Cytochrome P-450 monooxygenase activity in herbicide-resistant and -susceptible late watergrass ( Echinochloa phyllopogon)

Late watergrass is a major weed of rice in California, and several populations showed resistance to multiple herbicides of differing modes of action. Bispyribac-sodium, fenoxaprop-ethyl, and thiobencarb were used in this study as inducers and substrates of cytochrome P-450 monooxygenases (P450s). To...

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Published inPesticide biochemistry and physiology Vol. 83; no. 2; pp. 107 - 114
Main Authors Yun, Min-Soo, Yogo, Yasuhiro, Miura, Reiichi, Yamasue, Yuji, Fischer, Albert J.
Format Journal Article
LanguageEnglish
Published San Diego, CA Elsevier Inc 01.10.2005
Elsevier
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Abstract Late watergrass is a major weed of rice in California, and several populations showed resistance to multiple herbicides of differing modes of action. Bispyribac-sodium, fenoxaprop-ethyl, and thiobencarb were used in this study as inducers and substrates of cytochrome P-450 monooxygenases (P450s). To examine the role of P450s in herbicide metabolism by a herbicide-resistant (R) and a herbicide-susceptible (S) late watergrass ( Echinochloa phyllopogon) biotype, seedlings were grown in absence and presence of the above three herbicides as inducers. The efficacy of the inducer treatments was confirmed by monitoring changes in P450 content and activity. Herbicide induction increased P450 content and activity in both R and S biotypes. This increase was higher in the R biotype. The induced P450s exhibited specificity for the different herbicide substrates. Our study suggests that induction of P450s is the mechanism involved in the multiple-herbicide resistance observed in late watergrass.
AbstractList Late watergrass is a major weed of rice in California, and several populations showed resistance to multiple herbicides of differing modes of action. Bispyribac-sodium, fenoxaprop-ethyl, and thiobencarb were used in this study as inducers and substrates of cytochrome P-450 monooxygenases (P450s). To examine the role of P450s in herbicide metabolism by a herbicide-resistant (R) and a herbicide-susceptible (S) late watergrass (Echinochloa phyllopogon) biotype, seedlings were grown in absence and presence of the above three herbicides as inducers. The efficacy of the inducer treatments was confirmed by monitoring changes in P450 content and activity. Herbicide induction increased P450 content and activity in both R and S biotypes. This increase was higher in the R biotype. The induced P450s exhibited specificity for the different herbicide substrates. Our study suggests that induction of P450s is the mechanism involved in the multiple-herbicide resistance observed in late watergrass.
Late watergrass is a major weed of rice in California, and several populations showed resistance to multiple herbicides of differing modes of action. Bispyribac-sodium, fenoxaprop-ethyl, and thiobencarb were used in this study as inducers and substrates of cytochrome P-450 monooxygenases (P450s). To examine the role of P450s in herbicide metabolism by a herbicide-resistant (R) and a herbicide-susceptible (S) late watergrass ( Echinochloa phyllopogon) biotype, seedlings were grown in absence and presence of the above three herbicides as inducers. The efficacy of the inducer treatments was confirmed by monitoring changes in P450 content and activity. Herbicide induction increased P450 content and activity in both R and S biotypes. This increase was higher in the R biotype. The induced P450s exhibited specificity for the different herbicide substrates. Our study suggests that induction of P450s is the mechanism involved in the multiple-herbicide resistance observed in late watergrass.
Author Miura, Reiichi
Yogo, Yasuhiro
Fischer, Albert J.
Yun, Min-Soo
Yamasue, Yuji
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  surname: Fischer
  fullname: Fischer, Albert J.
  organization: Weed Science Program, Department of Plant Sciences, University of California, Davis, CA 95616, USA
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Issue 2
Keywords Late watergrass
Bispyribac-sodium
Thiobencarb
Cytochrome P-450 monooxygenase
Herbicide-resistance
Fenoxaprop-ethyl
Monocotyledones
Weed
Enzyme
Cytochrome P450
Pesticides
Systemic
Herbicide
Sensitivity resistance
Gramineae
Angiospermae
Pyrimidine derivatives
Spermatophyta
Phytohormone
Oxidoreductases
Pesticide resistance
Carbamate
Cytochrome P450 monooxygenase
Language English
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SSID ssj0009409
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Snippet Late watergrass is a major weed of rice in California, and several populations showed resistance to multiple herbicides of differing modes of action....
SourceID proquest
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pascalfrancis
fao
elsevier
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StartPage 107
SubjectTerms Biological and medical sciences
Bispyribac-sodium
Chemical control
cytochrome P-450
Cytochrome P-450 monooxygenase
Echinochloa
Echinochloa oryzoides
fenoxaprop
Fenoxaprop-ethyl
Freshwater
Fundamental and applied biological sciences. Psychology
Herbicide-resistance
Late watergrass
Oryza sativa
oxygenases
Parasitic plants. Weeds
Phytopathology. Animal pests. Plant and forest protection
Thiobencarb
Weeds
Title Cytochrome P-450 monooxygenase activity in herbicide-resistant and -susceptible late watergrass ( Echinochloa phyllopogon)
URI https://dx.doi.org/10.1016/j.pestbp.2005.04.002
https://search.proquest.com/docview/17409313
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