Instytut Sadownictwa i Kwiaciarstwa im.Szczepana Pieniążka, ul.Pomologiczna 18, 96-100 Skierniewice
Bibliografia
Bradbury J.F. 1988. Identification of cultivable bacteria from plants and plant tissue cultures by use of simple classical methods. Acta Hort. 225: 27–37.
Gamliel A., Katan J. 1993. Suppression of major and minor pathogens by fluorescent pseudomonads in solarized and nonsolarized soils. Phytopathology 83: 68–75.
Gu Y.H., Mazzola M. 2001. Impact of carbon starvation on stress resistance, survival in soil habitats and biocontrol ability of Pseudomonas putida strain 2C8. Soil Biol. Biochem. 33:1155–1162.
Holt J.G., Krieg N.R., Sneath P.H.A., Staley J.T., Williams S.T. 1994. Bergey`s Manual of SystematicBacteriology. Willimas & Wilkins, Baltimore. 9th ed., 787 ss.
Klement Z. 1963. Method for rapid detection of the pathogenicity of phytopathogenic Pseudomonas.Nature, London 199: 299–300.
Mazzola M. 1998. Elucidation of the microbial complex having a causal role in the development of apple replant disease in Washington. Phytopathology 88: 930–938.
Munnecke D.E. 1984. Establishment of microorganisms in fumigated avocado soil to attempt to prevent reinvasion of the soils by Phytophthora cinnamomi. Trans. Br. Mycol. Soc. 83: 287–294.
Schaad N.W., Jones J.B., Chun W. 2001. Plant Pathogenic Bacteria. 3-rd ed. The APS St. Paul, 373 ss.
Smith V.L., Wilcox W.F., Harman G.E. 1990. Potential for biological control of Phytophthora root and crown rots of apple by Trichoderma and Gliocladium spp. Phytopathology 80: 880–885.
Sobiczewski P., Bryk H., Berczyński S. 1996. Evaluation of epiphytic bacteria isolated from apple leaves in the control of postharvest apple diseases. J. Fr. Orn. Pl. Res. 4 (1): 35–45.
Utkhede R.S., Li T.S.C. 1989. Evaluation of Bacillus subtilis for potential control of apple replant disease. J. Phytopathology 126: 305–312.
Weller D.M. 2007. Pseudomonas biocontrol agents of soilborne pathogens: Looking back over 30 years. Phytopathology 97: 250–256.