Czech J. Food Sci., 2011, 29(10):S93-S101 | DOI: 10.17221/307/2011-CJFS
Utilization of DNA microarrays for detection and identification of selected Fusarium species from the Czech Republic
- 1 Department of Molecular Biology,
- 2 Department of Mycology and
Fusarium is a serious phytopathogenic fungal genus with producting of many kinds of highly toxic secondary metabolites - mycotoxins. The consumption of Fusarium contaminated food and feed can cause dangerous mycotoxicoses both in humans and animals, therefore the detection of a wider range of Fusarium species in the samples of crops is very important. The aim of our work was to test the reliability of detection and identification of three Fusarium species in infected wheat grains by DNA microarrays versus classical mycological methods and by specific PCR. The in-house DNA microarrays for the detection and identification of the selected Fusarium species by using oligonucleotides probes were prepared. For hybridisation on DNA microarrays fluorescent labelled PCR products were used of part of the translation elongation factor 1 alpha. The conditions of hybridisation were optimised on fungal template DNA. The method of DNA microarrays was verified on artificially infected samples of wheat and tested on unknown infected wheat samples with simultaneous analysis by classical mycological methods and by specific PCR.
Keywords: DNA microarrays; fluorescent labelling; Fusarium; oligonucleotide probe; PCR
Published: December 31, 2011 Show citation
ACS | AIP | APA | ASA | Harvard | Chicago | Chicago Notes | IEEE | ISO690 | MLA | NLM | Turabian | Vancouver |
References
- Adams N.R. (1995): Detection of the effects of phytoestrogens on sheep and cattle. Journal of Animal Science, 73: 1509-1515.
Go to original source...
Go to PubMed...
- Bai G.-H., Desjardins A.E., Plattner R.D. (2001): Deoxynivalenol-nonproducing Fusarium graminearum causes initial infection, but does not cause disease spread in wheat spikes. Mycopathologia, 153: 91-98.
Go to original source...
Go to PubMed...
- Bennett J.W., Klich M. (2003): Mycotoxins. Clinical Microbiology Reviews, 16: 497-516.
Go to original source...
Go to PubMed...
- Bluhm B.H., Flaherty J.E., Cousin M.A., Woloshuk C.P. (2004): Multiplex polymerase chain reaction assay for the differential detection of trichothecene- and fumonisinproducing species of Fusarium in cornmeal. Journal of Food Protection, 65: 1955-1961.
Go to original source...
Go to PubMed...
- Bockus W.W., Bowden R.L., Hunger R.M., Morrill W.L., Murray T.D., Smiley R.W. (eds) (2010): Compendium of Wheat Diseases and Pests. APS Press, St. Paul.
Go to original source...
- Chang K., Kurtz H.J., Mirocha C.J. (1979): Effects of the mycotoxin zearalenone on swine reproduction. American Journal of Veterinary Research, 40: 1260-1267.
- Chrpová J., Šíp V., Matějová E., Sýkorová S. (2007): Resistance of winter wheat varieties registered in the Czech Republic to mycotoxin accumulation in grain following inoculation with Fusarium culmorum. Czech Journal of Genetics and Plant Breeding, 43: 44-52.
Go to original source...
- Cumagun Ch.J., Parzies H.P., Miedaner T. (2007): Genetic variation and segregation of DNA polymorphisms in Gibberella zeae detected with AFLP and RAPD markers. Asian Journal of Plant Sciences, 6: 1174-1181.
Go to original source...
- D'Mello J.P.F., Placinta C.M., MacDonald A.M.C. (1999): Fusarium mycotoxins: a review of global implications for animal health, welfare and productivity. Animal Feed Science and Technology, 80: 183-205.
Go to original source...
- Domsch K.H., Gams W., Anderson T.-H. (2007): Compendium of Soil Fungi. Eching IHW-Verlag, Munchen.
- Dyer R.B., Kendra D.F., Brown D.W. (2006): Real-time PCR assay to quantify Fusarium graminearum wild-type and recombinant mutant DNA in plant material. Journal of Microbiological Methods, 67: 534-542.
Go to original source...
Go to PubMed...
- Edwards S.G., O'Callaghan J., Dobson A.D.W. (2002): PCR-based detection and quantification of mycotoxigenic fungi. Mycological Research, 106: 1005-1025.
Go to original source...
- Fredlund E., Gidlund A., Olsen M., Börjesson T., Spliid N.H.H., Simonsson M. (2008): Method evaluation of Fusarium DNA extraction from mycelia and wheat for down-stream real-time PCR quantification and correlation to mycotoxin levels. Journal of Microbiological Methods, 73: 33-40.
Go to original source...
Go to PubMed...
- International Agency for Research on Cancer (1993): Toxins derived from Fusarium moniliforme: fumonisins B1 and B2 and Fusarin C. In: IARC Monographs on the Evaluation of the Carcinogenic Risks to Humans: Some Naturally Occurring Substances: Food Items and Constituents, Heterocyclic Aromatic Amines and Mycotoxins. Vol. 56: 445-466.
- Jurado M., Vázquez C., Marín S., Sanchis V., GonzálezJaén M.T. (2006): PCR-based strategy to detect contamination with mycotoxigenic Fusarium species in maize. Systematic and Applied Microbiology, 29: 681-689.
Go to original source...
Go to PubMed...
- Kristensen R., Berdal K.G., Holst-Jensen A. (2007a): Simultaneous detection and identification of trichotheceneand moniliformin-producing Fusarium species based on multiplex SNP analysis. Journal of Applied Microbiology, 102: 1071-1081.
- Kristensen R., Gauthier G., Berdal K.G., Hamels S., Remacle J., Host Jensen A. (2007b): DNA microarray to detect and identify trichothecene- and moniliforminproducing Fusarium species. Journal of Applied Microbiology, 102: 1060-1070.
- Kulik T. (2008a): Development of a duplex PCR assay for the simultaneous detection of Fusarium poae and Fusarium sporotrichioides from wheat. Journal of Plant Pathology, 90: 441-447.
- Kulik T. (2008b): Detection of Fusarium tricinctum from cereal grain using PCR assay. Journal of Applied Genetic, 49: 305-311.
Go to original source...
Go to PubMed...
- Leisova L., Kucera L., Minarikova V., Ovesna J. (2005): AFLP-based PCR markers that differentiate spot and net form of Pyrenophora teres. Plant Pathology, 54: 66-74.
Go to original source...
- Leišová L., Kučera L., Chrpová J., Sýkorová S., Šíp V., Ovesná J. (2006): Quantification of Fusarium culmorum in wheat and barley tissues using real-time PCR in comparison with DON content. Journal of Phytopathology, 154: 603-611.
Go to original source...
- Leslie J., Summerell B.A. (2006): The Fusarium Laboratory Manual. Blackwell Publishing, APS Press, Ames.
Go to original source...
- Mathre D.E. (ed.) (1997): Compendium of Barley Diseases. 2nd Ed.The American Phytopathological Society, St. Paul.
- Merrill A.H., Sullards M.C., Wang E., Voss K.A., Riley R.T. (2001): Sphingolipid metabolism: roles in signal transduction and disruption by fumonisins. Environmental Health Perspectives, 109: 283-289.
Go to original source...
Go to PubMed...
- McMullen M., Jones R., Gallenberg D. (1997): Scab of wheat and barley: a re-emerging disease of devasting impact. Plant Disease, 81: 1340-1348.
Go to original source...
Go to PubMed...
- Naqvi S.A.M.A. (ed.) (2004): Diseases of Fruits and Vegetables: Diagnosis and Management, Vol. 1. Kluwer Academic Publisher, Dordrecht.
Go to original source...
- Nicolaisen M., Justesen A.F., Thrane U., Skouboe P., Holmstrøm K. (2005): An oligonucleotide microarray for the identification and differentiation of trichothecene producing and non-producing Fusarium species occurring on cereal grain. Journal of Microbiological Methods 62: 57-69.
Go to original source...
Go to PubMed...
- O´Donnell K., Kistler H.C., Cigelnik E., Ploetz R.C. (1998): Multiple evolutionary origins of the fungus causing Panama disease of banana: Concordant evidence from nuclear and mitochondrial gene genealogie. Proceedings of the National Academy of Sciences of the United States of America, 95: 2044-2049.
Go to original source...
Go to PubMed...
- Parry D.W., Jenkinson P., McLeod L. (1995): Fusarium ear blight (scab) in small grain cereals - a review. Plant Pathology 44: 207-238.
Go to original source...
- Reischer G.H., Lemmens M., Farnleitner A., Adler A., Mach R.L. (2004): Quantification of Fusarium graminearum in infected wheat by species specific real-time PCR applying and TaqMan Probe. Journal of Microbiological Methods, 59: 141-146.
Go to original source...
- Saeed A.I., Sharov V., White J., Li.J., Liang W., Bhagabati N., Braisted J., Klapa M., Currier T., Thiagarajan M., Sturn A., Snuffin M., Rezantsev A., Popov D., Ryltsov A., Kostukovich E., Borisovsky I., Liu Z., Vinsavich A., Trush V., Quackenbush J. (2003): TM4: a free, open-source system for microarray data management and analysis. Biotechniques, 34: 374-378.
Go to original source...
Go to PubMed...
- Saharan M.S., Naef A. (2008): Detection of genetic variation among Indian wheat head scab pathogens (Fusarium spp./isolates) with microsatellite markers. Crop Protection, 27: 1148-1154.
Go to original source...
- Sampietro D.A., Marín P., Iglesias J., Presello D.A., Vattuone M.A., Catalan C.A.N., Gonzalez Jaen M. T. (2010): A molecular based strategy for rapid diagnosis of toxigenic Fusarium species associated to cereal grains from Argentina. Fungal Biology, 114: 74-81.
Go to original source...
Go to PubMed...
- Samson R.A., Hoekstra E.S., Frisvad J.C. (2004): Introduction to Food- and Airborne Fungi. CBS, Utrecht.
- Šíp V., Chrpová J., Sýkorová S. (2008): Assessing resistance to head blight in wheat cultivars inoculated with different Fusarium isolates. Czech Journal of Genetic and Plant Breeding, 44: 43-59.
Go to original source...
- Waalwijk C., van der Heide R., de Vries I., van der Lee T., Schoen C., Costrel-de Corainville G., HäuserHahn I., Kastelein P., Köhl J., Lonnet P., Demarquet T., Kema G.H.J. (2004): Quantitative detection of Fusarium species in wheat using TaqMan. European Journal of Plant Pathology, 110: 481-494.
Go to original source...
This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.