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Fungal Moleküler Sistematik

Year 1993, Volume: 5-6 Issue: 1-2, 109 - 118, 01.12.1993

Abstract

Bu derlemede fungusların moleküler sistematik çalışmalarında kullanılabilen moleküler biyolojik yöntemlerin fungus genomundaki uygulanma alanları ve bu çalışmalara model olmuş funguslar incelenmiştir.

References

  • 1. Baura, G., Szaro, T.M., Bruns, T.D. 1991. Gastroboletus laricinus is a recent derivative of Suillus grevillel: molecular evidence. Mycol. Soc. Am. Newsl. (Abstr). 42: 5.
  • 2. Förster, H., Coffey, M.D., Elwood, H., Sogin, M.L. 1990. Sequence analysis of the small subunit ribosomal RNAs of the three zooporic fungi and implications for fungal evolution. Mycologia 82: 306-312.
  • 3. Gouy, M., Li, W-H. 1989. Molecular phylogeny of the Kingdoms Animalia, Plantae and Fungi. Mol. Biol. Evol. 6: 109-122.
  • 4. Kistler, H.C., Bosland, P.W., Benny, U., Leong, S., Williams, P.H. 1987. Relatedness of the strains of Fusariurn oxysporum from crucifers measured by examination of mitochondrial and ribosomal DNA. Phytopathology 77: 1289-1993.
  • 5. Kohn, L.M., Petsche, D.M., Bailey, S.R., Novak, L.A., Anderson, J.B. 1988. Restriction fragment length polymorphisms in nuclear and mitochondrial DNA of Sclerotini species. Phytopathology 78: 1047-1051.
  • 6. Kurtzman, CC.P., Phaff, H.J., Meyer, S.A. 1983. Nucleic acid relatedness among yeasts. In: Yeast Genetics Fundamental and Applied Aspects, ed. J.F.T. Spencer, D. M. Spencer, A.R.W. Smith, pp 139-166. New York: Springer-Verlag.
  • 7. Martin, F.N. 1989. Taxomomic classification of asexual isolates of Pythium ultimum based on cultural characteristics and mitochondrial DNA restriction patterns. Exp. Mycol. 14: 47-56.
  • 8. McDonald, B.A., Martinez, J.P. 1990. DNA Restriction Fragment Length Polymorphisms among Mycosphaerell a graminicola (anamorph: Septoriatritici) isolates collected from a single wheat field. Phytopathology 80: 1368-1373.
  • 9. Michelmore, R.W., Hulbert, S.H. 1987. Molecular markers for genetic analysis of Phytopathological fungi. Annu. Rev. Phytopathol. 25: 383-404.
  • 10. Mills, D., McCluskey, K. 1990. Electrophoretic karyotypes of fungi: the new cytology. Mol.Plant. Mic. Interaction 3: 351-357.
  • 11. Momol, E.A., Kimbrough, J.W., Kistler, H.C. 1990. Electrophoretic karyotypes are dissimiliar for two srains of Fusarium oxysporum that differ in host range. Mycological Society of America Newsletter (Abstr.) 41(1): 31.
  • 12. Momol, E.A. 1992. Nuclear ribosomal DNA sequence analysis in molecular systematics of Pezizales. Ph.D. Thesis, University of Florida, Gainesville, Florida.
  • 13. Perkins, D.D., Turner, B.C. 1988. Neurospora from natural populations: toward the population biology of a haploid eukaryote. Exp. Mycol. 12: 91-131.
  • 14. Smith, M.L., Anderson, J.B. 1989. Restriction Fragment Length Polymorphisms in mitochondrial DNAs of Armillaria: Identification of North American biological species. Mycol. Res. 93: 247-256.
  • 15. Williams, J.G.K., Kübelik, A.R., Livak, K.J., Rafalski, J.A., Tlngey, S.V. 1990. DNA polymorhisms amplified by arbitrary primers are useful as genetic markers. Nucleic Acids Res. 18: 6531-6535.

Fungal Molecular Systematic

Year 1993, Volume: 5-6 Issue: 1-2, 109 - 118, 01.12.1993

Abstract

In this review paper, recently developed molecular techniques used for fungal systematics were reviewed. Also applications of these techniques for fungi from different classes were investigated. By using molecular methods for different parts of fungal genome such as mitochondrial and Mbosomal DNAs were analyzed. These techniques help to improve the fungal systematics dramatically.

References

  • 1. Baura, G., Szaro, T.M., Bruns, T.D. 1991. Gastroboletus laricinus is a recent derivative of Suillus grevillel: molecular evidence. Mycol. Soc. Am. Newsl. (Abstr). 42: 5.
  • 2. Förster, H., Coffey, M.D., Elwood, H., Sogin, M.L. 1990. Sequence analysis of the small subunit ribosomal RNAs of the three zooporic fungi and implications for fungal evolution. Mycologia 82: 306-312.
  • 3. Gouy, M., Li, W-H. 1989. Molecular phylogeny of the Kingdoms Animalia, Plantae and Fungi. Mol. Biol. Evol. 6: 109-122.
  • 4. Kistler, H.C., Bosland, P.W., Benny, U., Leong, S., Williams, P.H. 1987. Relatedness of the strains of Fusariurn oxysporum from crucifers measured by examination of mitochondrial and ribosomal DNA. Phytopathology 77: 1289-1993.
  • 5. Kohn, L.M., Petsche, D.M., Bailey, S.R., Novak, L.A., Anderson, J.B. 1988. Restriction fragment length polymorphisms in nuclear and mitochondrial DNA of Sclerotini species. Phytopathology 78: 1047-1051.
  • 6. Kurtzman, CC.P., Phaff, H.J., Meyer, S.A. 1983. Nucleic acid relatedness among yeasts. In: Yeast Genetics Fundamental and Applied Aspects, ed. J.F.T. Spencer, D. M. Spencer, A.R.W. Smith, pp 139-166. New York: Springer-Verlag.
  • 7. Martin, F.N. 1989. Taxomomic classification of asexual isolates of Pythium ultimum based on cultural characteristics and mitochondrial DNA restriction patterns. Exp. Mycol. 14: 47-56.
  • 8. McDonald, B.A., Martinez, J.P. 1990. DNA Restriction Fragment Length Polymorphisms among Mycosphaerell a graminicola (anamorph: Septoriatritici) isolates collected from a single wheat field. Phytopathology 80: 1368-1373.
  • 9. Michelmore, R.W., Hulbert, S.H. 1987. Molecular markers for genetic analysis of Phytopathological fungi. Annu. Rev. Phytopathol. 25: 383-404.
  • 10. Mills, D., McCluskey, K. 1990. Electrophoretic karyotypes of fungi: the new cytology. Mol.Plant. Mic. Interaction 3: 351-357.
  • 11. Momol, E.A., Kimbrough, J.W., Kistler, H.C. 1990. Electrophoretic karyotypes are dissimiliar for two srains of Fusarium oxysporum that differ in host range. Mycological Society of America Newsletter (Abstr.) 41(1): 31.
  • 12. Momol, E.A. 1992. Nuclear ribosomal DNA sequence analysis in molecular systematics of Pezizales. Ph.D. Thesis, University of Florida, Gainesville, Florida.
  • 13. Perkins, D.D., Turner, B.C. 1988. Neurospora from natural populations: toward the population biology of a haploid eukaryote. Exp. Mycol. 12: 91-131.
  • 14. Smith, M.L., Anderson, J.B. 1989. Restriction Fragment Length Polymorphisms in mitochondrial DNAs of Armillaria: Identification of North American biological species. Mycol. Res. 93: 247-256.
  • 15. Williams, J.G.K., Kübelik, A.R., Livak, K.J., Rafalski, J.A., Tlngey, S.V. 1990. DNA polymorhisms amplified by arbitrary primers are useful as genetic markers. Nucleic Acids Res. 18: 6531-6535.
There are 15 citations in total.

Details

Primary Language Turkish
Subjects Agricultural Engineering
Journal Section Articles
Authors

A. Esengül Momol This is me

M. Timur Momol This is me

Publication Date December 1, 1993
Published in Issue Year 1993 Volume: 5-6 Issue: 1-2

Cite

APA Momol, A. E., & Momol, M. T. (1993). Fungal Moleküler Sistematik. Akdeniz University Journal of the Faculty of Agriculture, 5-6(1-2), 109-118.
AMA Momol AE, Momol MT. Fungal Moleküler Sistematik. Akdeniz University Journal of the Faculty of Agriculture. December 1993;5-6(1-2):109-118.
Chicago Momol, A. Esengül, and M. Timur Momol. “Fungal Moleküler Sistematik”. Akdeniz University Journal of the Faculty of Agriculture 5-6, no. 1-2 (December 1993): 109-18.
EndNote Momol AE, Momol MT (December 1, 1993) Fungal Moleküler Sistematik. Akdeniz University Journal of the Faculty of Agriculture 5-6 1-2 109–118.
IEEE A. E. Momol and M. T. Momol, “Fungal Moleküler Sistematik”, Akdeniz University Journal of the Faculty of Agriculture, vol. 5-6, no. 1-2, pp. 109–118, 1993.
ISNAD Momol, A. Esengül - Momol, M. Timur. “Fungal Moleküler Sistematik”. Akdeniz University Journal of the Faculty of Agriculture 5-6/1-2 (December 1993), 109-118.
JAMA Momol AE, Momol MT. Fungal Moleküler Sistematik. Akdeniz University Journal of the Faculty of Agriculture. 1993;5-6:109–118.
MLA Momol, A. Esengül and M. Timur Momol. “Fungal Moleküler Sistematik”. Akdeniz University Journal of the Faculty of Agriculture, vol. 5-6, no. 1-2, 1993, pp. 109-18.
Vancouver Momol AE, Momol MT. Fungal Moleküler Sistematik. Akdeniz University Journal of the Faculty of Agriculture. 1993;5-6(1-2):109-18.