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2014 | 17 | 3 |

Tytuł artykułu

Applicability of distillation-extraction technique for isolation of volatile compounds from different cultures of microscopic fungi

Wydawca

-

Rocznik

Tom

17

Numer

3

Opis fizyczny

http://www.ejpau.media.pl/volume17/issue3/art-13.html

Twórcy

  • Agricultural Microbiology Lab, Department of Plant Protection, Wroclaw University of Environmental and Life Sciences, Grunwaldzka 53, 53-636 Wroclaw, Poland
autor
  • Department of Chemistry, Wroclaw University of Environmental and Life Sciences, Norwida 25, 50-375 Wroclaw, Poland
autor
  • Agricultural Microbiology Lab, Department of Plant Protection, Wroclaw University of Environmental and Life Sciences, Grunwaldzka 53, 53-636 Wroclaw, Poland

Bibliografia

  • 1. Alchihab M., Destain J., Aguedo M., Wathelet J.P. Thonart P., 2010. The utilization of gum tragacanth to improve the growth of Rhodotorula aurantiaca and the production of gamma-decalactone in large scale. Appl. Biochem. Biotechnol., 162, 233–241.
  • 2. Archer D.B., Connerton I.F., MacKenzie D.A., 2008. Filamentous fungi for production of food additives and processing acids. Adv. Biochem. Engin. Biotechnol., 111, 99–147.
  • 3. Berry D.R., 1988. Products of primary metabolic pathways. [Berry D.R. (ed.) Physiology of industrial fungi]. Blackwell Scientific Publications, Oxford, 130–160.
  • 4. Dastager S.G., 2009. Aroma compounds. Singh nee’ Nigam P., Pandey A. (eds.), Biotechnology for Agro-Industrial Residues Utilisation. Springer Science Business Media B.V., 105–238.
  • 5. Demyttenaere J.C.R. , Herrera M.C., De Kimpe N., 2000. Biotransformation of geraniol, nerol and citral by sporulated surface cultures of Aspergillus niger and Penicillium sp. Phytochem., 55, 363–373.
  • 6. Dennis C., Webster J., 1971. Antagonistic properties of species-groups of Trichoderma. I Production of non-volatile antibiotics. Trans. Br. Mycol. Soc., 57, 25–39.
  • 7. Dennis C., Webster J., 1971. Antagonistic properties of species-groups of Trichoderma. II. Production of volatile antibiotics. Trans. Br. Mycol. Soc., 57, 41–48.
  • 8. Deryng J., 1951. A new apparatus for the determination of essential oils in the plant material. Acta Pol. Pharm., 8, 121–136.
  • 9. El-Hasan A., Buchenauer H., 2009. Actions of 6-pentyl-alpha-pyrone in controlling seedling blight incited by Fusarium moniliforme and inducing defence responses in maize. J. Phytopathol., 157, 697–707.
  • 10. Endrizzi A., Pagot Y., 1996. Production of lactones and peroxisomal beta-oxidation in yeasts. Crit. Rev. in Biotechnol., 16(4), 301–329.
  • 11. European Pharmacopoeia, 1975. Maisonneuve SA, Sainte Ruffine, France, 3, 68.
  • 12. Fernando W.G.D., Nawalage V., 2011. Bacterial, fungal and plant volatile compounds in reducing plant pathogen inoculums. In: Maheshwari D.K. (ed.), Bacteria in Agrobiology: Plant Nutrient Management. Springer-Verlag Berlin Heidelberg.
  • 13. Gupta V.G., Schmoll M., Herrera-Estrella A., Upadhyay R.S., Druzhinina I., 2014. Biotechnology and Biology of Trichoderma. Elsevier Science Ltd. ISBN: 978-0-444-59576-8.
  • 14. Harman G.E., Howell C.R., Viterbo A., Chet I., Lorito M., 2004. Trichoderma species – opportunistic, avirulent plant symbionts. Nat. Rev. Microbiol., 2, 43–56.
  • 15. Ibrahim A.D., Hussaini H., Sani A., Aliero A., Yakubu S.E., 2011. Volatile metabolites profiling to discriminate diseases of tomato fruits inoculated with three toxigenic fungal pathogens. Res. Biotechnol., 2(3), 14–22.
  • 16. Janssens L., De Pooter H.L., Schamp N.M., Vandamme E.J., 1992. Production of flavors by microorganisms. Proc. Biochem., 27, 195–215.
  • 17. Jeleń H.H., 2003. Use of solid phase microextraction (SPME) for profiling fungal volatile metabolites. Lett. Appl. Microbiol., 36, 263–267.
  • 18. Kikuchi T., Mimura T., Harimaya K., Yano H., Arimoto T., 1974. Letter: Volatile metabolite of aquatic fungi. Identification of 6-pentyl-alpha-pyrone from Trichoderma and Aspergillus species. Chem. Pharm. Bull., 22(8), 1946–1948.
  • 19. Korpi A., Järnberg J., Pasanen A.L., 2009. Microbial Volatile Organic Compounds. Crit. Rev. Toxicol., 39, 139–193.
  • 20. Kubicek C.P., Harman G.E., 1998. Trichoderma and Gliocladium: Basic Biology, Taxonomy and Genetics, Vol. 1, Taylor and Francis, ISBN 0748405720.
  • 21. Larsen T.O., Frisvad J.Ch., 1995. Comparison of different methods for collection of volatile chemical markers from fungi. J. Microbiol. Meth., 24, 135–144.
  • 22. Moll N., Gross B., Vinh T., Moll M., 1982. Identification of some volatile constituents of Aspergillus clavatus.J. Agric. Food Chem., 30, 786–790.
  • 23. Morath S.U., Orath R.H., Bennett J.W., 2012. Fungal volatile organic compounds: A review with emphasis on their biotechnological potential. Fun. Biol. Rev., 26, 73–83.
  • 24. Oda S., Isshiki K., Ohashi S., 2009. Production of 6-pentyl-alpha-pyrone with Trichoderma atroviride and its mutant in a novel extractive liquid-surface immobilization (Ext-LSI) system. Process Biochem., 44, 625–630.
  • 25. Pal, K.K., McSpadden Gardener B., 2006. Biological control of plant pathogens. The Plant Health Instructor DOI: 10.1094/PHI-A-2006-1117-02.
  • 26. Pezet R., Pont V., Tabacchi R. 1999. Simple analysis of 6-pentyl-alpha-pyrone, a major antifungal metabolite of Trichoderma spp., useful for testing the antagonistic activity of these fungi. Phytochem. Anal., 10, 285–288.
  • 27. Rzepa J., Sajewicz M., Baj T., Gorczyca P. et al., 2012. A comparison of methodical approaches to fingerprinting of the volatile fraction from winter savory (Satureja montana). Chromatogr. Res. Inter., 2012, 8. Article ID 596807.
  • 28. Sarhy-Bagnon V., Lozano P., Saucedo-Castañeda G., Roussos S. 2000. Production of 6-pentyl-alpha-pyrone by Trichoderma harzianum in liquid and solid state cultures. Process Biochem., 36, 103–109.
  • 29. Siddiquee S., Cheong B.E., Taslima K., Kausar H., Hasan M.M., 2012. Separation and identification of volatile compounds from liquid cultures of Trichoderma harzianum by GC-MS using three different capillary columns. J. Chromatogr.Sci., 50, 358–367.
  • 30. Stoppacher N., Kluger B., Zeilinger S., Krska R., Schuhmacher R., 2010. Identification and profiling of volatile metabolites of the biocontrol fungus Trichoderma atroviride by HS-SPME-GC-MS. J. Microbiol. Meth., 81, 187–193.
  • 31. Sunesson A.L., Vaes W.H. J., Nilsson C.A., Blomquist G., Andersson B., Clarlson R., 1995. Identification of volatile metabolites from five fungal species cultivated on two media. Appl. Environ. Microbiol., 61(8), 2911–2918.
  • 32. Wojtkowiak-Gębarowska E., 2006. Mechanizmy zwalczania fitopatogenów glebowych przez grzyby z rodzaju Trichoderma. [Mechanisms biological control soil-borne plant pathogen by fungus from genus Trichoderma]. Post. Mikrobiol., 45, 261–273 [in Polish].

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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