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130 L.A. ShcherbakovaDzhavakhiya, V.G., Nikolaev, O.N., Vo<strong>in</strong>ova,T.M., Battchikova, N.V., Korpela T. andKhomutov, R.M. (2000) DNA sequenceof gene and am<strong>in</strong>o acid sequence of prote<strong>in</strong>from Bacillus thur<strong>in</strong>giensis, which<strong>in</strong>duces non-specific resistance of <strong>plant</strong>sto viral and fungal diseases. Journalof Russian Phytopathological Society 1,75–81.Dzhavakhiya, V.V. (2008). Study<strong>in</strong>g thepotentiality of lovastat<strong>in</strong> us<strong>in</strong>g for <strong>plant</strong>protection from diseases and developmentof a stat<strong>in</strong> production technologybased on new producer stra<strong>in</strong>s. Ph.D.thesis. Russian Research Institute ofPhytopathology, Russia.Dzhavakhiya, V.V. and Petel<strong>in</strong>a, G.G. (2008)Lovastat<strong>in</strong> <strong>in</strong>fluence on phytopathogenicfungi. Agro XXI 4–6, 33–35.Edreva, A. (2005) Pathogenesis-related prote<strong>in</strong>s:research progress <strong>in</strong> the last 15years. General and Applied Plant Physiology31, 105–124.Elad, Y., Chet, I. and Henis, Y. (1982) Degradationof <strong>plant</strong> pathogenic fungi by Trichodermaharzianum. Canadian Journal ofMicrobiology 28, 719–725.Felix, G. and Boller, T. (2003) The highly conservedRNA-b<strong>in</strong>d<strong>in</strong>g motif RNP-1 ofbacterial cold shock prote<strong>in</strong>s is recognizedas an elicitor signal <strong>in</strong> tobacco.Journal of Biological Chemistry 278,6201–6208.F<strong>in</strong>k<strong>in</strong>g, R. and Marahiel, M.A. (2004) Biosynthesisof nonribosomal peptides. AnnualReview of Microbiology 58, 453–488.Garcia -Olmedo, F., Mol<strong>in</strong>a, A., Alamillo, J.M.and Rodriguez-Palenzuela, P. (1998)Plant defense peptides. Biopolymers 47,479–491.Gohel, V., Megha, C., Vays, P. and Chhatpar,H.S. (2004) Stra<strong>in</strong> improvement of chit<strong>in</strong>olyticenzyme produc<strong>in</strong>g isolate Pantoeadispersa for enhanc<strong>in</strong>g its biocontrolpotential aga<strong>in</strong>st fungal <strong>plant</strong> pathogens.Annals of Microbiology 54, 503–515.Gohel, V., S<strong>in</strong>gh, A., Vimal, M., Ashw<strong>in</strong>i, P.and Chhatpar, H.S. (2006) Bioprospect<strong>in</strong>gand antifungal potential of chit<strong>in</strong>olyticmicroorganisms. African Journal ofBiotechnology 5, 54–72.Gouland, C., Hlimi, S., Rebuffat, S. and Bodo,B. (1995) Trichorz<strong>in</strong>s HA and MA, antibioticpeptides from Trichoderma harzianum.Journal of Antibiotics 48, 1248–1253.Gueldner, R.C., Reilly, C.C., Pusey, P.L.,Costello, C.F., Arrendale, R.F., Cox, R.H.,Himmelsbach, D.S., Crumley, F.G. andCutler, H.G. (1988) Isolation and identificationof itur<strong>in</strong>s as antifungal peptides <strong>in</strong>biological control of peach brown rotwith Bacillus subtilis. Agricultural FoodChemistry 36, 366–370.Habib, H. and Khalid, M.F. (2007) Plantprotease <strong>in</strong>hibitors: a defense strategy <strong>in</strong><strong>plant</strong>s. Biotechnology and Molecular BiologyReview 2, 068–085.Huang, H.W. (2000) Action of antimicrobialpeptides: Two-state model. Biochemistry39, 8347–8352.J<strong>in</strong>, M., Wright, S., Beer, S. and Clardy, J. (2003)The biosynthetic gene cluster of pantoc<strong>in</strong>A provides <strong>in</strong>sights <strong>in</strong>to biosynthesis anda tool for screen<strong>in</strong>g. Angewandte ChemieInternational Edition 42, 2902–2905.Ko, K., Norelli, J.L., Reynoird, J-P.,Boresjza-Wysocka, E., Brown, S.K. andAldw<strong>in</strong>ckle, H.S. (2000) Effect of untranslatedleader sequence of AMV RNA 4 andsignal peptide of pathogenesis-relatedprote<strong>in</strong> 1b on attac<strong>in</strong> gene expression,and resistance to fire blight <strong>in</strong> transgenicapple. Biotechnology Letters 22, 373–381.Krom<strong>in</strong>a, K.A. and Dzhavakhiya, V.G. (2004)Peptide csp15, which represents consensussequence of RNA-b<strong>in</strong>d<strong>in</strong>g motifRNP-1 of bacterial cold shock prote<strong>in</strong>s,<strong>in</strong>duces non-specific resistance of <strong>plant</strong>sto viral and fungal pathogens. Abstractbookof the International Jo<strong>in</strong>t Workshop onPR-Prote<strong>in</strong>s and Induced Resistance. RISO &University of Fribourg, Denmark, pp. 144.Krom<strong>in</strong>a, K.A. and Dzhavakhiya, V.G. (2006)Expression of bacterial gene CspD <strong>in</strong>tobacco <strong>plant</strong>s results <strong>in</strong> enhanced resistanceto fungal and viral phytopathogens.Molecular Genetics, Virology andMicrobiology (Russia) 1, 31–34.Kumar, A., Shukla, R., S<strong>in</strong>gh, P., Prasad, C.S.and Dubey, N.K. (2008) Assessment ofThymus vulgaris L. essential oil as a safebotanical preservative aga<strong>in</strong>st post

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