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Genetics/Molecular Biology

Recovery and characterization of spontaneous, selenate-resistant mutants of Magnaporthe grisea, the rice blast pathogen

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Pages 954-963 | Accepted 12 Jun 1998, Published online: 28 Aug 2018

LITERATURE CITED

  • Badii, F., M. O. Moss, and K. Wilson. 1986. The effect of sodium biselenate on the growth and alfatoxin production of Aspergillus parasiticus and the growth of other aspergilli. Lett. Appl. Microbiol. 2: 61–64.
  • Benitez, J. A., A. Alonso, J. Delgado, and A. Kotyk. 1983. Sulfate transportation in Candida utilis. Folia Microbiol. 28: 6–11.
  • Breton, A., and Y. Surdin-Kerjan. 1977. Sulfate uptake in Sacchromyces cerevisiae: Biochimical and genetic study. J. Bacteriol. 132: 224–232.
  • Bos, C. J., and D. Stadler. 1996. Mutation. Pp. 13–42. In: Fungal genetics principles and practice. Ed., C. J. Bos. Marcel Dekker, Inc., New York.
  • Chen, D. H., R. S. Zeigler, H. Leung, and R. J. Nelson. 1995. Population structure of Pyricularia grisea at two screening sites in the Philippines. Phytopathology 85: 1011–1020.
  • Chumley, F. G., and B. Valent. 1990. Genetic analysis of melanin-deficient, nonpathogenic mutants of Magnaporthe grisea. Molec. Pl.-Microbe Interact. 3: 135–143.
  • Correa-Victoria, F. J., and R. S. Zeigler. 1993. Pathogenic variability in Pyricularia grisea at a rice blast “hot spot” breeding site in eastern Colombia. Pl. Dis. 77: 1029–1035.
  • Correll, J. C., J. C. Guerber, and F. N. Lee. 1995a. Examination of virulence among isolates in MGR586 DNA fingerprint groups of the rice blast pathogen, Pyricularia grisea, in Arkansas. (Abstr.) Phytopathology 85: 1199.
  • Correll, J. C., J. C. Guerber, and F. N. Lee. 1995b. Virulence instability of an MGR-DNA fingerprint group of the rice blast pathogen, Pyricularia grisea. (Abstr.) Inoculum. 46: 9.
  • Correll, J. C., J. C. Guerber, and F. N. Lee, T. L. Harp, F. N. Lee, and R. S. Zeigler. 1998. The use of vegetative compatibility to characterize population diversity in Pyricularia grisea. (Abstr.) Proc. of the 2nd International Rice Blast Symposium. Montpellier, France.
  • Correll, J. C., J. C. Guerber, and F. N. Lee, T. L. Harp, F. N. Lee, and R. S. Zeigler, and J. F. Leslie. 1987. Recovery of spontaneous selenate resistant mutants from Fusarium oxysporum and Fusarium moniliforme. (Abstr.) Phytopathology 77: 1710.
  • Cove, D. J. 1976. Chlorate toxicity in Aspergillus nidulans: The selection and characterization of the chlorate resistant mutants. Heredity 36: 191–203.
  • Crawford, M. S., F. G. Chumley, C. G. Weaver, and B. Valent. 1986. Characterization of the heterokaryotic and vegetative diploid phases of Magnaporthe grisea. Genetics 114: 1111–1129.
  • Fels, I. G., and V. H. Cheldelin. 1950. Selenate inhibition studies IV. Biochemical basis of selenate toxicity in yeasts. J. Biol. Chem. 185: 803–813.
  • Genovesi, A. D., and C. W. Magill. 1976. Heterokaryosis and parasexuality in Pyricularia oryzae Cav. Can. J. Microbiol. 22: 531–536.
  • Garcia, X., J. A. Benitez, J. Delgado, and A. Kotyk. 1983. Isolation of sulfate transport defective mutants of Candida utilis. Further evidence of a common transport system for sulphate, sulphite, and thiosulphate. Folia Microbiol. 28: 1–5.
  • Hamer, J. E., B. Valent, and F. G. Chumley. 1989. Mutations at the SMO genetic locus affect the shape of diverse cell types in the rice blast fungus. Genetics 122: 351–361.
  • Harp, T. L., and J. C. Correll. 1997a. Generation and characterization of selenate-resistant mutants of Magnaporthe grisea. Fungal Genet. Newslett. 44e: 25.
  • Harp, T. L., and J. C. Correll. 1997b. Virulence of sulfate non-utilizing mutants of Pyricularia grisea and their use as a genetic marker. (Abstr.) Phytopathology 87: S39.
  • Hawthorne, B. T., and J. Rees-George. 1996. Use of nitratte non-utilizing mutants to study vegetative incompatibility in Fusarium solani (Nectria haematacocca) especially members in mating populations I, V, and VI. Mycol. Res. 100: 1075–1081.
  • Jacobson, D. L., and T. R. Gordon. 1988. Vegetative compatibility and self-incompatibility within Fusarium oxysporum f. sp. melonis. Phytopathology 78: 668–672.
  • Kuo, T., L. Yang, P. Yeh, and H. W. Li. 1967. Studies on induced mutants of Piricularia oryzae and on their pathogenicity. Bot. Bull. Acad. Sin. 8: 20–29.
  • Lau, G. W., and A. H. Ellingboe. 1993. Genetic analysis of mutations to increased virulence in Magnaporthe grisea. Phytopathology 83: 1093–1096.
  • Lau, G. W., and A. H. Ellingboe, and J. E. Hamer. 1996. Regulatory genes controlling MPG1 expression and pathogenicity in the rice blast fungus Magnaporthe grisea. Pl. Cell 8: 771–781.
  • Leung, H., E. S. Borromeo, M. A. Bernado, and J. L. Nottegham. 1988. Genetic analysis of virulence in the rice blast fungus Magnaporthe grisea. Phytopathology 78: 1227–1233.
  • Leung, H., E. S. Borromeo, M. A. Bernado, and J. L. Nottegham, and M. Taga. 1988. Magnaporthe grisea (Pyricularia grisea), the blast fungus. Adv. Pl. Pathol. 6: 175–188.
  • Levy, M., J. Romao, M. A. Marchetti, and J. E. Hamer. 1991. DNA fingerprinting with a dispersed repeated sequence resolves pathotype diversity in the rice blast fungus. Pl. Cell 3: 95–102.
  • Long, D. H., D. O. TeBeest, J. C. Correll, and F. N. Lee. 1997. Artificially infested seed initiates rice blast epidemics in small plots. (Abstr.) Phytopathology 87: S59.
  • Nakamura, T. 1962. Biochemical genetical studies on the pathway of sulfate assimilation in Aspergillus nidulans. J. Gen. Microbiol. 27: 221–230.
  • Rosenfeld, I., and O. A. Beath. 1964. Selenium: geobotany, biochemistry, toxicity, and nutrition. Academic Press, New York. 411 pp.
  • Shull, V., and J. E. Hamer. 1994. Genomic structure and variability of Pyricularia grisea clonal populations. Pp. 65–84. In: Rice blast disease. Eds., R. S. Zeigler, S. A. Leong, and P. S. Teng. Commonwealth Agricultural Bureaux International, Wallingford, UK.
  • Valent, B. 1990. Rice blast as a model system for plant pathology. Phytopathology 80: 33–36.
  • Valent, B., and F. G. Chumley. 1991. Molecular genetic analysis of the rice blast fungus, Magnaporthe grisea. Annual Rev. Phytopathol. 29: 443–467.
  • Valent, B., and F. G. Chumley. 1994. Avirulence genes and mechanisms of genetic instability in the rice blast fungus. Pp. 111–134. In: Rice blast disease. Eds., R. S. Zeigler, S. A. Leong, and P. S. Teng. CAB International, Wallingford, UK.
  • Valent, B., and F. G. Chumley, L. Farrall, and F. G. Chumley. 1991. Magnaporthe grisea genes for pathogenicity and virulence identified through a series of backcrosses. Genetics 127: 87–101.
  • Weissman, G. S., and S. F. Trelease. 1954. Influence of sulfur on the toxicity of selenium to Aspergillus. Amer. J. Bot. 42: 489–495.
  • Xia, J. Q., J. C. Correli, F. N. Lee, M. A. Marchetti, and D. D. Rhodes. 1993. DNA fingerprinting to examine microgeographic variation in the Magnaporthe grisea (Pyricularia grisea) population in two rice fields in Arkansas. Phytopathology 83: 1029–1035.
  • Zambino, P. J., and T. C. Harrington. 1990. Heterokaryosis and vegetative compatibility in Leptographium wageneri. Phytopathology 80: 1460–1469.
  • Zeigler, R. S., L. X. Cuoc, R. P. Scott, M. A. Bernardo, D. H. Chen, B. Valent, and R. J. Nelson. 1995. The relationship between lineage and virulence in Pyricularia grisea in the Philippines. Phytopathology 85: 443–451.
  • Zeigler, R. S., L. X. Cuoc, R. P. Scott, M. A. Bernardo, D. H. Chen, B. Valent, and R. J. Nelson, R. Tohme, R. Nelson, M. Levy, and F. J. Correa-Victoria. 1994. Lineage exclusion: a proposal for linking blast population analysis to resistance breeding. Pp. 267–292. In: Rice blast disease. Eds., R. S. Zeigler, S. A. Leong, and P. S. Teng. CAB International, Wallingford, UK.

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