Target sites for herbicides: entering the 21st century.
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[1] D. Ohta,et al. Inhibitors of imidazoleglycerolphosphate dehydratase as herbicides , 1997, Weed Science.
[2] R. J. Anderson,et al. Adenylosuccinate Synthetase: Site of Action of Hydantocidin, a Microbial Phytotoxin , 1996, Plant physiology.
[3] S. Cramp,et al. Isoxaflutole: the background to its discovery and the basis of its herbicidal properties. , 2001, Pest management science.
[4] D. C. Holt,et al. Mesotrione: a new selective herbicide for use in maize. , 2001, Pest management science.
[5] K. Grossmann,et al. Triaziflam and Diaminotriazine Derivatives Affect Enantioselectively Multiple Herbicide Target Sites , 2001, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[6] G. Lamoureux,et al. Tridiphane [2-(3,5-dichlorophenyl)-2-(2,2,2-trichloroethyl)oxirane] an atrazine synergist: Enzymatic conversion to a potent glutathione S-transferase inhibitor , 1986 .
[7] P. Böger,et al. Inhibitors of Biosynthesis of Very-Long-Chain Fatty Acids , 2002 .
[8] Lian-Hui Zhang,et al. Mechanisms of differential inhibitory effects of sodium sulfanilate on folic acid biosynthesis in plants , 1988 .
[9] M. Hatch. Inhibition of plant adenylosuccinate synthetase by hadacidin and the mode of action of hadacidin and structurally related compounds on plant growth , 1967 .
[10] H. M. Brown,et al. Herbicides Inhibiting Branched-Chain Amino Acid Biosynthesis: Recent Developments , 1994 .
[11] R. G. Hughes,et al. Adenosine-5[prime]-Phosphate Deaminase (A Novel Herbicide Target) , 1997, Plant physiology.
[12] T. Hawkes,et al. The Design and Synthesis of Inhibitors of Imidazoleglycerol Phosphate Dehydratase as Potential Herbicides , 1997 .
[13] P. Böger,et al. Very-Long-Chain Fatty Acid Biosynthesis is Inhibited by Cafenstrole, N,N-Diethyl-3-mesitylsulfonyl-1H-1,2,4-triazole-1-carboxamide and Its Analogs , 2001, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[14] G. Sandmann,et al. Mode of bleaching phytotoxicity of herbicidal diphenylpyrrolidinones. , 2001, Pest management science.
[15] P. Böger,et al. Inhibition of Very-Long-Chain Fatty Acid Biosynthesis by 2-Chloro-N-(3-methoxy-2-thenyl)-2′,6′-dimethylacetanilide, Thenylchlor, and Its Analogs , 2001 .
[16] P. Böger,et al. A specific and sensitive assay to quantify the herbicidal activity of chloroacetamides , 1998 .
[17] P. Böger,et al. Towards the primary target of chloroacetamides –new findings pave the way , 2000 .
[18] E. Martinoia,et al. An ABC-transporter of Arabidopsis thaliana has both glutathione-conjugate and chlorophyll catabolite transport activity. , 1998, The Plant journal : for cell and molecular biology.
[19] H. Lichtenthaler. Non-mevalonate isoprenoid biosynthesis: enzymes, genes and inhibitors. , 2000, Biochemical Society transactions.
[20] D. Yang,et al. Inhibition of 4-hydroxyphenylpyruvate dioxygenase by sethoxydim, a potent inhibitor of acetyl-coenzyme A carboxylase. , 1999, Bioorganic & medicinal chemistry letters.
[21] P. Böger,et al. Chloroacetamide Mode of Action, II: Inhibition of Very Long Chain Fatty Acid Synthesis in Higher Plants , 1998 .
[22] L. Owens,et al. Mechanism of inhibition of spinach β-cystathionase by rhizobitoxine , 1971 .
[23] J. Turner,et al. Association between Symptom Development and Inhibition of Ornithine Carbamoyltransferase in Bean Leaves Treated with Phaseolotoxin. , 1985, Plant physiology.
[24] B. Laber,et al. Inhibition ofNarcissus pseudonarcissusPhytoene Desaturase by Herbicidal 3-Trifluoromethyl-1,1′-biphenyl Derivatives , 1999 .