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Literaturverzeichnis 135 Jahr, H., Bahro, R., Burger, A., Ahlemeyer, J. and Eichenlaub, R. (1999). Interactions between Clavibacter michiganensis and its host plants. Environ Microbiol. 1(2): 113-118. Jahr, H., Dreier, J., Meletzus, D., Bahro, R. and Eichenlaub, R. (2000). The endo-beta-1,4glucanase CelA of Clavibacter michiganensis subsp. michiganensis is a pathogenicity determinant required for induction of bacterial wilt of tomato. Mol Plant Microbe Interact. 13(7): 703-714. Jones, J. D. and Dangl, J. L. (2006). The plant immune system. Nature. 444(7117): 323329. Joshi, M., Rong, X., Moll, S., Kers, J., Franco, C. and Loria, R. (2007). Streptomyces turgidiscabies secretes a novel virulence protein, Nec1, which facilitates infection. Mol Plant Microbe Interact. 20(6): 599-608. Jung, M. Y., Park, I. S., Kim, W., Kim, H. L., Paek, W. K. and Chang, Y. H. (2010). Clostridium arbusti sp. nov., an anaerobic bacterium isolated from pear orchard soil. Int J Syst Evol Microbiol. 60(Pt 9): 2231-2235. Kabelka, E., Franchino, B. and Francis, D. M. (2002). Two loci from Lycopersicon hirsutum LA407 confer resistance to strains of Clavibacter michiganensis subsp michiganensis. Phytopathology. 92(5): 504-510. Karki, H. S., Barphagha, I. K. and Ham, J. H. (2012). A conserved two-component regulatory system, PidS/PidR, globally regulates pigmentation and virulence-related phenotypes of Burkholderia glumae. Mol Plant Pathol. 13(7): 785-794. Kaup, O., Gräfen, I., Zellermann, E. M., Eichenlaub, R. and Gartemann, K. H. (2005). Identification of a tomatinase in the tomato-pathogenic actinomycete Clavibacter michiganensis subsp. michiganensis NCPPB382. Mol Plant Microbe Interact. 18(10): 1090-1098. Kers, J. A., Cameron, K. D., Joshi, M. V., Bukhalid, R. A., Morello, J. E., Wach, M. J., Gibson, D. M. and Loria, R. (2005). A large, mobile pathogenicity island confers plant pathogenicity on Streptomyces species. Mol Microbiol. 55(4): 1025-1033. Király, Z., El-Zahaby, H. M. and Klement, Z. (1997). Role of extracellular polysaccharide (EPS) slime of plant pathogenic bacteria in protecting cells to reactive oxygen species. J Phytopathol. 145: 59-68. Kirchner, O., Gartemann, K. H., Zellermann, E. M., Eichenlaub, R. and Burger, A. (2001). A highly efficient transposon mutagenesis system for the tomato pathogen Clavibacter michiganensis subsp. michiganensis. Mol Plant Microbe Interact. 14(11): 1312-1318. Knoppová, M., Phensaijai, M., Veselý, M., Zemanová, M., Nešvera, J. and Pátek, M. (2007). Plasmid vectors for testing in vivo promoter activities in Corynebacterium glutamicum and Rhodococcus erythropolis. Curr Microbiol. 55(3): 234-239. Köhler, B., Wegner, L. H., Osipov, V. and Raschke, K. (2002). Loading of nitrate into the xylem: apoplastic nitrate controls the voltage dependence of X-QUAC, the main anion conductance in xylem-parenchyma cells of barley roots. Plant J. 30(2): 133-142. Krasikov, V., Dekker, H. L., Rep, M. and Takken, F. L. (2011). The tomato xylem sap protein XSP10 is required for full susceptibility to Fusarium wilt disease. J Exp Bot. 62(3): 963-973.