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Articles 1 - 11 of 11
Full-Text Articles in Life Sciences
Herbicide, Douglas D. Archbold, Marta Nosarzewski
Herbicide, Douglas D. Archbold, Marta Nosarzewski
Horticulture Faculty Patents
Provided herein are SDH substrates that have use as herbicides in treating pre-emergent and post-emergent weed control. The presently-disclosed subject matter includes an herbicide including SDH substrates such as ribitol and a growth inhibitive effective amount of another adjuvant SDH substrate and/or adjuvant. Methods of treating pre-emergent and post-emergent weeds comprising applying the herbicides disclosed herein in an effective amount to suppress weed growth are also provided.
Crystallization And Structure Of A Plant Peptide Deformylase, David W. Rodgers, Robert L. Houtz, Lynnette M. A. Dirk, Mark Williams
Crystallization And Structure Of A Plant Peptide Deformylase, David W. Rodgers, Robert L. Houtz, Lynnette M. A. Dirk, Mark Williams
Horticulture Faculty Patents
This invention relates to the crystal structure of a plant peptide deformylase polypeptide and methods of using the structure to design compounds that modulate the activity of the polypeptide.
Plants And Plant Products Useful For Biofuel Manufacture And Feedstock, And Methods Of Producing Same, Seth Debolt, Darby Harris, Jozsef Stork
Plants And Plant Products Useful For Biofuel Manufacture And Feedstock, And Methods Of Producing Same, Seth Debolt, Darby Harris, Jozsef Stork
Horticulture Faculty Patents
A method of processing plant cellulose includes providing plant cellulose that is from a plant expressing a CESA polypeptide variant having at least one amino acid mutation in its carboxy-terminal transmembrane region; and saccharifying the plant cellulose to produce fermentable sugars. The method can also include fermenting the fermentable sugars to produce alcohol. A method of producing a plant having beneficial saccharification properties includes introducing into a plant a polynucleotide encoding a CESA polypeptide variant having at least one amino acid mutation in its carboxy-terminal transmembrane region; and expressing in the plant the CESA polypeptide variant, wherein plant cellulose of …
Modified Rubisco Large Subunit N-Methyltransferase Useful For Targeting Molecules To The Active-Site Vicinity Of Ribulose-1,5-Bisphosphate, Robert L. Houtz
Modified Rubisco Large Subunit N-Methyltransferase Useful For Targeting Molecules To The Active-Site Vicinity Of Ribulose-1,5-Bisphosphate, Robert L. Houtz
Horticulture Faculty Patents
The present invention generally relates to a modified Rubisco large subunit εN-Methyltransferase (Rubisco LSMT, or RLSMT). The present invention also relates to a modified RLSMT-carbonic anhydrase (RLSMT-CA). This modified RLSMT-CA improves the efficiency of the reduction of CO2 during photosynthesis, which may increase plant growth rates. The present invention also relates to nucleic acids encoding the modified RLSMT-CA or modified RLSMT. Also, the present invention relates to cells including the modified RLSMT-CA or modified RLSMT, plants containing the modified RLSMT-CA or modified RLSMT, and methods using compositions of the present invention. In addition, the present invention relates to …
Inhibitors Of Plant Peptide Deformylase For Use As Broad-Spectrum Herbicides And Methods For Identifying The Same, Robert L. Houtz, Lynnette M. A. Dirk, Mark Alan Wiliams
Inhibitors Of Plant Peptide Deformylase For Use As Broad-Spectrum Herbicides And Methods For Identifying The Same, Robert L. Houtz, Lynnette M. A. Dirk, Mark Alan Wiliams
Horticulture Faculty Patents
The invention relates to a method of identifying herbicides and to the use of inhibitors of plant peptide deformylase as broad spectrum herbicides.
Inhibitors Of Plant Peptide Deformylase For Use As Broad-Spectrum Herbicides And Methods For Identifying The Same, Robert L. Houtz, Lynnette M. A. Dirk, Mark Alan Wiliams
Inhibitors Of Plant Peptide Deformylase For Use As Broad-Spectrum Herbicides And Methods For Identifying The Same, Robert L. Houtz, Lynnette M. A. Dirk, Mark Alan Wiliams
Horticulture Faculty Patents
The invention relates to a method of identifying herbicides and to the use of inhibitors of plant peptide deformylase as broad spectrum herbicides.
Inhibitor Of Plant Peptide Deformylase For Use As Broad-Spectrum Herbicides And Method For Identifying The Same, Robert L. Houtz, Lynnette M. A. Dirk, Mark Allan Williams
Inhibitor Of Plant Peptide Deformylase For Use As Broad-Spectrum Herbicides And Method For Identifying The Same, Robert L. Houtz, Lynnette M. A. Dirk, Mark Allan Williams
Horticulture Faculty Patents
The invention relates to a method of identifying herbicides and to the use of inhibitors of plant peptide deformylase as broad spectrum herbicides.
Isolated Spinach Ribulose-1,5-Bisphosphate Carboxylase/Oxgenase Large Subunit Ε N-Methyltransferase And Method Of Inactivating Ribulose-1,5-Bishosphatase Ε N-Methyltransferase Activity, Robert L. Houtz
Horticulture Faculty Patents
The gene sequence for ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) large subunit (LS)εN-methyltansferase (protein methylase III or Rubisco LSMT) from a plant which has a des(methyl) lysyl residue in the LS is disclosed. In addition, the full-length cDNA clones for Rubisco LSMT are disclosed. Transgenic plants and methods of producing same which have the Rubisco LSMT gene inserted into the DNA are also provided. Further, methods of inactivating the enzymatic activity of Rubisco LSMT are also disclosed.
Isolated Spinach Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Large Subunit ΕN-Methyltransferase And Method Of Inactivating Ribulose-1,5-Bisphosphatase Carboxylase/Oxygenase Large Subunit ΕN-Methyltransferase Activity, Robert L. Houtz
Horticulture Faculty Patents
The gene sequence for ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) large subunit (LS) .sup.ε N-methyltransferase (protein methylase III or Rubisco LSMT) from a plant which has a des(methyl) lysyl residue in the LS is disclosed. In addition, the full-length cDNA clones for Rubisco LSMT are disclosed. Transgenic plants and methods of producing same which have the Rubisco LSMT gene inserted into the DNA are also provided. Further, methods of inactivating the enzymatic activity of Rubisco LSMT are also disclosed.
Cloning And Developmental Expression Of Pea Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Large Subunit Epsilon N-Methyltransferase, Robert L. Houtz
Cloning And Developmental Expression Of Pea Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Large Subunit Epsilon N-Methyltransferase, Robert L. Houtz
Horticulture Faculty Patents
The gene sequence for ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) large subunit (LS) .sup.ε N-methyltransferase (protein methylase III or Rubisco LSMT) is disclosed. This enzyme catalyzes methylation of the ε-amine of lysine-14 in the large subunit of Rubisco. In addition, a full-length cDNA clone for Rubisco LSMT is disclosed. Transgenic plants and methods of producing same which (1) have the Rubisco LSMT gene inserted into the DNA, and (2) have the Rubisco LSMT gene product or the action of the gene product deleted from the DNA are also provided. Further, methods of using the gene to selectively deliver desired agents to a plant …
Cloning And Developmental Expression Of Pea Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Large Subunit N-Methyltransferase, Robert L. Houtz
Cloning And Developmental Expression Of Pea Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Large Subunit N-Methyltransferase, Robert L. Houtz
Horticulture Faculty Patents
The gene sequence for ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) large subunit (LS) εN-methyltransferase (protein methylase III or Rubisco LSMT) is disclosed. This enzyme catalyzes methylation of the ε-amine of lysine-14 in the large subunit of Rubisco. In addition, a full-length cDNA clone for Rubisco LSMT is disclosed. Transgenic plants and methods of producing same which (1) have the Rubisco LSMT gene inserted into the DNA, and (2) have the Rubisco LSMT gene product or the action of the gene product deleted from the DNA are also provided. Further, methods of using the gene to selectively deliver desired agents to a plant are …