (SNAP18) genes in soybean plants to increase resistance to Soybean Cyst Nematode (SCN). The invention further relates to plants having increased resistance to/reduced severity of infection by SCN produced using the methods and compositions of the invention.
Regulation of gene expression by temporal or leaf specific promoters
This invention provides molecular constructs and methods for the temporally specific control of gene expression in plants or in plant pests or pathogens. More specifically, this invention provides plant miRNA genes having novel circadian expression patterns that are useful for designing recombinant DNA constructs for temporally specific expression of at least one gene. Also provided are non-natural transgenic plant cells, plants, and seeds containing in their genome a recombinant DNA construct of this invention.
Compositions and methods for modulating immunity in plants
Compositions and methods for enhancing disease resistance in plants are disclosed.
TOMATO PLANT RESISTANT TO TOMATO YELLOW LEAF CURL VIRUS, POWDERY MILDEW, AND NEMATODES
The present invention relates to Solanum lycopersicum (S. lycopersicum) plants with resistance to Tomato Yellow Leaf Curl Virus (TYLCV), powdery mildew (PM) and nematodes. According to the invention, the resistances are provided by coupling in cis on the same chromosome the OL4 gene conferring resistance to PM and nematodes and TY1 gene conferring resistance to TYLCV, without coupling the Mi-1 gene conferring resistance to nematodes in cis with said OL4 gene conferring resistance to PM and nematodes and TY1 gene conferring resistance to TYLCV. The genes can be present homozygously or heterozygously in the genome of the S. lycopersicum plants, and they confer resistance to TYLCV, PM and nematodes. The present invention also provides methods for making such plants, and to methods of detecting and/or selecting such plants.
Methods for improving plant resistance to soybean cyst nematode and compositions thereof
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.
PESTICIDAL GENES AND METHODS OF USE
Compositions having pesticidal activity and methods for their use are provided. Compositions include isolated and recombinant polypeptide sequences having pesticidal activity, recombinant and synthetic nucleic acid molecules encoding the pesticidal polypeptides, DNA constructs comprising the nucleic acid molecules, vectors comprising the nucleic acid molecules, host cells comprising the vectors, and antibodies to the pesticidal polypeptides. Nucleotide sequences encoding the polypeptides provided herein can be used in DNA constructs or expression cassettes for transformation and expression in organisms of interest. The compositions and methods provided herein are useful for the production of organisms with enhanced pest resistance or tolerance. Transgenic plants and seeds comprising a nucleotide sequence that encodes a pesticidal protein of the invention are also provided. Methods are provided for producing the polypeptides disclosed herein, and for using those polypeptides for controlling a pest. Methods and kits for detecting polypeptides of the invention in a sample are also included.