Artículo

Pildain, M.B.; Frisvad, J.C.; Vaamonde, G.; Cabral, D.; Varga, J.; Samson, R.A. "Two novel aflatoxin-producing Aspergillus species from Argentinean peanuts" (2008) International Journal of Systematic and Evolutionary Microbiology. 58(3):725-735
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Abstract:

Two novel species from Aspergillus section Flavi from different species of Arachis (peanuts) in Argentina are described as Aspergillus arachidicola sp. nov. and Aspergillus minisclerotigenes sp. nov. Their novel taxonomic status was determined using a polyphasic taxonomic approach with phenotypic (morphology and extrolite profiles) and molecular (β-tubulin and calmodulin gene sequences) characters. A. minisclerotigenes resembles Aspergillus flavus and Aspergillus parvisclerotigenus in producing aflatoxins B1 and B2, cyclopiazonic acid, kojic acid and aspergillic acid, but in addition it produces aflatoxins G1 and G2, aflavarins, aflatrem, aflavinines, parasiticolides and paspaline. This species also includes several isolates previously assigned to A. flavus group II and three Australian soil isolates. A. arachidicola produces aflatoxins B1, B2, G1 and G2, kojic acid, chrysogine and parasiticolide, and some strains produce aspergillic acid. The type strain of A. arachidicola is CBS 117610T=IBT 25020T and that of A. minisclerotigenes is CBS 117635T =IBT 27196T. The Mycobank accession numbers for Aspergillus minisclerotigenes sp. nov. and Aspergillus arachidicola sp. nov. are respectively MB 505188 and MB 505189 (http://www.mycobank.org). © 2008 IUMS.

Registro:

Documento: Artículo
Título:Two novel aflatoxin-producing Aspergillus species from Argentinean peanuts
Autor:Pildain, M.B.; Frisvad, J.C.; Vaamonde, G.; Cabral, D.; Varga, J.; Samson, R.A.
Filiación:Faculty of Ciencias Exactas y Naturales, Lab. 69, University of Buenos Aires, Pab. II, EHA1428 Buenos Aires, Argentina
Center for Microbial Biotechnology, BioCentrum-DTU, Technical University of Denmark, Building 221, DK-2800 Kgs. Lyngby, Denmark
CBS Fungal Biodiversity Centre, PO Box 85167, 3508 AD Utrecht, Netherlands
Department of Microbiology, Faculty of Sciences, University of Szeged, PO Box 533, H-6701 Szeged, Hungary
Palabras clave:aflatoxin; aflatoxin B1; aflatoxin B2; aflatoxin G1; aflatoxin G2; aflatrem; aflavarin; aflavinine; aspergillic acid; beta tubulin; calmodulin; cyclopiazonic acid; kojic acid; mycotoxin; parasiticolide; unclassified drug; aflatoxin; calmodulin; fungal DNA; tubulin; Argentina; article; Aspergillus; Aspergillus flavus; Aspergillus minisclerotigenes; Aspergillus parvisclerotigenus; fungus growth; fungus identification; gene sequence; gene structure; genetic analysis; genotype; micromorphology; nonhuman; nucleotide sequence; peanut; phenotype; phylogenetic tree; priority journal; species difference; species invasion; taxonomy; biosynthesis; classification; DNA sequence; genetics; isolation and purification; microbiological examination; microbiology; molecular genetics; peanut; physiology; Arachis; Aspergillus; Aspergillus flavus; Aflatoxins; Arachis hypogaea; Argentina; Aspergillus; Calmodulin; DNA, Fungal; Genotype; Molecular Sequence Data; Mycological Typing Techniques; Phenotype; Sequence Analysis, DNA; Species Specificity; Tubulin
Año:2008
Volumen:58
Número:3
Página de inicio:725
Página de fin:735
DOI: http://dx.doi.org/10.1099/ijs.0.65123-0
Título revista:International Journal of Systematic and Evolutionary Microbiology
Título revista abreviado:Int. J. Syst. Evol. Microbiol.
ISSN:14665026
CODEN:ISEMF
CAS:aflatoxin B1, 1162-65-8; aflatoxin B2, 7220-81-7; aflatoxin G1, 1165-39-5; aflatoxin G2, 7241-98-7; aflatoxin, 1402-68-2; aflatrem, 70553-75-2; aspergillic acid, 490-02-8; beta tubulin, 87090-36-6; cyclopiazonic acid, 18172-33-3, 83136-88-3; kojic acid, 501-30-4; Aflatoxins; Calmodulin; DNA, Fungal; Tubulin
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_14665026_v58_n3_p725_Pildain

Referencias:

  • Applegate, K.L., Chipley, J.R., Increased aflatoxin G1 production by Aspergillus flavus via gamma irradiation (1973) Mycologia, 65, pp. 1266-1273
  • Austwick, P.K.C., Ayerst, G., Groundnut microflora and toxicity (1963) Chem Ind, 1963, pp. 55-61
  • Bayman, P., Cotty, P.J., Genetic diversity in Aspergillus flavus: Association with aflatoxin production and morphology (1993) Can J Bot, 71, pp. 23-31
  • Bennett, J.W., Papa, K.E., The aflatoxigenic Aspergillus spp (1988) Adv Plant Pathol, 6, pp. 263-280
  • Chang, P.-K., Ehrlich, K.C., Hua, S.-S.T., Cladal relatedness among Aspergillus oryzae isolates and Aspergillus flavus S and L morphotype isolates (2006) Int J Food Microbiol, 108, pp. 172-177
  • Codner, R.C., Sargeant, K., Yeo, R., Production of aflatoxin by the culture of strains of Aspergillus flavus-oryzae on sterilized peanuts (1963) Biotechnol Bioeng, 5, pp. 185-192
  • Cole, R.A., Cox, R.H., (1981) Handbook of Toxic Fungal Metabolites, , New York: Academic Press
  • Cotty, P.J., Virulence and cultural characteristics of two Aspergillus flavus strains pathogenic on cotton (1989) Phytopathology, 79, pp. 808-814
  • Cotty, P.J., Cardwell, K.F., Divergence of West African and North American communities of Aspergillus section Flavi (1999) Appl Environ Microbiol, 65, pp. 2264-2266
  • Dorner, J.W., Cole, R.J., Diener, U.L., The relationship of Aspergillus flavus and Aspergillus parasiticus with reference to production of aflatoxins and cyclopiazonic acid (1984) Mycopathologia, 87, pp. 13-15
  • Duran, R.M., Cary, J.W., Calvo, A.M., Production of cyclopiazonic acid, aflatrem, and aflatoxin by Aspergillus flavus is regulated by veA, a gene necessary for sclerotial formation (2007) Appl Microbiol Biotechnol, 73, pp. 1158-1168
  • Egel, D.S., Cotty, P.J., Elias, K.S., Relationships among isolates of Aspergillus sect. Flavi that vary in aflatoxin production (1994) Phytopathology, 84, pp. 906-912
  • Ehrlich, K.C., Chang, P.-K., Yu, J., Cotty, P.J., Aflatoxin biosynthesis cluster gene cypA is required for G aflatoxin formation (2004) Appl Environ Microbiol, 70, pp. 6518-6524
  • Feibelman, T.P., Cotty, P.J., Doster, M.A., Michailides, T.J., A morphologically distinct strain of Aspergillus nomius (1998) Mycologia, 90, pp. 618-623
  • Frisvad, J.C., Samson, R.A., Emericella venezuelensis, a new species with stellate ascospores producing sterigmatocystin and aflatoxin B1 (2004) Syst Appl Microbiol, 27, pp. 672-680
  • Frisvad, J.C., Samson, R.A., Polyphasic taxonomy of Penicillium subgenus Penicillium. A guide to identification of food and air-borne terverticillate Penicillia and their mycotoxins (2004) Stud Mycol, 49, pp. 1-174
  • Frisvad, J.C., Thrane, U., Liquid column chromatography of mycotoxins (1993) Chromatography of Mycotoxins: Techniques and Applications, pp. 253-372. , Edited by V. Betina. Amsterdam: Elsevier
  • Frisvad, J. C., Houbraken, J. & Samson, R. A. (1999). Aspergillus species and aflatoxin production: a reappraisal. In Food Microbiology and Food Safety into the Next Millennium, pp. 125-126. Edited by A. C. J. Tuijtelaars, R. A. Samson, F. M. Rombouts & S. Notermans. Zeist: Foundation Food Micro '99; Frisvad, J.C., Samson, R.A., Smedsgaard, J., Emericella astellata, a new producer of aflatoxin B1, B2 and sterigmatocystin (2004) Lett Appl Microbiol, 38, pp. 440-445
  • Frisvad, J.C., Skouboe, P., Samson, R.A., Taxonomic comparison of three different groups of aflatoxin producers and a new efficient producer of aflatoxin B1, sterigmatocystin and 3-O-methylsterigmatocystin, Aspergillus rambellii sp. nov (2005) Syst Appl Microbiol, 28, pp. 442-453
  • Geiser, D.M., Pitt, J.I., Taylor, J.W., Cryptic speciation and recombination in the aflatoxin-producing fungus Aspergillus flavus (1998) Proc Natl Acad Sci U S A, 95, pp. 388-393
  • Geiser, D.M., Dorner, J.W., Horn, B.W., Taylor, J.W., The phylogenetics of mycotoxin and sclerotium production in Aspergillus flavus and Aspergillus oryzae (2000) Fungal Genet Biol, 31, pp. 169-179
  • Glass, N.L., Donaldson, G.C., Development of primer sets designed for use with the PCR to amplify conserved genes from filamentous ascomycetes (1995) Appl Environ Microbiol, 61, pp. 1323-1330
  • Hesseltine, C.W., Shotwell, O.L., Ellis, J.J., Stubblefield, R.D., Aflatoxin formation by Aspergillus flavus (1966) Microbiol Mol Biol Rev, 30, pp. 795-805
  • Hesseltine, C. W., Shotwell, O. L., Smith, M., Ellis, J. J., Vandegraft, E. & Shannon, G. (1970). Production of various aflatoxins by strains of the Aspergillus flavus series. In Toxic Microorganisms: Mycotoxins, Botulism, pp. 202-210. Edited by M. Herzberg. Washington DC: UJNR Joint Panels on Toxic Micro-Organisms and the US Department of the Interior; Hillis, D.M., Bull, J.J., An empirical test of bootstrapping as a method for assessing confidence in phylogenetic analysis (1993) Syst Biol, 42, pp. 182-192
  • Hong, S.B., Cho, H.S., Shin, H.D., Frisvad, J.C., Samson, R.A., Novel Neosartorya species isolated from soil in Korea (2006) Int J Syst Evol Microbiol, 56, pp. 477-486
  • Horn, B.W., Aspergillus caelatus, a new species in section Flavi (1997) Mycotaxon, 61, pp. 185-191
  • Houbraken, J., Due, M., Varga, J., Meijer, M., Frisvad, J.C., Samson, R.A., Polyphasic taxonomy of Aspergillus section Usti (2007) Stud Mycol, 59, pp. 107-128
  • Ito, Y., Peterson, S.W., Wicklow, D.T., Goto, T., Aspergillus pseudotamarii, a new aflatoxin producing species in Aspergillus section Flavi (2001) Mycol Res, 105, pp. 233-239
  • Evaluation of certain food additives and contaminants (1996) WHO Technical Report Series, 868. , JECFA , Forty-sixth report of the Joint FAO/WHO Expert Committee on Food Additives, Geneva: World Health Organization
  • Klich, M.A., Pitt, J.I., Differentiation of Aspergillus flavus from A. parasiticus and other closely related species (1985) Trans Br Mycol Soc, 91, pp. 99-108
  • Klich, M.A., Mullaney, E.J., Daly, C.B., Cary, J.W., Molecular and physiological aspects of aflatoxin and sterigmatocystin biosynthesis by Aspergillus tamarii and A. ochraceoroseus (2000) Appl Microbiol Biotechnol, 53, pp. 605-609
  • Kornerup, A., Wanscher, J.H., (1978) Methuen Handbook of Colour, , 3rd edn. London: Eyre Methuen
  • Kumar, S., Tamura, K., Nei, M., MEGA3: Integrated software for molecular evolutionary genetics analysis and sequence alignment (2004) Brief Bioinform, 5, pp. 150-163
  • Kumeda, Y., Asao, T., Takahashi, H., Ichinoe, M., High prevalence of B and G aflatoxin-producing fungi in sugarcane field soil in Japan: Heteroduplex panel analysis identifies a new genotype within Aspergillus section Flavi and Aspergillus nomius (2003) FEMS Microbiol Ecol, 45, pp. 229-238
  • Kurtzman, C.P., Horn, B.W., Hesseltine, C.W., Aspergillus nomius, a new aflatoxin-producing species related to Aspergillus flavus and Aspergillus parasiticus (1987) Antonie van Leeuwelnhoek, 53, pp. 147-158
  • Murakami, H., Classification of the koji mold (1971) J Gen Appl Microbiol, 17, pp. 281-309
  • Murakami, H., Hayashi, K. & Ushijima, S. (1982). Useful key characters separating three Aspergillus taxa: A. flavus, A. parasiticus and A. flavus. J Gen Appl Microbiol 28, 55-60; Novas, M. V. & Cabral, D. (2002). Association of mycotoxin and sclerotia production with compatibility groups in Aspergillus flavus from peanut in Arge~tina. Plant Dis 86, 215-219; Peterson, S.W., Ito, Y., Horn, B.W., Goto, T., Aspergillus bombycis, a new aflatoxigenic species and genetic variation in its sibling species (2001) A. nomius. Mycologia, 93, pp. 689-703
  • Pildain, M.B., Vaamonde, G., Cabral, D., vegetativa y diversidad gen6tica en Aspergillus flavus de la provincia de Salta, Argentina. (2003) Bol Soc Argent Bot, 38 (SUPPL.), p. 275. , in Spanish
  • Pildain, M.B., Vaamonde, G., Chbral, D., Analysis of population structure of Aspergillus flavus from peanut based on vegetative compatibility, geographic origin, mycotoxin and sclerotia production (2004) Int J Food Microbiol, 93, pp. 31-40
  • Pildain, M.B., Cabral, D., Vaamonde, G., Poblaciones de Aspergillus flavus en mani cultivado en diferentes zonas agroécológicas de la Argentina, caracterización morfológica y toxigénica. (2005) Rev Invest Agropec, 34, pp. 3-19. , in Spanish
  • Pitt, J.I., Hocking, A.D., Glenn, D.R., An improved medium for detection of Aspergillus flavus and A. parasiticus (1983) J Appl Bacteriol, 54, pp. 109-114
  • Raper, K.B., Fennell, D.I., (1965) The Genus Aspergillus, , altimore: Williams & Wilkins
  • Saito, M., Tsurota, O., A new variety of Aspergillus flavus from tropical soil in Thailand and its aflatoxin productivity (1993) Proc Jpn Assoc Mycotoxicol, 37, pp. 31-36
  • (2004) Introduction to Food- and Airborne Fungi, , Samson, R. A, Hoekstra, E. S. & Frisvad, J. C, editors, 7th edn. Utrecht: Centraalbureau voor Schimmelcultures
  • Samson, R.A., Noonim, P., Meijer, M., Houbraken, J., Frisvad, J.C., Varga, J., Diagnostic tools to identify black aspergilli (2007) Stud Mycol, 59, pp. 129-145
  • Samson, R.A., Hong, S., Peterson, S.W., Frisvad, J.C., Varga, J., Polyphasic taxonomy of Aspergillus section Fumigati and its teleomorph Neosartorya (2007) Stud Mycol, 59, pp. 147-203
  • Schroeder, H.W., Effect of corn steep liquor on mycelial growth and aflatoxin production in Aspergillus parasiticus (1966) Appl Microbiol, 14, pp. 381-385
  • Smedsgaard, J., Micro-scale extraction procedure for standarc zed screening of fungal metabolite production in cultures (1997) J Chromatogr A, 760, pp. 264-270
  • Swofford, D. L. (2000)b. PAUP° 4.0: phylogenetic analysis using parsimony. Sunderland, MA: Sinauer Associates; Tanaka, T., Hasegawa, A., Aoki, N., Yamamoto, S., Udagawa, S., Sekita, S., Harada, M., Kawal, K., Production of aflatrem and its related indoloditerpenes by microsclerotium-producing strains of Aspergillus flavus (1989) Proc Jpn Assoc Mycotoxicol, 30, pp. 19-23
  • Thompson, J.D., Higgins, D.G., Gibson, T.J., CLUSTAL W: Improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice (1994) Nucleic Acids Res, 22, pp. 4673-4680
  • Vaamonde, G., Degrossi, C., Comerio, R., Fernandez Pinto, V., Aspergillus flavus y A. parasiticus en mani cultivado en la. provincia de Córdoba (Argentina): Características diferenciales y capacidad aflatoxicogénica. (1995) Bol Soc Argent Bot, 30, pp. 191-198. , in Spanish
  • Varga, J., Due, M., Frisvad, J.C., Samson, R.A., Taxonomic revision of Aspergillus section Clavati based on molecular, morphological and physiological data (2007) Stud Mycol, 59, pp. 89-106

Citas:

---------- APA ----------
Pildain, M.B., Frisvad, J.C., Vaamonde, G., Cabral, D., Varga, J. & Samson, R.A. (2008) . Two novel aflatoxin-producing Aspergillus species from Argentinean peanuts. International Journal of Systematic and Evolutionary Microbiology, 58(3), 725-735.
http://dx.doi.org/10.1099/ijs.0.65123-0
---------- CHICAGO ----------
Pildain, M.B., Frisvad, J.C., Vaamonde, G., Cabral, D., Varga, J., Samson, R.A. "Two novel aflatoxin-producing Aspergillus species from Argentinean peanuts" . International Journal of Systematic and Evolutionary Microbiology 58, no. 3 (2008) : 725-735.
http://dx.doi.org/10.1099/ijs.0.65123-0
---------- MLA ----------
Pildain, M.B., Frisvad, J.C., Vaamonde, G., Cabral, D., Varga, J., Samson, R.A. "Two novel aflatoxin-producing Aspergillus species from Argentinean peanuts" . International Journal of Systematic and Evolutionary Microbiology, vol. 58, no. 3, 2008, pp. 725-735.
http://dx.doi.org/10.1099/ijs.0.65123-0
---------- VANCOUVER ----------
Pildain, M.B., Frisvad, J.C., Vaamonde, G., Cabral, D., Varga, J., Samson, R.A. Two novel aflatoxin-producing Aspergillus species from Argentinean peanuts. Int. J. Syst. Evol. Microbiol. 2008;58(3):725-735.
http://dx.doi.org/10.1099/ijs.0.65123-0