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Valenzuela-Soto, J. H., Estrada-Hernández, M. G., Laclette, E. I., & Délano-Frier, J. P. (2010).
Inoculation of tomato plants (Solanum lycopersicum) with growth-promoting Bacillus subtilis
retards whitefly Bemisia tabaci development. Planta, 231, 397-10.
Van der Ent, S., Verhagen, B. W. M., Van Doom, R., Bakker, D., Verlaan, M. G., Pel, M. J. C.,
et al. (2008). MYB72 is required in early signaling steps of rhizobacteria-induced systemic
resistance in Arabidopsis. Plant Physiology, 146, 1296-1304.
Van Peer, R., Niemann, G. N., & Schippers, B. (1991). Induced resistance and phytoalexin
accumulation in biological control of Fusarium wilt in carnation by Pseudomonas sp. strain
WCS417r. Phytopathology, 81, 728-734.
Vasyukova, N. I., Chalenko, G. I., Gerasimova, N. G., Valueva, T. A., & Ozeretskovskaya, O. L.
(2008). activation of elicitor defensive properties by systemic signal molecules during the
interaction between potato and the late blight agent. Applied Biochemistry Microbiology, 44,
213-217.
Verhage, A., Vlaardingerbroek, I., Raaymakers, C., Van Dam, N. M., Dicke, M., Van Wees, S.
C. M., et al. (2011). Rewiring of the jasmonate signaling pathway in Arabidopsis during insect
herbivory. Trends in Plant Science, 17(5), 293-302.
Verhagen, B. W. M., Tritel-Aziz, P., Couderchet, M., Hofte, M., & Aziz, A. (2010).
Pseudomonas spp.-induced systemic resistance to Botrytis cinerea is associated with
induction and priming of defense responses in grapevine. Journal of Experimental Botany,
61, 249-260.
Vlot, A. C., Dempsey, D. A., & Klessig, D. F. (2009). Salicylic acid, a multifaceted hormone to
combat disease. Annual review of Phytopathology, 47, 177-206.
Visca, P., Cievro, A., Sanfilippo, V., & Orsi, N. (1993). Iron-regulated salicylate synthesis by
Pseudomonas spp. Journal of General Microbiology, 139, 1995-2001.
Wasternack, C. (2007). Jasmonates: An update on biosynthesis, signal transduction and action in
plant stress response, growth and development. Annals of Botany, 100, 681-697.
Wees, S., Swart, E., Pelt, J. A., van Loon, L. C., & Pieterse, C. M. J. (2000). Enhancement of
induced disease resistance by simultaneous activation of Salicylate- and Jasmonate-dependent
defense pathways in Arabidopsis thaliana. PNAS, 97(15), 8711-8716.
Weller D. M., Mavrodi D.V., van Pelt J.A., Pieterse C. M. J., van Loon L. C., Bakker P. A. H. M.
(2012). Induced systemic resistance in Arabidopsis thaliana against Pseudomonas syringae
pv. tomato by 2,4-diacetylphloroglucinol-producing Pseudomonas fluorescens. Phytopatol.
102(4): 403-12.
Wei, G., Kloeper, J. W., & Tuzun, S. (1999). Induction of systemic resistance of cucumber to
Colletotrichum
orbiculare
by
select
strains
of
plant
growth
promoting
rhizobacteria.
Phytopathology, 81, 1508-1512.
Wu, C.-T., & Bradford, K. J. (2003). Class I chitinase and b-1,3-glucanase are differentially
regulated by wounding, methyl jasmonate, ethylene, and gibberellin in tomato seeds and
leaves. Plant Physiology, 133, 1-11.
Xu, Y., Chang, P. L., & Liu, D. (1994). Plant defense genes are synergistically induced by
ethylene and methyl Jasmonate. Plant Cell, 1994(6), 1077-1085.
Yang, J. W., Yu, S. H., & Ryu, C.-M. (2009). Priming of defense-related genes confers root-
colonizing Bacilli-elicited induced systemic resistance in pepper. Plant Pathology. J, 25,
389-399.
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