Metabolism of chlorsulfuron by plants: Biological basis for selectivity of a new herbicide for cereals
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Cited by (141)
Weed Dynamics and Management in Wheat
2017, Advances in AgronomyCitation Excerpt :ACCase inhibitors are widely used for the control of grass weeds in wheat and this has resulted in widespread resistance to herbicides with this mode of action (Devine, 1997; Heap, 2014; Kaundun, 2014; Mahmood et al., 2016). The sulfonylurea herbicides were the first chemical group of ALS inhibitors discovered with chlorsulfuron being the first herbicide marketed for the control of dicotyledonous weed in wheat (Sweetser et al., 1982). The introduction of chlorsulfuron marked a new era of chemical weed control in wheat and other cereals with recommended rates being orders of magnitude lower than the wheat herbicides at the time.
Acetohydroxyacid synthase (AHAS) in vivo assay for screening imidazolinone-resistance in sunflower (Helianthus annuus L.)
2012, Plant Physiology and BiochemistryCitation Excerpt :Mechanisms implicated in plant death include amino acid starvation, toxic compound accumulation, disruption of protein synthesis and disruption of photosynthate transport [7–9]. In certain crops such as Glycine max and Triticum aestivum, the selectivity of some AHAS inhibitor herbicides is based primarily on the ability of the crop to metabolize the herbicide [3,10,11]. But, in general, herbicide resistance is originated from an alteration in the target site of the enzyme [12–14].
Weeds Resistant to Nontriazine Classes of Herbicides
2008, The Triazine HerbicidesExpression of a wheat cytochrome P450 monooxygenase cDNA in yeast catalyzes the metabolism of sulfonylurea herbicides
2006, Pesticide Biochemistry and PhysiologyPurification of recombinant wheat cytochrome P450 monooxygenase expressed in yeast and its properties
2006, Protein Expression and PurificationSensitivity of avocado seedlings to herbicides
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