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1
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Cercosporin, a photosensitizing toxin from Cercospora species
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0001872808
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Active oxygen in fungal pathogenesis of plants: The role of cercosporin in Cercospora diseases
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Edited by K. R. Downum and R. Verpoorte. Plenum Press, New York
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Daub, M. E., M. Ehrenshaft, A. E. Jenns and K. R. Chung (1998) Active oxygen in fungal pathogenesis of plants: the role of cercosporin in Cercospora diseases. In Phytochemical Signals and Plant-Microbe Interactions, Recent Advances in Phytochemistry, Vol. 32 (Edited by K. R. Downum and R. Verpoorte), pp. 31-56. Plenum Press, New York.
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Daub, M.E.1
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3
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0000314953
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Peroxidation of tobacco membrane lipids by the photosensitizing toxin, cercosporin
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Changes in tobacco cell membrane composition and structure caused by the fungal toxin, cercosporin
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Production of singlet oxygen and superoxide by the fungal toxin, cercosporin
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Basidiobolus and Cercospora from human infections
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Chemistry of singlet oxygen 46. Quantum yield of cercosporin-sensitized singlet oxygen formation
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Cercosporin, a novel photodynamic pigment isolated from Cercospora kikuchii
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Yamazaki, S., A. Okube, Y. Akiyama and K. Fuwa (1975) Cercosporin, a novel photodynamic pigment isolated from Cercospora kikuchii. Agric. Biol. Chem. 39, 287-288.
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0001119404
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Resistance of fungi to the photosensitizing toxin, cercosporin
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Daub, M. E. (1987) Resistance of fungi to the photosensitizing toxin, cercosporin. Phytopathology 77, 1515-1520.
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Cellular resistance in rice to cercosporin, a toxin of Cercospora
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Batchvarova, R. B., V. S. Reddy and J. Bennett (1992) Cellular resistance in rice to cercosporin, a toxin of Cercospora. Phytopathology 82, 642-646.
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Effects of light and altered cercosporin phenotypes on gene expression in Cercospora kikuchii
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Rollins, J. A., M. Ehrenshaft and R. G. Upchurch (1993) Effects of light and altered cercosporin phenotypes on gene expression in Cercospora kikuchii. Can. J. Microbiol. 39, 118-124.
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Electrochemical reduction of the phytotoxin cercosporin
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Clark, R. A., T. R. Stephens, E. F. Bowden and M. E. Daub (1995) Electrochemical reduction of the phytotoxin cercosporin. J. Electroanal. Chem. 389, 205-208.
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Reductive detoxification as a mechanism of fungal resistance to singlet-oxygen-generating photosensitizers
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Daub, M. E., G. B. Leisman, R. A. Clark and E. F. Bowden (1992) Reductive detoxification as a mechanism of fungal resistance to singlet-oxygen-generating photosensitizers. Proc. Natl. Acad. Sci. USA 89, 9588-9592.
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0026593510
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Cell surface redox potential as a mechanism of defense against photosensitizers in fungi
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Sollod, C. C., A. E. Jenns and M. E. Daub (1992) Cell surface redox potential as a mechanism of defense against photosensitizers in fungi. Appl. Environ. Microbiol. 58, 444-449.
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Singlet oxygen yields, optical properties, and phototoxicity of reduced derivatives of the photosensitizer cercosporin
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Leisman, G. B. and M. E. Daub (1992) Singlet oxygen yields, optical properties, and phototoxicity of reduced derivatives of the photosensitizer cercosporin. Photochem. Photobiol. 55, 373-379.
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Regulation of cercosporin accumulation in culture by medium and temperature manipulation
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Jenns, A. E., M. E. Daub and R. G. Upchurch (1989) Regulation of cercosporin accumulation in culture by medium and temperature manipulation. Phytopathology 79, 213-219.
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Jenns, A.E.1
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Photosensitization by norfloxacin is a function of pH
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Bilski, P., L. J. Martinez, E. B. Koker and C. F. Chignell (1996) Photosensitization by norfloxacin is a function of pH. Photochem. Photobiol. 64, 496-500.
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Multiple modes of photodynamic action by cercosporin
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Hartman, P. E., W. J. Dixon, T. A. Dahl and M. E. Daub (1988) Multiple modes of photodynamic action by cercosporin. Photochem. Photobiol. 47, 699-703.
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Properties of differently charged micelles containing rose bengal: Application in photosensitization studies
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Photoprocesses of eosine and rose bengal ion pairs with cationic surfactant in nonpolar solvents: Application in photosensitization studies
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Bilski, P., R. Dabestani and C. F. Chignell (1994) Photoprocesses of eosine and rose bengal ion pairs with cationic surfactant in nonpolar solvents: application in photosensitization studies. Photochem. Photobiol. A Chem. 79, 121-130.
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SOR1, a gene required for photosensitizer and singlet oxygen resistance in Cercospora fungi is highly conserved in divergent organisms
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Ehrenshaft, M., A. E. Jenns, K. R. Chung and M. E. Daub (1998) SOR1, a gene required for photosensitizer and singlet oxygen resistance in Cercospora fungi is highly conserved in divergent organisms. Mol. Cell. 1, 603-609.
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Functional characterization of SOR1, a gene required for resistance to photosensitizing toxins in the fungus Cercospora nicotianae
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Ehrenshaft, M., K. R. Chung, A. E. Jenns and M. E. Daub (1999) Functional characterization of SOR1, a gene required for resistance to photosensitizing toxins in the fungus Cercospora nicotianae. Curr. Genet. 34, 478-485.
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0033529936
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A highly conserved sequence is a novel gene involved in de novo vitamin B6 biosynthesis
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In press
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Ehrenshaft, M., P. Bilski, M. Li, C. F. Chignell and M. E. Daub (1999) A highly conserved sequence is a novel gene involved in de novo vitamin B6 biosynthesis. Proc. Natl. Acad. Sci. USA, (In press).
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A novel gene required for cercosporin toxin resistance in the fungus Cercospora nicotianae
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Chung, K. R., A. E. Jenns, M. Ehrenshaft and M. E. Daub (1999) A novel gene required for cercosporin toxin resistance in the fungus Cercospora nicotianae. Mol. Gen. Genet. (In press).
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Chung, K.R.1
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