Patent classifications
A01N43/66
METHODS OF USING ALS INHIBITOR HERBICIDES FOR CONTROL OF UNWANTED VEGETATION IN ALS INHIBITOR HERBICIDE TOLERANT BETA VULGARIS PLANTS
Present invention relates to the use of the ALS inhibitor herbicides for controlling unwanted vegetation in ALS inhibitor herbicide tolerant Beta vulgaris plants, more especially, present invention relates to the use of ALS inhibitor herbicides for control of unwanted vegetation in Beta vulgaris, preferably in sugar beet growing areas in which the Beta vulgaris, preferably sugar beet comprise a mutation in codon 1705-1707 of an endogenous ALS gene encoding an ALS protein containing an amino acid that is different from tryptophan at position 569, preferably the tryptophan is substituted by leucine.
METHODS OF USING ALS INHIBITOR HERBICIDES FOR CONTROL OF UNWANTED VEGETATION IN ALS INHIBITOR HERBICIDE TOLERANT BETA VULGARIS PLANTS
Present invention relates to the use of the ALS inhibitor herbicides for controlling unwanted vegetation in ALS inhibitor herbicide tolerant Beta vulgaris plants, more especially, present invention relates to the use of ALS inhibitor herbicides for control of unwanted vegetation in Beta vulgaris, preferably in sugar beet growing areas in which the Beta vulgaris, preferably sugar beet comprise a mutation in codon 1705-1707 of an endogenous ALS gene encoding an ALS protein containing an amino acid that is different from tryptophan at position 569, preferably the tryptophan is substituted by leucine.
Carbamoyl triazolinone based herbicide combinations and method of use
The invention relates to herbicidal active compound combinations comprising, carbamoyltriazolinones, and herbicidally active compounds, which combinations are suitable for controlling weeds.
Carbamoyl triazolinone based herbicide combinations and method of use
The invention relates to herbicidal active compound combinations comprising, carbamoyltriazolinones, and herbicidally active compounds, which combinations are suitable for controlling weeds.
Herbicidal combination
The present invention provides a herbicidal combination comprising Saflufencacil in combination at least two herbicides. The first herbicide may be selected from a triazine herbicide, triazinone herbicide, triazole herbicide, triazolone herbicide, or triazolopyrimidine herbicide, and the second herbicide may be at least one dinitroaniline herbicide.
Herbicidal combination
The present invention provides a herbicidal combination comprising Saflufencacil in combination at least two herbicides. The first herbicide may be selected from a triazine herbicide, triazinone herbicide, triazole herbicide, triazolone herbicide, or triazolopyrimidine herbicide, and the second herbicide may be at least one dinitroaniline herbicide.
HERBICIDAL COMBINATION
The present invention relates to combinations of herbicides for controlling harmful undesirable plants. The present invention more specifically relates to a synergistic combination of herbicides, compositions and use of this composition for the preparation of a herbicide product and the method of application of said composition for combating weeds.
HERBICIDAL COMBINATION
The present invention relates to combinations of herbicides for controlling harmful undesirable plants. The present invention more specifically relates to a synergistic combination of herbicides, compositions and use of this composition for the preparation of a herbicide product and the method of application of said composition for combating weeds.
IMPROVED BIOCIDE FORMULATIONS FOR THE PRESERVATION OF ANALYTE DETECTION SENSOR(S) AND METHOD(S) OF USE AND THEREOF
Composition(s), device(s), kit(s), and method(s) for improved biocide formulations that remove contaminants (and the effects related thereto) from at least one analyte detection sensor, while simultaneously preserving and/or extending the functional life of the at least one analyte detection sensor.
IMPROVED BIOCIDE FORMULATIONS FOR THE PRESERVATION OF ANALYTE DETECTION SENSOR(S) AND METHOD(S) OF USE AND THEREOF
Composition(s), device(s), kit(s), and method(s) for improved biocide formulations that remove contaminants (and the effects related thereto) from at least one analyte detection sensor, while simultaneously preserving and/or extending the functional life of the at least one analyte detection sensor.