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Abstract:

AFLP methodology was applied to characterize three Coprotus species (C. lacteus, C. niveus, C. sexdecimsporus) so as to estimate the levels of polymorphism within species, to analyze the phenetic relationships among them, and to contrast the AFLP findings to those of a previous RAPD study. The high number of AFLP bands obtained with the six assayed primers allowed us to detect intra-specific variability. The genetic variability within species obtained using AFLP (measured in terms of percentage of polymorphic loci) was two to three times higher than those obtained by RAPD. The phenograms generated by AFLP markers grouped all strains of the same species into three defined clusters, and a higher association between C. lacteus and C. sexdecimsporus was also observed. The AFLP technique could become a powerful tool for genera such as Coprotus, in which a high intra-specific homogeneity does not allow detection of genetic variability using other PCR-based markers. © 2015. Mycotaxon, Ltd.

Registro:

Documento: Artículo
Título:AFLP characterization of three argentine Coprotus species
Autor:Ramos, A.M.; Tadic, L.F.; Policelli, N.; Ferreyra, L.I.; Cinto, I.E.
Filiación:Lab 9 (PROPLME-PRHIDEB-CONICET), Departamento de Biodiversidad y Biología Experimental, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Buenos Aires, 1428, Argentina
Departamento de Ecología, Genética y Evolución, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Buenos Aires, 1428, Argentina
Palabras clave:Ascomycota; Coprophilous; Molecular markers
Año:2015
Volumen:130
Número:1
Página de inicio:265
Página de fin:273
DOI: http://dx.doi.org/10.5248/130.265
Título revista:Mycotaxon
Título revista abreviado:Mycotaxon
ISSN:00934666
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00934666_v130_n1_p265_Ramos

Referencias:

  • Billiard, S., López-Villavicencio, M., Hood, M.E., Giraud, T., Sex, outcrossing and mating types: Unsolved questions in fungi and beyond (2012) Journal of Evolutionary Biology, 25, pp. 1020-1038. , http://dx.doi.org/10.1111/j.1420-9101.2012.02495.x
  • Briard, M., Le Clerc, V., Grzebelus, L.D., Senalik, D., Simon, P.W., Modified protocols for rapid carrot genomic DNA extraction and AFLP TM analysis using silver stain or radioisotopes (2000) Plant Molecular Biology Reporter, 18, pp. 235-241. , http://dx.doi.org/10.1007/BF02823994
  • Chen, R.S., McDonald, B.A., Sexual reproduction plays a major role in the genetic structure of populations of the fungus Mycosphaerella graminicola (1996) Genetics, 142, pp. 1119-1126
  • Dokmetzian, D.A., Ramos, A.M., Cinto, I.E., Suárez, M.E., Ranalli, M.E., Seis especies del género Coprotus (Pyronemataceae) de Argentina estudiadas en cultivo (2005) Hickenia, 3 (57), pp. 243-252
  • Esser, K., Kuenen, R., (1967) Genetics of Fungi, , http://dx.doi.org/10.1007/978-3-642-86814-6, Springer-Verlag, New York
  • Gottlieb, A.M., Lichtwardt, R.W., Molecular variation within and among species of Harpellales (2001) Mycologia, 93, pp. 65-80. , http://dx.doi.org/10.2307/3761606
  • Gottlieb, A.M., Giberti, G.C., Poggio, L., Molecular analyses of the genus Ilex (Aquifoliaceae) in southern South America, evidence from AFLP and ITS sequence data (2005) American Journal of Botany, 92, pp. 352-369. , http://dx.doi.org/10.3732/ajb.92.2.352
  • Gower, J.C., Some distance properties of latent root and vector methods used in multivariate analysis (1966) Biometrika, 53, pp. 325-338. , http://dx.doi.org/10.1093/biomet/53.3-4.325
  • Guarro, J., Gené, J., Stchigel, A.M., Developments in fungal taxonomy (1999) Clinical Microbiology Reviews, 12, pp. 454-500
  • Kimbrough, J.W., Luck-Allen, E.R., Cain, R.F., North American species of Coprotus (Thelebolaceae: Pezizales) (1972) Can. J. Bot., 50, pp. 957-971. , http://dx.doi.org/10.1139/b72-116
  • Kohn, L.M., Developing new characters for fungal systematics: An experimental approach for determining the rank of resolution (1992) Mycologia, 84, pp. 139-153. , http://dx.doi.org/10.2307/3760244
  • Majer, D., Mithen, R., Lewis, B.G., Vos, P., Oliver, R.P., The use of AFLP fingerprinting for the detection of genetic variation in fungi (1996) Mycol. Res., 100, pp. 1107-1111. , http://dx.doi.org/10.1016/S0953-7562(96)80222-X
  • McDonald, B.A., Linde, C., Pathogen population genetics, evolutionary potential, and durable resistance (2002) Ann. Rev. Phytopathol., 40, pp. 349-379. , http://dx.doi.org/10.1146/annurev.phyto.40.120501.101443
  • Ramos, A.M., Forchiassin, F., Ranalli, M.E., Saidman, B., Isozyme analysis of different species of the genus Saccobolus (Ascomycetes, Pezizales) (2000) Mycotaxon, 74, pp. 447-462
  • Ramos, A.M., Dokmetzian, D.A., Ferreyra, L.I., Ranalli, M.E., First report on RAPD patterns able to differentiate some Argentinian species of the genus Coprotus (Ascomycota) (2008) Mycotaxon, 103, pp. 9-19
  • Rayner, A.D., Evolutionary processes affecting adaptation to saprotrophic life styles in ascomycete populations (1994) Ascomycete Systematics. Problems and Perspectives in the Nineties, pp. 261-271. , DL Hawksworth ed., NATO ASI series. Plenum Press, USA
  • Rohlf, J.F., NTSYS-PC (1993) Numerical Taxonomy and Multivariate Analysis System, , Version 1.8. New York: Exeter Software Applied Biostatistics Inc
  • Sneath, P.H., Sokal, R.R., (1973) Numerical Taxonomy: The Principles and Practice of Numerical Classification, , San Francisco: W. H. Freeman & Co
  • Suárez, M.E., Ranalli, M.E., Dokmetzian, D.A., Ramos, A.M., Characterization of three species of the genus Coprotus (Ascomycota) by isozyme analysis (2006) Mycotaxon, 97, pp. 257-273
  • Sokal, R.R., Rohlf, J.F., The comparison of dendrograms by objective methods (1962) Taxon, 11, pp. 33-40. , http://dx.doi.org/10.2307/1217208
  • Vos, P., Hogers, R., Bleeker, M., Reijans, M., Lee, T.V., Hornes, M., Friters, A., Zabeau, M., AFLP: A new technique for DNA fingerprinting (1995) Nucl. Acids Res., 23, pp. 4407-4414. , http://dx.doi.org/10.1093/nar/23.21.4407
  • Wicklow, D.T., The coprophilous fungal community: A mycological system for examining ecological ideas (1981) The Fungal Community: Its Organization and Role in the Ecosystem, pp. 47-76. , DT Wicklow, GC Carroll eds, Marcel Dekker, USA

Citas:

---------- APA ----------
Ramos, A.M., Tadic, L.F., Policelli, N., Ferreyra, L.I. & Cinto, I.E. (2015) . AFLP characterization of three argentine Coprotus species. Mycotaxon, 130(1), 265-273.
http://dx.doi.org/10.5248/130.265
---------- CHICAGO ----------
Ramos, A.M., Tadic, L.F., Policelli, N., Ferreyra, L.I., Cinto, I.E. "AFLP characterization of three argentine Coprotus species" . Mycotaxon 130, no. 1 (2015) : 265-273.
http://dx.doi.org/10.5248/130.265
---------- MLA ----------
Ramos, A.M., Tadic, L.F., Policelli, N., Ferreyra, L.I., Cinto, I.E. "AFLP characterization of three argentine Coprotus species" . Mycotaxon, vol. 130, no. 1, 2015, pp. 265-273.
http://dx.doi.org/10.5248/130.265
---------- VANCOUVER ----------
Ramos, A.M., Tadic, L.F., Policelli, N., Ferreyra, L.I., Cinto, I.E. AFLP characterization of three argentine Coprotus species. Mycotaxon. 2015;130(1):265-273.
http://dx.doi.org/10.5248/130.265