Solid phase microextraction (SPME) coupled to capillary gas chromatography (CGC) and mass spectrometry (MS) was used to evaluate the use of fungal volatiles to discriminate Fusarium species from wheat cultivars in the Argentina pampa region. Monosporic fungal isolates were grown on rice in sealed containers for 1 week and volatile organic compounds (VOC) were sampled for 30 min from the head space by SPME and analysed by CGC and CGCMS. VOC profiles of Fusarium species F. graminearum, F. poae, F. equiseti, F. verticillioides and F. oxysporum were discriminated by comparison of their profiles in the elution zone corresponding to sesquiterpenes. Trichothecene-producer and non-trichothecene producer Fusarium species were separated by the presence of trichodiene in their VOC fingerprints. Within trichothecene-producers, F. graminearum, F. poae and F. equiseti differed on the structure of their volatile sesquiterpenes. This technique might be also helpful to detect F. graminearum, the major head blight disease-producing fungus in the region.
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Adams, R.P., 2007. Identification of essential oil components by gas chromatography/mass spectrometry. 4th edition. Allured Pub Corp., Carol Stream, IL, USA. 804 pp.
Identification of essential oil components by gas chromatography/mass spectrometry , () 804 .
Bennett, J.W. and Klich, M., 2003. Mycotoxins. Clinical Microbiology Reviews 16: 497-516.
'Mycotoxins ' () 16 Clinical Microbiology Reviews : 497 -516 .
Beremand, M.N. and McCormick, S.P., 1992. Biosynthesis and regulation of trichothecene production by Fusarium species. In: Bhatnagar, D., Lilehoj, E.B. and Arora, D.K. (eds.) Handbook of applied mycology: mycotoxins in ecological systems. Marcel Dekker Inc., New York, NY, USA, pp. 360-389.
Booth, C., 1971. The genus Fusarium. Commonwealth Mycological Institute, Kew, UK. 237 pp.
Chu, F.S., 1998. Mycotoxins-occurrence and toxic effect. In: Sadler, M., Strain J.J. and Caballero B. (eds.) Encyclopedia of human nutrition. Academic Press, New York, NY, USA, pp. 858-869.
Demyttenaere, J.C.R., Moriña, R.M. and Sandra, P., 2003. Monitoring and fast detection of mycotoxin-producing fungi based on headspace solid-phase microextraction and headspace sorptive extraction of the volatile metabolites. Journal of Chromatography A 985: 127-135.
'Monitoring and fast detection of mycotoxin-producing fungi based on headspace solid-phase microextraction and headspace sorptive extraction of the volatile metabolites ' () 985 Journal of Chromatography A : 127 -135 .
Demyttenaere, J.C.R., Moriña, R.M., De Kimpe, N. and Sandra, P., 2004. Use of headspace solid-phase microextraction and headspace sorptive extraction for the detection of the volatile metabolites produced by toxigenic Fusarium species. Journal of Chromatography A 1027: 147-154.
'Use of headspace solid-phase microextraction and headspace sorptive extraction for the detection of the volatile metabolites produced by toxigenic Fusarium species ' () 1027 Journal of Chromatography A : 147 -154 .
Desjardins, A.E., 2006. Fusarium mycotoxins. In: Desjardins, A.E. (ed.) Fusarium mycotoxins. Chemistry, genetics and biology. The American Phytopathological Society, St. Paul, MN, USA, pp. 11-138.
Fusarium mycotoxins , ().
Desjardins, A.E., Honh, T.M. and McCormick, S.P., 1993. Trichothecene biosynthesis in Fusarium species: chemistry, genetics, and significance. Microbiological Reviews 57: 595-604.
'Trichothecene biosynthesis in Fusarium species: chemistry, genetics, and significance ' () 57 Microbiological Reviews : 595 -604 .
Frisvad, J.C., Andersen, B. and Thrane, U., 2007. The use of secondary metabolite profiling in chemotaxonomy of filamentous fungi. Mycological Research 112: 231-240.
Harris, J.L., Desjardins, A.E., Plattner, R.D., Nicholson, P., Butler, G., Young, J.C., Weston, G., Proctor, R.H. and Hohm, T.M., 1999. Possible role of trichothecene mycotoxins in virulence of Fusarium graminearum on maize. Plant Disease 83: 954-960.
'Possible role of trichothecene mycotoxins in virulence of Fusarium graminearum on maize ' () 83 Plant Disease : 954 -960 .
Ichinoe, M., Kurata, H., Sugiura, Y. and Ueno, Y., 1983. Chemotaxonomy of Gibberella zeae with special reference to production of trichothecenes and zearalenone. Applied and Environmental Microbiology 46: 1364-1369.
'Chemotaxonomy of Gibberella zeae with special reference to production of trichothecenes and zearalenone ' () 46 Applied and Environmental Microbiology : 1364 -1369 .
Jelen, H.H., 2003. Use of solid phase microextration (SPME) for profiling fungal volatile metabolites. Letters in Applied Microbiology 36: 263-267.
'Use of solid phase microextration (SPME) for profiling fungal volatile metabolites ' () 36 Letters in Applied Microbiology : 263 -267 .
Jelen, H.H., Latus-Zietkiewicz, D., Wasowicz, E. and Kaminski, E., 1997. Trichodiene as a volatile marker for trichothecenes biosynthesis. Journal of Microbiology Methods 31: 45-49.
'Trichodiene as a volatile marker for trichothecenes biosynthesis ' () 31 Journal of Microbiology Methods : 45 -49 .
Jelen, H.H., Mirocha, C.J., Wasowicz, E. and Kaminski, E., 1995. Production of volatile sesquiterpenes by Fusarium sambucinum strains with different abilities to synthesize trichothecenes. Applied and Environmental Microbiology 61: 3815-3820.
'Production of volatile sesquiterpenes by Fusarium sambucinum strains with different abilities to synthesize trichothecenes ' () 61 Applied and Environmental Microbiology : 3815 -3820 .
Klittich, C.J.R. and Leslie, J.F., 1988. Nitrate reduction mutant of Fusarium moniliforme (Gibberella fujikuroi). Genetics 118: 417-423.
'Nitrate reduction mutant of Fusarium moniliforme (Gibberella fujikuroi) ' () 118 Genetics : 417 -423 .
Kosiak, B., Torp, M., Skjerve, E. and Andersen, B., 2004. Alternaria and Fusarium in Norwegian grains of reduced quality – a matched pair sample study. International Journal of Food Microbiology 93: 51-62.
'Alternaria and Fusarium in Norwegian grains of reduced quality – a matched pair sample study ' () 93 International Journal of Food Microbiology : 51 -62 .
Kovats, E., 1965. Gas chromatographic characterization of organic substances in the retetion index system. Advances in Chromatography 1: 229-247.
'Gas chromatographic characterization of organic substances in the retetion index system ' () 1 Advances in Chromatography : 229 -247 .
Larsen, T.O. and Frisvad, J.C., 1994. A simple method for collection of volatile metabolites from fungi based on diffusive sampling from Petri dishes. Journal of Microbiology Methods 19: 297-305.
'A simple method for collection of volatile metabolites from fungi based on diffusive sampling from Petri dishes ' () 19 Journal of Microbiology Methods : 297 -305 .
Leslie, J.F. and Summerell, B.A., 2006. Taxonomy and identification of Fusarium. The Fusarium laboratory manual. 1st edition. Blackwell Publishing, Oxford, UK, pp. 80-110.
Lord, H. and Pawliszyn, J., 2000. Evolution of solid-phase microextraction technology. Journal of Chromatography A 885: 153-193.
'Evolution of solid-phase microextraction technology ' () 885 Journal of Chromatography A : 153 -193 .
Magan, N. and Evans, P., 2000. Volatiles as an indicator of fungal activity and differentiation between species, and the potential use of electronic nose technology for early detection of grain spoilage. Journal of Stored Products Research 36: 319-340.
Moss, M.O, 1984. The biosynthesis of Fusarium mycotoxins. In: Moss, M.O. and Smith, J.E. (eds.) The applied mycology of Fusarium. Cambridge University Press, Cambridge, UK, pp. 195-215.
Moss, M.O. and Thrane, U., 2004. Fusarium taxonomy with relation to trichothecene formation. Toxicology Letters 153: 23-28.
'Fusarium taxonomy with relation to trichothecene formation ' () 153 Toxicology Letters : 23 -28 .
Nelson, P.E., Dignani, M.E. and Anaissie E.J., 1994. Taxonomy, biology, and clinical aspects of Fusarium species. Clinical Microbiology Reviews 7: 479-504.
'Taxonomy, biology, and clinical aspects of Fusarium species ' () 7 Clinical Microbiology Reviews : 479 -504 .
Nicholson, P., Simpson, D.R., Weston, G., Rezanoor, H.N., Lees, A.K., Parry, D.W. and Joyce, D., 1998. Detection and quantification of Fusarium culmorum and Fusarium graminearum in cereals using PCR assays. Physiological and Molecular Plant Pathology 53: 17-37.
'Detection and quantification of Fusarium culmorum and Fusarium graminearum in cereals using PCR assays ' () 53 Physiological and Molecular Plant Pathology : 17 -37 .
O'Donnell, K., Kistler, H.C., Tacke, B.K. and Casper, H.H., 2000. Gene genealogies reveal global phylogeographic structure and reproductive isolation among lineages of Fusarium graminearum, the fungus causing wheat scab. Proceedings of the National Academy of Sciences of the USA 97: 7905-7910.
'Gene genealogies reveal global phylogeographic structure and reproductive isolation among lineages of Fusarium graminearum, the fungus causing wheat scab ' () 97 Proceedings of the National Academy of Sciences of the USA : 7905 -7910 .
O'Donnell, K., Ward, T.J., Geiser, D.M., Kistler, H.C. and Aoki, T., 2004. Genealogical concordance between the mating type locus and seven other nuclear genes supports formal recognition of nine phylogenetically distinct species within the Fusarium graminearum clade. Fungal Genetics and Biology 41: 600-623.
'Genealogical concordance between the mating type locus and seven other nuclear genes supports formal recognition of nine phylogenetically distinct species within the Fusarium graminearum clade ' () 41 Fungal Genetics and Biology : 600 -623 .
Olsson, J., 2000. Modern methods in cereal grain mycology. Doctoral dissertation, Department of Microbiology, SLU, Uppsala, Sweden. Acta Universitatis agriculturae Sueciae, Agraria vol. 241.
Perkowski, J., Busko, M., Chmielewski, J., Goral, T. and Tyrakowska, B., 2008. Content of trichodiene and analysis of fungal volatiles (electronic nose) in wheat and triticale grain naturally infected and inoculated with Fusarium culmorum. International Journal of Food Microbiology 126: 127-134.
Presicce, D.S., Forleo, A., Taurino, A.M., Zuppa, M., Siciliano, P., Laddomada, B., Logriecco, A. and Visconti, A., 2006. Response evaluation of an E-nose towards contaminated wheat by Fusarium poae fungi. Sensors and Actuators B: Chemical 118: 433-438.
'Response evaluation of an E-nose towards contaminated wheat by Fusarium poae fungi ' () 118 Sensors and Actuators B: Chemical : 433 -438 .
Proctor, R.H., Hohn, M.T. and McCormick, S.P., 1995. Reduced virulence of Gibberella zeae caused by disruption of a trichothecene toxin biosynthetic gene. Molecular Plant-Microbe Interactions 8: 593-601.
'Reduced virulence of Gibberella zeae caused by disruption of a trichothecene toxin biosynthetic gene ' () 8 Molecular Plant-Microbe Interactions : 593 -601 .
Proctor, R.H., Hohn, M.T. and McCormick, S.P., 1997. Restoration of wild type virulence of Tri5 disruption mutants of Gibberella zeae via gene reversion and mutant complementation. Microbiology 143: 2583-2591.
'Restoration of wild type virulence of Tri5 disruption mutants of Gibberella zeae via gene reversion and mutant complementation ' () 143 Microbiology : 2583 -2591 .
Tamm, C. and Breitenstein, W., 1980. The biosynthesis of trichothecene mycotoxins. In: Steyn, P.S. (ed.) The biosynthesis of mycotoxins. A study in secondary metabolism, Academic Press, New York, NY, USA, pp. 69-103.
Thrane, U., Adler, A., Clasen, P.E., Galvano, F., Langseth, W., Lew, H., Logrieco, A., Nielsen, K.F. and Ritieni, A., 2004. Diversity in metabolite production by Fusarium langsethiae, F. poae and F. sporotrichioides. International Journal of Food Microbiology 95: 257-266.
'Diversity in metabolite production by Fusarium langsethiae, F. poae and F. sporotrichioides. ' () 95 International Journal of Food Microbiology : 257 -266 .
Turner, N.W., Subrahmanyam, S. and Piletsky, S.A., 2009. Analytical methods for determination of mycotoxins: a review. Analytica Chimica Acta, 632: 168-180.
'Analytical methods for determination of mycotoxins: a review ' () 632 Analytica Chimica Acta : 168 -180 .
Ward, T.J., Bielawski, J.P., Kistler, H.C., Sullivan, E. and O'Donnell K., 2002. Ancestral polymorphism and adaptive evolution in the trichothecene mycotoxin gene cluster of phytopathogenic Fusarium. Proceedings of the National Academy of Sciences of the USA 99: 9278-9283.
Zeringue Jr., H.J., Bhatnagar, D. and Cleveland, T.E., 1993. C15H24 volatile compounds unique to aflatoxigenic strains of Aspergillus flavus. Applied and Environmental Microbiology 59: 2264-2270.
| All Time | Past 365 days | Past 30 Days | |
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Solid phase microextraction (SPME) coupled to capillary gas chromatography (CGC) and mass spectrometry (MS) was used to evaluate the use of fungal volatiles to discriminate Fusarium species from wheat cultivars in the Argentina pampa region. Monosporic fungal isolates were grown on rice in sealed containers for 1 week and volatile organic compounds (VOC) were sampled for 30 min from the head space by SPME and analysed by CGC and CGCMS. VOC profiles of Fusarium species F. graminearum, F. poae, F. equiseti, F. verticillioides and F. oxysporum were discriminated by comparison of their profiles in the elution zone corresponding to sesquiterpenes. Trichothecene-producer and non-trichothecene producer Fusarium species were separated by the presence of trichodiene in their VOC fingerprints. Within trichothecene-producers, F. graminearum, F. poae and F. equiseti differed on the structure of their volatile sesquiterpenes. This technique might be also helpful to detect F. graminearum, the major head blight disease-producing fungus in the region.
| All Time | Past 365 days | Past 30 Days | |
|---|---|---|---|
| Abstract Views | 130 | 46 | 4 |
| Full Text Views | 21 | 0 | 0 |
| PDF Views & Downloads | 15 | 0 | 0 |