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Enhanced effect of thiobencarb on bispyribac-sodium control of Echinochloa phyllopogon (Stapf ) Koss. in California rice (Oryza sativa L.)
Authors:ALBERT J FISCHER  DAVID P CHEETHAM  FRANCESCO VIDOTTO  RAFAEL DE PRADO
Institution:Vegetable Crops Department, University of California, Davis, CA, USA,; Dipartimento di Agronomia, Selvicoltura e Gestione del Territorio, Universitàdegli Studi di Torino, Grugliasco, Turin, Italy and; Departamento de Química Agrícola y Edafología, Escuela Técnica superior de Ingenieros Agrónomos y Montes, Universidad de Córdoba, Córdoba Spain
Abstract:Bispyribac-sodium {sodium 2,6-bis(4,6-dimethoxy-2-pyrimidinyl)oxy] benzoate} has recently been introduced to California where it effectively controls Echinochloa spp. in rice ( Oryza sativa L.). However, biotypes of early watergrass ( Echinochloa oryzoides (Ard.) Fritsch) and late watergrass ( E. phyllopogon (Stapf ) Koss.) have evolved resistance to this herbicide. In 2001 and 2002, greenhouse and field experiments evaluated interactions between thiobencarb { S -(4-chlorophenyl) methyl] diethylcarbamothioate} and bispyribac-sodium on resistant (R) and susceptible (S) late watergrass in California rice. Synergism was assessed using Colby's test and regression analysis. In the greenhouse, thiobencarb at 4480 and 5333 g ai ha−1 synergistically reduced bispyribac-sodium GR50 values on the R and S biotypes by 50–70% without increasing toxicity to rice. Synergism was also observed on S late watergrass in the field when 10 g ai ha−1 bispyribac-sodium was mixed with 1120–2240 g ai ha−1 thiobencarb. These effects could be related to interactions between thiocarbamates and enzymes in Phase I reactions of herbicide metabolism. This synergism results in better control at lower rates allowing a reduction in weed control costs, the herbicide load on the environment and a lower selection pressure towards resistant weed biotypes.
Keywords:bispyribac-sodium              Echinochloa phyllopogon            enhanced effect  rice  synergism  thiobencarb
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