Abstract:
The present invention refers to a method for controlling undesired vegetation at a plant cultivation site, the method comprising the steps of: providing, at said site, a plant that comprises at least one nucleic acid comprising a nucleotide sequence encoding a wild-type hydroxyphenyl pyruvate dioxygenase or a mutated hydroxyphenyl pyruvate dioxygenase (mut-HPPD) which is resistant or tolerant to a N-heterocyclyl-arylcarboxamide and/or a nucleotide sequence encoding a wild-type homogentisate solanesyl transferase or a mutated homogentisate solanesyl transferase (mut-HST) which is resistant or tolerant to a N-heterocyclyl-arylcarboxamide, and applying to said site an effective amount of said herbicide. The invention further refers to a method of identifying a nucleotide sequence encoding a mut-HPPD which is resistant or tolerant to a N-heterocyclyl-arylcarboxamide, as well as transgenic plants having increased resistance or tolerance to a N-heterocyclyl-arylcarboxamide as compared to a wild-type variety of the plant cell.
Abstract:
N-(tetrazol-5-yl)- and N-(triazol-5-yl)hetarylcarboxamides of formula I and their use as herbicides. The invention relates to N-(tetrazol-5-yl)- and N-(triazol-5-yl)hetarylcarboxamides of formula I and their use as herbicides. In said formula I, B represents N or CH, whereas X1 is N or CR1, X2 is N or CR2, X3 is N or CR3 and X4 is N or CR4; provided that a least one of X1, X3 and X4 is N; R, R1, R2, R3, R4 and R5 represent groups such as hydrogen, halogen or organic groups such as alkyl or phenyl.
Abstract:
The present invention relates to diaminotriazine compounds of the formula (I) and to their use as herbicides. The present invention also relates to agrochemical compositions for crop protection and to a method for controlling unwanted vegetation. wherein q is 0, 1, 2 or 3 Ra is selected from the group consisting of C1-C6-haloalkoxy, C1-C6-haloalkylthio, (C1-C6-haloalkyl)sulfinyl, (C1-C6-haloalkyl)-carbonyl, etc.; Rb is selected from the group consisting of halogen, OH, CN, amino, NO2, C1-C6-alkyl, C2-C6-alkenyl, C2-C6-alkynyl, C1-C6-alkoxy, etc.; R1 is selected from the group consisting of H, OH, S(O)2NH2, CN, C1-C6-alkyl, C2-C6-alkenyl, C2-C6-alkynyl, (C3-C6-cycloalkyl)-C1-C4-alkyl, etc.; R2 is selected from the group consisting of H, OH, S(O)2NH2, CN, C1-C6-alkyl, C2-C6-alkenyl, C2-C6-alkynyl, (C3-C6-cycloalkyl)-C1-C4-alkyl, etc.; R3 is selected from the group consisting of H, halogen, OH, CN, C1-C6-alkyl, (C1-C6-alkoxy)-C1-C6-alkyl, C3-C6-cycloalkyl, etc.; R4 is H, halogen, CN, C1-C6-alkyl, C1-C6-haloalkyl, C3-C6-cycloalkyl, C3-C6-halocycloalkyl, C1-C6-alkoxy and C1-C6-haloalkoxy; R5 is selected from the group consisting of halogen, CN, C1-C6-alkyl, C2-C6-alkenyl, C3-C6-alkynyl, C3-C6-cycloalkyl, etc.; or R4 and R5 together with the carbon atom to which they are attached form a moiety selected from the group consisting of carbonyl, C3-C6-cycloalkan-1,1-diyl, ipso-C3-C6-cycloalkendiyl, three- to six-membered saturated or partially unsaturated ipso-heterocyclodiyl; including their agriculturally acceptable salts.
Abstract:
The present invention relates to a method for identifying a polynucleotide encoding a polypeptide which confers herbicide tolerance to a plant by measuring photosynthetic quantum yield wherein an increase in the electron transport rate of the samples of the transformed plant as compared to the sample of the control plant is indicative for a herbicide tolerance conferring activity of said candidate polypeptide.
Abstract:
The present invention relates to herbicidal compositions comprising an isoxazolo[5,4-b]pyridine and at least one further compound selected from herbicidally active compounds and, if desired, safeners. The present invention also relates to the use of such a composition for controlling unwanted vegetation and to a method for controlling unwanted vegetation, which comprises allowing a composition to act on plants, their seeds and/or their habitat.
Abstract:
The present invention relates to diaminotriazine compounds and to their use as herbicides. It also relates to agrochemical compositions for crop protection and to a method for controlling unwanted vegetation. wherein p is 1 or 2; q is 0, 1, 2 or 3 provided that p+q is 1, 2, 3 or 4; Q is inter alia a chemical bond, O, S(O)m, CRq1Rq2, NRq3, C(O), C(O)O, Ar is phenyl, which is unsubstituted or carries 1, 2, 3, 4 or 5 radicals RA Ra is inter alia hydrogen, halogen, OH, CN, amino, NO2, C1-C6-alkyl, etc; Rb is inter alia halogen, OH, CN, amino, NO2, C1-C6-alkyl, etc.; R1 and R2 are inter alia H, OH, S(O)2NH2, CN, C1-C6-alkyl, etc; X is a radical selected from the group consisting of CR3R4R5, phenyl, which is unsubstituted or carries 1, 2, 3, 4 or 5 radicals RAr; NR3aR3b, OR3c, S(O)kR3d, k being 1, 2 or 3; and including their agriculturally acceptable salts.
Abstract:
The invention relates to isoxazolo[5,4-b]pyridine compounds of formula I, to the agriculturally useful salts of isoxazolo[5,4-b]pyridine compounds of formula I, and to their use as herbicides.
Abstract:
The present invention relates to azines of formula (I) wherein the variables are defined according to the description, processes and intermediated for preparing them, compositions comprising them and their use as herbicides, i.e. for controlling harmful plants and a method for controlling unwanted vegetation which comprises allowing a herbicidal effective amount of at least one azine of the formula I to act on plants, their seed and/or their habitat.
Abstract:
The present invention provides a substituted pyridine compound of the formula I or an agriculturally suitable salt or N-oxide thereof, wherein the variables in the formula I are defined as in the description. Substituted pyridine compounds of formula I are useful as herbicides.
Abstract:
The present invention relates to a pyrazolopyran of the general formula I wherein the variables are defined according to the description, including a tautomer, salt, cleavable prodrug, or mixtures thereof, in particular to said pyrazolopyran for use as a medicament and/or an inhibitor of the enzyme serinehydroxymethyltransferase (SHMT). The invention also relates to a process the preparation of a pyrazolopyran of the formula I, to compositions comprising said compound and processes for the preparation of these compositions. Further it relates to use of the pyrazolopyran of formula I as an herbicide as well as to a method of controlling undesired vegetation.