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Abstract:

In Argentina, the main pathogen associated with Fusarium Head Blight (FHB) is Fusarium graminearum Schw, perfect stage Gibberella zeae (Schw.) Petch. Prevention of mycotoxin contamination of food raw materials is now considered more important than subsequent cure. Accurate information is therefore needed on the impact of key environmental factors such as water availability and temperature and their interactions, and the identification of marginal and optimum conditions for growth and toxin production. Studies done in Argentina were focused on the impact of different abiotic factors (aW, temperature and fungicides) on F. graminearum growth rates and deoxynivalenol production. The impact of 5 fungicides (prochloraz, propioconazole, epoxiconazole, tebuconazole and azoxystrobin, 0.5-50 mg/ ml) on growth of F. graminearum isolated from wheat in Argentina were evaluated in relation to water activity (aW; 0.99, 0.97, 0.95) and temperature (15 and 25 °C) on wheat-based media (in vitro) and on wheat grains (in situ). Also the effect of osmotic (NaCl, glycerol) and matric (PEG8000) water stress on temporal germination and growth by F. graminearum strains isolated from wheat in Argentina over the water potential range of -0.7 to -14.0 MPa at 15 and 25 °C. The effect on endogenous water potentials and accumulation of sugars and sugar alcohols were also evaluated. The results showed that water potential and solute type have a significant effect on germination, germ tube extension, growth rates, germination, internal cell water potential and endogenous accumulation of sugars and sugar alcohols in F. graminearum. © Springer Science+Business Media Dordrecht 2013. All rights are reserved.

Registro:

Documento: Parte de libro
Título:Ecophysiology of Fusarium graminearum main pathogen associated to Fusarium head blight in Latin America
Autor:Ramírez, M.L.; Farnochi, M.C.; Chulze, S.N.
Filiación:Departamento de Microbiología e Inmunología, Facultad de Ciencias Exactas Fco-Qcas y Naturales, Universidad Nacional de Río-Cuarto, Ruta 36 Km 601, Río-Cuarto, Córdoba, Argentina
Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET), Buenos Aires, Argentina
Año:2013
Página de inicio:45
Página de fin:55
DOI: http://dx.doi.org/10.1007/978-94-007-7091-1_4
Título revista:Fusarium Head Blight in Latin America
Título revista abreviado:Fusarium Hd. Blight in Lat. Amer.
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97894007_v_n_p45_Ramirez

Referencias:

  • Aldred, D., Magan, N., Prevention strategies for tricothecenes (2004) Toxicol Lett, 153, pp. 165-171
  • Audenaert, K., Callewaert, E., Höfte, M., De Saeger, S., Haesaert, G., Hydrogen peroxide induced by fungicide prothioconazole triggers deoxynivalenol (DON) production by fusarium graminearum (2010) BMC Microbiol, 10, p. 112
  • Bakan, B., Pinson, L., Cahagnier, B., Melcion, D., Semon, E., Richard-Molard, D., Toxigenic potential of fusarium culmorum strains isolated from french wheat (2001) Food Addit Contam, 18, pp. 998-1003
  • Brennan, J.M., Fagan, B., Van Maanen, A., Cooke, B.M., Doohan, F.M., Studies on in vitro growth and pathogenicity of european fusarium fungi (2003) Eur J Plant Pathol, 109, pp. 577-587
  • Chamley, L.L., Rosenberg, A., Trenholom, H.L., Factors responsible for economics losses due to fusarium mycotoxin contamination of grains, food and feedstuffs (1994) Mycotoxins in Grain Compounds other than Aflatoxin, pp. 471-486. , Miller JD, Trenholom HL (eds), Egan Press, St. Paul, p
  • Chirife, J., Favetto, G., Fontan, C.F., Microbial growth at reduced water activities: Some physicochemical properties of compatible solutes (1984) J Appl Bacteriol, 56, pp. 259-268
  • Comerio, R.M., Fernandez, P.V.E., Vaamonde, G., Influence of water activity on deoxynivalenol accumulation on whea (1999) Mycotoxin, Rest, 15, pp. 24-31
  • Cook, R.J., Christen, A.A., Growth of cereal root rot fungi as affected by temperature-water potential interactions (1976) Phytopathology, 66, pp. 193-197
  • Crowe, J.H., Crowe, L.M., Chapman, D., Preservation of membranes in an hydrobiotic organisms: The role of trehalose (1984) Science, 223, pp. 701-703
  • Desjardins, A., (2006) Fusarium Mycotoxins: Chemistry, Genetics and Biology, pp. 79-108. , APS Press, St. Paul
  • D'Mello, J.P.F., MacDonald, A.M.C., Bonte, L., The effects of difenoconazole on 3-acetyl deoxynivalenol synthesis by fusarium culmorum : Implications for cereal quality (1997) Crop Protection & Food Quality: Meeting Customers Needs, Proceedings of BCPC and ANPP Conference, pp. 463-466. , Kent, UK
  • D'Mello, J.P.F., MacDonald, A.M.C., Postel, D., Dijksma, W.T.P., Dujardin, A., Placinta, C.M., Pesticide use and mycotoxin production in fusarium and aspergillus phytopathogens (1998) Eur J Plant Pathol, 104, pp. 741-751
  • Dalcero, A., Torres, A., Etcheverry, M., Chulze, S., Varsavsky, E., Occurrence of deoxynivalenol and fusarium graminearum in argentinian wheat (1997) Food Addit Contam, 14, pp. 11-14
  • Davis, D.J., Burlak, C., Money, N., Osmotic pressure of fungal compatible osmolytes (2000) Mycol Res, 104, pp. 800-880
  • Feofilova, E.P., Ivashechkin, A.A., Alekhin, A., Sergeeva, Y.E., Fungal spores: Dormancy, germination, chemical composition, and role in biotechnology (review) (2012) Appl Biochem Microbiol, 48, pp. 1-11
  • Galich, M.T., Fusarium head blight in Argentina (1996) Fusarium Head Scab: Global Status and Future Prospects. Proceedings of a Workshop Held at CIMMYT, , Duvin HJ, Gilchrist L, Reeves J, McNab A (eds), CIMMYT, Mexico
  • Greenhalgh, R., Neish, G.A., Miller, J.D., Deoxynivalenol, acetyl deoxynivalenol, and zearalenone formation by canadian isolates of fusarium graminearum on solid substrates (1983) Appl Environ Microbiol, 46, pp. 625-629
  • Griffin, D.M., (1972) Ecology of Soil Fungi, , Chapman and Hall, London
  • Griffin, D.M., Water and microbial stress (1981) Advances in Microbial Ecology, 5, pp. 91-136. , Alexander A (ed), Plenum Publishing Co, New York
  • Hallsworth, J.E., Magan, N., Effects of kcl concentration on accumulation of a cyclic sugar alcohols and trehalose in conidia of three entomopathogenic fungi (1994) Lett Appl Microbiol, 18, pp. 8-11
  • Holliger, K., Ekperigin, H.E., Mycotoxins in food producing animals (1999) Vet Clin N Am, 15, pp. 133-165
  • Hope, R.J., Magan, N., Two-dimensional environmental profiles of growth, deoxynivalenol and nivalenol production by fusarium culmorum isolates on wheat-based substrate (2003) Lett Appl Microbiol, 37, pp. 70-74
  • Hope, R.J., Colleate, A., Baxster, E.S., Magan, N., Interactions between environmental stress and fungicides effect growth and mycotoxin production by fusarium culmorum isolates from wheat grain (2002) Eur J Plant Pathol, 108, pp. 685-690
  • Hope, R.J., Aldred, D., Magan, N., Comparison of environmental profiles for growth and deoxynivalenol production by fusarium culmorum and F. Graminearum on wheat grain (2005) Lett Appl Microbiol, 40, pp. 295-300
  • Jennings, D.H., (1995) The Physiology of Fungal Nutrition, , Cambridge University Press, Cambridge
  • Jennings, D.H., Burke, R.M., Compatible solute the mycological dimension and their role as physiological buffering agents (1990) New Phytol, 116, pp. 277-283
  • Lacey, J., Magan, N., Fungi in cereal grain: Their occurrence and water and temperature relationships (1991) Trichotecenes and other Mycotoxins, pp. 243-256. , Chelkowsky J (ed), Wiley, New York
  • Llorens, A., Mateo, R., Hinojo, M.J., Valle-Algarra, F.M., Jimenez, M., Influence of environmental factors on biosynthesis of type B trichothecenes by isolates of fusarium spp. From spanish crops (2004) Int J Food Microbiol, 94, pp. 43-54
  • Magan, N., Effects of water potential and temperature on spore germination and germ-tube growth in vitro and on straw leaf sheaths (1988) Trans Br Mycol Soc, 90, pp. 97-107
  • Magan, N., Fungi in extreme environments (1997) The Mycota, 6, pp. 99-113. , Wicklow D, Soderstrom B (eds), Environmental and microbial relationships. Springer, Berlin
  • Magan, N., Lacey, J., Water relations of some fusarium species from infected wheat ears and grain (1984) Trans Br Mycol Soc, 83, pp. 281-285
  • Magan, N., Lacey, J., The effect of water activity and temperature on mycotoxin production by alternaria alternata in culture and on wheat grain (1985) Cereal Grain Mycotoxins, Fungi and Quality in Drying and Storage, pp. 77-118. , Lacey J (ed), Elsevier, Amsterdam
  • Magan, N., Lynch, J.M., Water potential, growth and cellulolysis of fungi involved in decomposition of cereal residues (1986) J Gen Microbiol, 132, pp. 1181-1187
  • Marín, S., Sanchis, V., Viñas, I., Canela, R., Magan, N., Effect of water activity and temperature on growth and fumonisin B 1 and B 2 production by fusarium proliferatum and F. Moniliforme on maize grain (1995) Lett Appl Microbiol, 21, pp. 298-301
  • Marín, S., Sanchis, V., Magan, N., Water activity, temperature and ph effects on growth of fusarium moniliforme and fusarium proliferatum isolates from maize (1995) Can J Microbiol, 41, pp. 1063-1070
  • Marín, S., Sanchis, V., Teixeido, R., Saenz, A.J., Ramos, A.J., Magan, N., Water activity, temperature relationships and microconidial germination of fusarium moniliforme and fusarium proliferatum from maize (1996) Can J Microbiol, 42, pp. 1045-1050
  • Martins, M.L., Martins, H.M., Effect of water activity, temperature and incubation time on the simultaneous production of deoxynivalenol and zearalenone in corn ( zea mays ) by fusarium graminearum (2002) Food Chem, 79, pp. 315-318
  • Matthies, A., Walker, F., Buchenauer, H., Interference of select fungicides, plant growth retardants as well as piperonyl butoxide and 1-aminobenzotriazole in trichothecene production of fusarium graminearum (strain 4528) in vitro (1999) Z PflAnzenkr PflAnzenschutz, 106, pp. 198-212
  • McMullen, M., Jones, R., Gallenberg, D., Scab of wheat and barley: A re-emerging disease of devastating impact (1997) Plant Dis, 81, pp. 1340-1348
  • Milus, E.A., Parson, C.E., Evaluation of foliar fungicides for controlling fusarium head blight of wheat (1994) Plant Dis, 78, pp. 697-699
  • Moss, M.O., Frank, J.M., Influence of the fungicide tridemorh on T-2 toxin production by fusarium sporotrichioides (1985) Trans Br Mycol Soc, 84, pp. 585-590
  • Parry, D.W., Pettit, T.R., Jenkinson, P., Lees, A.K., The cereal fusarium complex (1994) Ecology of Plant Pathogens, pp. 301-320. , Blakeman JP, Williamson B (eds), CABI International, Wallingford
  • Parry, D.W., Jenkinson, P., McLeod, L., Fusarium ear blight (scab) in small grain cereals-A review (1995) Plant Pathol, 44, pp. 207-238
  • Paul, P.A., Lipps, P.E., Hershman, D.E., McMullen, M.P., Draper, M.A., Madden, L.V., Efficacy of triazole-based fungicides for fusarium head blight and deoxynivalenol control in wheat: A multivariate meta-analysis (2008) Phytopathology, 98, pp. 999-1011
  • Placinta, C.M., Macdonald, A.M.C., D'Mello, J.P.F., Harling, R., The influence of carbendazim on mycotoxin production in fusarium sporotrichioides (1996) Proceedings of the Brighton Crop Protection Conference British Crop Protection Council, pp. 415-416. , Farnham, UK
  • Ramirez, M.L., Chulze, S., Magan, N., Impact of environmental factors and fungicides on growth and deoxynivalenol production by fusarium graminearum isolates from argentinian wheat (2004) Crop Prot, 23, pp. 117-125
  • Ramirez, M.L., Chulze, S., Magan, N., Impact of osmotic and matric water stress on germination, growth, mycelial water potentials and endogenous accumulation of sugars and sugar alcohols on fusarium graminearum (2004) Mycologia, 96, pp. 470-478
  • Ramirez, M.L., Chulze, S., Magan, N., Temperature and water activity effects on growth and temporal deoxynivalenol production by two argentinean strains of fusarium graminearum on irradiated wheat grain (2006) Int J Food Microbiol, 106, pp. 291-296
  • Ramirez, M.L., Reynoso, M.M., Farnochi, M.C., Chulze, S.N., Vegetative compatibility and mycotoxin chemotypes among fusarium graminearum ( gibberella zeae ) isolates from wheat in Argentina (2006) Eur J Plant Pathol, 115, pp. 129-138
  • Ramirez, M.L., Reynoso, M.M., Farnochi, M.C., Torres, A.M., Leslie, J.F., Chulze, S.N., Population genetic structure of gibberella zeae isolated from wheat in Argentina (2007) Food Addit Contam, 24, pp. 1115-1120
  • Ryu, D., Bullerman, L.B., Effect of cycling temperatures on the production of deoxynivalenol and zearalenone by fusarium graminearum nrrl 5883 (1999) J Food Prot, 62, pp. 1451-1455
  • Sanchis, V., Magan, N., Environmental conditions affecting mycotoxins (2004) Mycotoxins in Food: Detection and Control, pp. 174-189. , Magan N, Olsen M (eds), Woodhead Publishing Ltd, Oxford
  • Sung, J.M., Cook, R.J., Effect of water potential on reproduction and spore germination by fusariun roseum "graminearum", "culmorum" and "avenaceum (1981) Phytopathology, 71, pp. 499-504
  • Vesonder, R.F., Ellis, J.J., Kwolek, W.F., Demarini, D.J., Production of vomitoxin on corn by fusarium graminearum NRRL 5883 and fusarium roseum NRRL 6101 (1982) Appl Environ Microbiol, 43, pp. 967-970
  • Wearing, A.H., Burgess, L.W., Water potential and the saprophytic growth of fusarium roseum 'graminearum (1979) Soil Biol Biochem, 11, pp. 661-667
  • Willcock, J., Magan, N., Impact of environmental factors on fungal respiration and dry matter losses in wheat straw (2001) J Stored Prod Res, 37, pp. 35-45
  • Deoxynivalenol (2001) WHO Food Additives Series 47, pp. 419-556. , World Health Organization, In:, Food and nutrition paper 74. International programme on chemical safety. World Health Organization, Geneva

Citas:

---------- APA ----------
Ramírez, M.L., Farnochi, M.C. & Chulze, S.N. (2013) . Ecophysiology of Fusarium graminearum main pathogen associated to Fusarium head blight in Latin America. Fusarium Head Blight in Latin America, 45-55.
http://dx.doi.org/10.1007/978-94-007-7091-1_4
---------- CHICAGO ----------
Ramírez, M.L., Farnochi, M.C., Chulze, S.N. "Ecophysiology of Fusarium graminearum main pathogen associated to Fusarium head blight in Latin America" . Fusarium Head Blight in Latin America (2013) : 45-55.
http://dx.doi.org/10.1007/978-94-007-7091-1_4
---------- MLA ----------
Ramírez, M.L., Farnochi, M.C., Chulze, S.N. "Ecophysiology of Fusarium graminearum main pathogen associated to Fusarium head blight in Latin America" . Fusarium Head Blight in Latin America, 2013, pp. 45-55.
http://dx.doi.org/10.1007/978-94-007-7091-1_4
---------- VANCOUVER ----------
Ramírez, M.L., Farnochi, M.C., Chulze, S.N. Ecophysiology of Fusarium graminearum main pathogen associated to Fusarium head blight in Latin America. Fusarium Hd. Blight in Lat. Amer. 2013:45-55.
http://dx.doi.org/10.1007/978-94-007-7091-1_4