Antifungalna aktivnost šest etarskih ulja poreklom iz Srbije na Trichoderma aggressivum f. europaeum

  • Rada D Đurović-Pejčev Institut za pesticide i zaštitu životne sredine, Banatska 31b, Beograd
  • Ivana S Potočnik Institut za pesticide i zaštitu životne sredine, Banatska 31b, Beograd
  • Svetlana Milijišević-Marčić Institut za pesticide i zaštitu životne sredine, Banatska 31b, Beograd
  • Biljana Todorović Institut za pesticide i zaštitu životne sredine, Banatska 31b, Beograd
  • Emil Rekanović Institut za pesticide i zaštitu životne sredine, Banatska 31b, Beograd
  • Miloš Stepanović Institut za pesticide i zaštitu životne sredine, Banatska 31b, Beograd
Ključne reči: Esential oils||, ||Etarska ulja, Trichoderma||, ||Trichoderma, Edible muhsrooms||, ||jestive gljive,

Sažetak


Ispitana je inhibitorna i fungicidna aktivnost šest etarskih ulja ekstrahovanih iz biljaka
poreklom iz Srbije na Trichoderma agressivum f. europaeum. Patogen je prouzrokovač zelene plesni šampinjona, bolesti koja nanosi najviše štete u prinosu. Najveću aktivnost je ispoljilo ulje bosiljka (Ocimum basilicum L.) i pitome nane (Mentha piperita L.). Niža aktivnost je uočena kod ulja kantariona (Hypericum perforatum L.) i oraha [Juglans regia (F)]. Ulja ekstrahovana iz hajdučke trave (Achillea millepholium L.) i kleke (Juniperus communis L.) ispoljila su najmanju aktivnost. Ulje pitome nane je ispoljilo fungicidni efekat na patogena, sa minimalnom fungicidnom koncentracijom od 0.64 μl ml-1. Najzastupljenije komponente etarskog ulja nane su bile menton (37.02%), mentol (29.57%) i izomenton (9.06%).

Reference

Abdolahi, A., Hassani, A., Ghosta, Y., Bernousi, I., & Meshkatalsadat, M. (2010). Study on the potential use of essential oils for decay control and quality preservation of Tabarzeh table grape. Journal of Plant Protection Research, 50(1), 45-52. doi:10.2478/v10045-010-0008-2

Angelini, P., Pagiotti, R., & Granetti, B. (2008). Effect of antimicrobial activity of Melaleuca alternifolia essential oil on antagonistic potential of Pleurotus species against Trichoderma harzianum in dual culture. World Journal of Microbiology and Biotechnology, 24(2), 197-202. doi:10.1007/s11274-007-9456-x

Beyer, D.M., & Kremser, J.J. (2004). Evaluation of fungicide tolerance and control for three fungal diseases of mushrooms. In P. Romaine, C.B. Keil, D.L. Rinker, & D.J. Royse (Eds.), Science and cultivation of edible and medicinal fungi. Mushroom science. (pp. 521-529). University Park Philadelphia, PA: Pennsylvania State University.

Bouchra, C., Achouri, M., Hassani, I.L.M., & Hmamouchi, M. (2003). Chemical composition and antifungal activity of essential oils of seven Moroccan Labiatae against Botrytis cinerea Pers: Fr. Journal of Ethnopharmacology, 89(1), 165-169. doi:10.1016/s0378-8741(03)00275-7

Fletcher, J.T., White, P.F., & Gaze, R.H. (1989). Mushrooms: Pest and disease control, (2nd ed.). Newcastle-upon-Tyne, UK: Intercept.

Gea, F.J., Tello, J.C., & Navaro, M.J. (2005). Occurence of Verticillium fungicola var. fungicola on Agaricus bisporus mushroom crops in Spain. Journal of Phytopathology, 151, 98-100.

Grogan, H.M. (2008). Challenges facing mushroom disease control in the 21st century. In J.I. Lelley & J.A. Buswell (Eds.), Proceeding of the Sixth international conference on mushroom biology and mushroom products (pp. 120-127). Bonn, Germany: WSMBMP..

Kosanović, D., Potočnik, I., Duduk, B., Vukojević, J., Stajić, M., Rekanović, E., & Milijašević-Marčić, S. (2013). Trichoderma species on Agaricus bisporus farms in Serbia and their biocontrol. Annals of Applied Biology, 163(2), 218-230. doi:10.1111/aab.12048

Pepeljnjak, S., Kosalec, I., Kalođera, Z., & Blažević, N. (2005). Antimicrobial activity of juniper berry essential oil (Juniperus communis L. Cupressaceae). Acta Pharmaceutica, 55, 417-422.

Potočnik, I., Vukojević, J., Stajić, M., Rekanović, E., Milijašević, S., Todorović, B., & Stepanović, M. (2009). In vitro toxicity of selected fungicides from the groups of benzimidazoles and demethylation inhibitors to Cladobotryum dendroides and Agaricus bisporus. Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, & Agricultural Wastes, 44(4), 365-370. doi:10.1080/03601230902801059

Potočnik, I., Vukojević, J., Stajić, M., Tanović, B., & Rekanović, E. (2010). Sensitivity of Mycogone perniciosa, pathogen of culinary-medicinal button mushroom Agaricus bisporus (J. Lge) Imbach (Agaricomycetideae), to selected fungicides and essential oils. International Journal of Medicinal Mushrooms, 12(1), 91-98. doi:10.1615/IntJMedMushr.v12.i1.90

Potočnik, I., Vukojević J., Stajić, M., Tanović, B. & Todorović, B. (2008). Fungicide sensitivity of selected Verticillium fungicola isolates from Agaricus bisporus farms. Archives of Biological Sciences, 60(1), 151-157. doi:10.2298/abs0801151p

Rather, M.A., Dar, B.A., Dar, M.Y., Wani, B.A., Shah, W.A., Bhat, B.A., . . . & Qurishi, M.A. (2012). Chemical composition, antioxidant and antibacterial activities of the leaf essential oil of Juglans regia L. and its constituents. Phytomedicine, 19(13), 1185-1190. doi:10.1016/j.phymed.2012.07.018

Romaine, C.P., Royse, D.J., & Schlagnhaufer, C. (2005). Superpathogenic Trichoderma resistant to Topsin M found in Pennsylvania and Delaware. Mushroom News, 53, 6-9.

Samojlik, I., Petković, S., Mimica-Dukić, N., & Božin, B. (2011). Acute and chronic pretreatment with essential oil of peppermint (Mentha × piperita L., Lamiaceae) influences drug effects. Phytotherapy Research, 26(6), 820-825. doi:10.1002/ptr.3638

Saroglou, V., Marin, P.D., Rancic, A., Veljic, M., & Skaltsa, H. (2007). Composition and antimicrobial activity of the essential oil of six Hypericum species from Serbia. Biochemical Systematics and Ecology, 35(3), 146-152. doi:10.1016/j.bse.2006.09.009

Seaby, D.A. (1996). Differentiation of Trichoderma taxa associated with mushroom production. Plant Pahtology, 45, 905-912.

Soković, M.D., Vukojević, J., Marin, P.D., Brkić, D.D., Vajs, V., & van Griensven, L.J.L.D. (2009). Chemical composition of essential oils of Thymus and Mentha species and their antifungal activities. Molecules, 14(1), 238-249. doi:10.3390/molecules14010238

Soković, M., & van Griensven, L.J.L.D. (2006). Antimicrobial activity of essential oils and their components against the three major pathogens of the cultivated button mushroom, Agaricus bisporus. European Journal of Plant Pathology, 116(3), 211-224. doi:10.1007/s10658-006-9053-0

Stjepanović-Veseličić, L. (1972). Hypericaceae Lindi. U M. Josifović (Ed.), Flora SR Srbije, Vol. 3. (pp. 102-126). Beograd, Srbija: SANU.

Šarić, Lj., Paperbark, I., Šarić, B., Plavšić, D., Lević, J., Pavkov, S., & Kokić, B. (2014). Composition and antimicrobial activity of some essential oils from Serbia. Agro Food Industry Hi-Tech, 25(1), 40-43.

Tanović, B., Potočnik, I., Stanisavljević, B., Đorđević, M., & Rekanović, E. (2006). Response of Verticillium fungicola var. fungicola, Mycogone perniciosa and Cladobotyum sp. mushroom pathogens to some essential oils. Pesticides & Phytomedicine, 21, 231-237.

Woods-Panzaru, S., Nelson, D., McCollum, G., Ballard, L.M., Millar, B., Maeda, Y., . . . & Moore, J.E. (2009). An examination of antibacterial and antifungal properties of constituents described in traditional Ulster cures and remedies. Ulster Medical Journal, 78(1), 13-5. pmid:19252724

Zeković, Z., Lepojević, Ž., Milić, S., Adamović, D., & Mujić, I. (2009). Supercritical CO2 extraction of mentha (Mentha piperita L.) at different solvent densities. Journal of the Serbian Chemical Society, 74(4), 417-425. doi:10.2298/jsc0904417z

Objavljeno
2015/02/10
Kako citirati
Đurović-Pejčev, R. D., Potočnik, I. S., Milijišević-Marčić, S., Todorović, B., Rekanović, E., & Stepanović, M. (2015). Antifungalna aktivnost šest etarskih ulja poreklom iz Srbije na Trichoderma aggressivum f. europaeum. Pesticides and Phytomedicine / Pesticidi I Fitomedicina, 29(4). https://doi.org/10.2298/pif.v29i4.7452
Rubrika
Originalni naučni članak