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Abstract:

The objective of this study was to ascertain the usefulness of the AFLP technique in assessing genetic diversity among 47 strains belonging to three Ascomycota genera and as a tool for solving taxonomic problems in related morphological species. Four Msel +1 primers were assayed in combination with two EcoRI +2 and four EcoRI +3 primers. In the present study both +2 and +3 EcoRI primers were informative, but EcoRI +2 produced profiles with high complexity. The addition of the extra selective nucleotide reduced the complexity of the banding patterns generating easily readable patterns to evaluate genetic diversity within and among species. Of the three ascomycetous genera assessed in this study, Colletotrichum (Glomerellaceae) presented the highest proportion of polymorphic AFLP loci, followed in order by Iodophanus (Pezizaceae) and Saccobolus (Ascobolaceae).

Registro:

Documento: Artículo
Título:AFLP characterization in pathogenic and coprophilous fungi
Autor:Cinto, I.E.; Gottlieb, A.M.; Gally, M.; Ranalli, M.E.; Ramos, A.M.
Filiación:Departamento Biodiversidad y Biología Experimental, Lab. 9, Universidad de Buenos Aires, Int. Güiraldes 2620, C1428EHA - Buenos Aires, Argentina
LACyE, Departamento Ecología Genética y Evolución, Universidad de Buenos Aires, Int. Güiraldes 2620, C1428EHA - Buenos Aires, Argentina
Cátedra de Fitopatología, Facultad de Agronomía, Universidad de Buenos Aires, Av. San Martín 4453, C1417DSE - Buenos Aires, Argentina
Palabras clave:Ascomycetes; Genetic characterization; Molecular markers; Taxonomy; Ascobolaceae; Ascomycota; Colletotrichum; Coprophilous; Fungi; Iodophanus; Pezizaceae; Saccobolus
Año:2009
Volumen:110
Página de inicio:81
Página de fin:87
DOI: http://dx.doi.org/10.5248/110.81
Título revista:Mycotaxon
Título revista abreviado:Mycotaxon
ISSN:00934666
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00934666_v110_n_p81_Cinto

Referencias:

  • Armstrong-Cho, C.L., Banniza, S., Glomerella truncata sp. nov., the teleomorph of Colletotrichum truncatum (2006) Mycol. Res., 110, pp. 951-956
  • Briard, M., Le Clerc, V., Grzebelus, L.D., Senalik, D., Simon, P.W., Modified protocols for rapid carrot genomic DNA extraction and AFLP™ analysis using silver stain or radioisotopes (2000) Pl. Molec. Biol. Rep., 18, pp. 235-241
  • Van, B.J., A world-monograph of the genera Ascobolus and Saccobolus (Ascomycetes, Pezizales) (1967) Persoonia Suppl., 1, pp. 1-260
  • Cámara, M.P., O'Neill, N.R., Van Berkum, P., Dernoeden, P.H., Palmer, M., Ophiosphaerella agrostis sp. nov. and its relationship to other species of Ophiosphaerella (2000) Mycologia, 92, pp. 317-325
  • Cinto, I.E., Dokmetzian, D.A., Ranalli, M.E., Iodophanus carneus and I. testaceus (Ascomycota, Pezizales) Independent taxonomie identity or synonymy? A study of their morphology and isozymes (2007) Bol. Soc. Argent. Bot., 42, pp. 181-187
  • Gamundi, I.J., Ranalli, M.E., Estudio sistemático y biológico de las ascoboláceas de Argentina I (1964) Nova Hedwigia, 7, pp. 517-533
  • Gottlieb, A.M., Lichtwardt, R.W., Molecular variation within and among species of Harpellales (2001) Mycologia, 93, pp. 65-80
  • 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) Amer. J. Bot., 92, pp. 352-369
  • James, C.M., Lesemann, S.S., Down, G.J., Modified AFLP analysis method for species with small genomes (2003) Pl. Molec. Biol. Rep., 21, pp. 303-307
  • Kimbrough, J.W., Luck-Allen, R., Cain, R.F., Iodophanus, the Pezizeae segregate of Ascophanus (Pezizales) (1969) Amer. J. Bot., 56, pp. 1187-1202
  • Kothera, R.T., Keinath, A.P., Dean, R.A., Farnham, M.W., AFLP analysis of a worldwide collection of Didymella bryoniae (2003) Mycol. Res., 107, pp. 297-304
  • Levin, L., Ramos, A.M., Parisi, M., Gaily, M., Screening of Colletotrichum (Ascomycota) isolates causal agents of soybean anthracnose, for lacease production (2007) Bol. Soc. Argent. Bot., 42, pp. 71-77
  • O'Neill, N.R., Van Berkům, P., Lin, J., Kuo, J., Ude, G.N., Kenworthy, W., Saunders, J.A., Application of amplified fragment length polymorphism for genetic characterization of Colletotrichum pathogens of alfalfa (1997) Phytopathology, 87, pp. 745-750
  • 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
  • Roa, A.C., Maya, M.M., Duque, M.C., Tohme, J., Allem, A.C., Bonierbale, M.W., AFLP analysis of relationships among cassava and other Manihot species (1997) Theor. Appl. Genet., 95, pp. 741-750
  • Vos, P., Hogers, R., Bleeker, M., Reijans, M., Lee, T.V., Homes, M., Frijters, A., Zabeau, M., AFLP: A new technique for DNA fingerprinting (1995) Nucl. Acids Res., 23, pp. 4407-4414
  • Zeller, K.A., Jurgenson, J.E., El-Assiuty, E.M., Leslie, J.F., Isozyme and amplified fragment length polymorphism from cephalosporium maydis in Egypt (2000) Phytoparasitica, 28, pp. 121-130

Citas:

---------- APA ----------
Cinto, I.E., Gottlieb, A.M., Gally, M., Ranalli, M.E. & Ramos, A.M. (2009) . AFLP characterization in pathogenic and coprophilous fungi. Mycotaxon, 110, 81-87.
http://dx.doi.org/10.5248/110.81
---------- CHICAGO ----------
Cinto, I.E., Gottlieb, A.M., Gally, M., Ranalli, M.E., Ramos, A.M. "AFLP characterization in pathogenic and coprophilous fungi" . Mycotaxon 110 (2009) : 81-87.
http://dx.doi.org/10.5248/110.81
---------- MLA ----------
Cinto, I.E., Gottlieb, A.M., Gally, M., Ranalli, M.E., Ramos, A.M. "AFLP characterization in pathogenic and coprophilous fungi" . Mycotaxon, vol. 110, 2009, pp. 81-87.
http://dx.doi.org/10.5248/110.81
---------- VANCOUVER ----------
Cinto, I.E., Gottlieb, A.M., Gally, M., Ranalli, M.E., Ramos, A.M. AFLP characterization in pathogenic and coprophilous fungi. Mycotaxon. 2009;110:81-87.
http://dx.doi.org/10.5248/110.81