S. Ajouz, M. Bardin, P. C. Nicot, and M. Maataoui, Comparison of the development in planta of a pyrrolnitrin-resistant mutant of Botrytis cinerea and its sensitive wild-type parent isolate, Eur. J. Plant Pathol, vol.129, pp.31-42, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01332259

S. Ajouz, A. S. Walker, F. Fabre, P. Leroux, P. C. Nicot et al., Variability of Botrytis cinerea sensitivity to pyrrolnitrin, an antibiotic produced by biological control agents, Biocontrol, vol.56, pp.353-363, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01000474

S. Ajouz, P. C. Nicot, and M. Bardin, Adaptation to pyrrolnitrin in Botrytis cinerea and cost of resistance, Plant Pathol, vol.59, pp.556-566, 2010.
URL : https://hal.archives-ouvertes.fr/hal-02668915

C. Alabouvette, C. Olivain, Q. Migheli, and C. Steinberg, Microbiological control of soil-borne phytopathogenic fungi with special emphasis on wiltinducing Fusarium oxysporum, New Phytol, vol.184, pp.529-544, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02668985

A. Ali, M. S. Haider, A. , and M. , Biological control of fruit lesions caused by Xanthomonas campestris pathovars from Cuscuta pedicellata Ledeb. In vitro, J. Pure Appl. Microbiol, vol.7, pp.3149-3153, 2013.

S. Asser-kaiser, E. Fritsch, K. Undorf-spahn, J. Kienzle, K. E. Eberle et al., Rapid emergence of baculovirus resistance in codling moth due to dominant, sex-linked inheritance, Science, vol.317, pp.1916-1918, 2007.

C. W. Bacon and D. M. Hinton, In planta reduction of maize seedling stalk lesions by the bacterial endophyte Bacillus mojavensis, Can. J. Microbiol, vol.57, pp.485-492, 2011.

M. Bardin, M. Comby, R. Lenaerts, and P. C. Nicot, Diversity in susceptibility of Botrytis cinerea to biocontrol products inducing plant defence mechanisms, IOBC-WPRS Bull, vol.88, pp.45-49, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02646075

M. Bardin, M. Comby, C. Troulet, and P. C. Nicot, Relationship between the aggressiveness of Botrytis cinerea on tomato and the efficacy of biocontrol, IOBC-WPRS Bull, vol.86, pp.163-168, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02642287

M. Bardin, A. Schmitt, and P. C. Nicot, Diversity in the effect of an extract from Fallopia sachalinensis on isolates of cucurbit powdery mildews grown on melon, IOBC-WPRS Bull, vol.88, pp.93-97, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02642913

M. Bardin, J. Fargues, and P. C. Nicot, Compatibility between biopesticides used to control grey mould, powdery mildew and whitefly on tomato, Biol. Control, vol.46, pp.476-483, 2008.
URL : https://hal.archives-ouvertes.fr/hal-02661089

J. A. Bell and M. H. Wheeler, Biosynthesis and functions of fungal melanins, Annu. Rev. Phytopathol, vol.24, pp.411-451, 1986.

M. Berling, C. Blachere-lopez, O. Soubabere, X. Lery, A. Bonhomme et al., Cydia pomonella granulovirus genotypes overcome virus resistance in the codling moth and improve virus efficiency by selection against resistant hosts, Appl. Environ. Microbiol, vol.75, pp.925-930, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02668909

S. Boukaew, P. Prasertsan, V. Petcharat, C. Troulet, and M. Bardin, Efficacy of Streptomyces spp. strains against different strains of Botrytis cinerea. IOPC-WPRS Bull, 2015.
URL : https://hal.archives-ouvertes.fr/hal-02640019

K. J. Brent and D. W. Hollomon, Fungicide resistance: the assessment of risk, FRAC Monograph No, pp.1-48, 1998.

K. J. Brent and D. W. Hollomon, Fungicide Resistance in Crop Pathogens: How Can it be Managed, 2007.

S. F. Bryner, D. Rigling, J. W. Buck, and S. N. Jeffers, Effect of pathogen aggressiveness and vinclozolin on efficacy of Rhodotorula glutinis PM4 against Botrytis cinerea on geranium leaf disks and seedlings, Phytopathology, vol.102, pp.1262-1268, 2004.

A. Burse, H. Weingart, and M. S. Ullrich, NorM, an Erwinia amylovora multidrug efflux pump involved in in vitro competition with other epiphytic bacteria, Appl. Environ. Microbiol, vol.70, pp.693-703, 2004.

L. E. Cowen, J. B. Anderson, and L. M. Kohn, Evolution of drug resistance in Candida albicans, Annu. Rev. Microbiol, vol.56, pp.139-165, 2002.

J. D. Crowe and S. Olsson, Induction of laccase activity in Rhizoctonia solani by antagonistic Pseudomonas fluorescens strains and a range of chemical treatments, Appl. Environ. Microbiol, vol.67, pp.2088-2094, 2001.

F. Daayf, A. Schmitt, and R. R. Belanger, Evidence of phytoalexins in cucumber leaves infected with powdery mildew following treatment with leaf extracts of Reynoutria sachalinensis, Plant Physiol, vol.113, pp.719-727, 1997.

M. De-boer, P. Bom, F. Kindt, J. J. Keurentjes, I. Van-der-sluis et al., Control of Fusarium wilt of radish by combining Pseudomonas putida strains that have different disease-suppressive mechanisms, Phytopathology, vol.93, pp.626-632, 2003.

D. Sorbo, G. Schoonbeek, H. J. , D. Waard, and M. A. , Fungal transporters involved in efflux of natural toxic compounds and fungicides, Fungal Genet. Biol, vol.30, pp.1-15, 2000.

T. P. Denny, P. S. Matthews, and H. D. Etten, A possible mechanism of nondegradative tolerance of pisatin in Nectria haematococca MP VI, Physiol. Mol. Plant Pathol, vol.30, pp.90085-90088, 1987.

D. Souza, J. T. Arnould, C. Deulvot, C. Lemanceau, P. Gianinazzi-pearson et al., Effect of 2,4-diacetylphloroglucinol on Pythium: cellular responses and variation in sensitivity among propagules and species, Phytopathology, vol.93, pp.966-975, 2003.

M. A. De-waard, A. C. Andrade, K. Hayashi, H. J. Schoonbeek, I. Stergiopoulos et al., Impact of fungal drug transporters on fungicide sensitivity, multidrug resistance and virulence, Pest. Manag. Sci, vol.62, pp.195-207, 2006.

G. Diaz, A. I. Córcoles, A. D. Asencio, and M. P. Torres, In vitro antagonism of Trichoderma and naturally occurring fungi from elms against Ophiostoma novo-ulmi, For. Pathol, vol.43, pp.51-58, 2013.

B. Duffy, A. Schouten, and J. M. Raaijmakers, Pathogen self-defense: mechanisms to counteract microbial antagonism, Annu. Rev. Phytopathol, vol.41, pp.501-538, 2003.

K. E. Eberle and J. A. Jehle, Field resistance of codling moth against Cydia pomonella granulovirus (CpGV) is autosomal and incompletely dominant inherited, J. Invertebr. Pathol, vol.93, pp.201-206, 2006.

Y. Elad, Biological control of foliar pathogens by means of Trichoderma harzianum and potential modes of action, Crop Prot, vol.19, pp.709-714, 2000.

Y. Elad and A. Stewart, Microbial control of Botrytis spp, pp.223-241, 2004.

F. Faltin, J. Lottmann, R. Grosch, and G. Berg, Strategy to select and assess antagonistic bacteria for biological control of Rhizoctonia solani Kühn, Can. J. Microbiol, vol.50, pp.811-820, 2004.

S. Fedi, E. Tola, Y. Moenne-loccoz, D. N. Dowling, L. M. Smith et al., Evidence for signalling between the phytopathogenic fungus Pythium ultimum and Pseudomonas fluorescens F113: P. ultimum represses the expression of genes in P. fluorescens F113, resulting in altered ecological fitness, Appl. Environ. Microbiol, vol.63, pp.4261-4266, 1997.

S. Fillinger, S. Ajouz, P. C. Nicot, P. Leroux, and M. Bardin, Functional and structural comparison of pyrrolnitrin-and iprodione-induced modifications in the class III histidine-kinase Bos1 of Botrytis cinerea, PLoS ONE, vol.7, p.42520, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01191323

J. E. Flaherty, G. C. Somodi, J. B. Jones, B. K. Harbaugh, J. et al., Control of bacterial spot on tomato in the greenhouse and field with h-mutant bacteriophages, HortScience, vol.35, pp.882-884, 2000.

A. Fleissner, C. Sopalla, and K. M. Weltring, An ATP-binding cassette multidrug-resistance transporter is necessary for tolerance of Gibberella pulicaris to phytoalexins and virulence on potato tubers, Mol. Plant Microbe Interact, vol.15, pp.102-108, 2002.

B. Fofana, D. J. Mcnally, C. Labbé, R. Boulanger, N. Benhamou et al., Milsana-induced resistance in powdery mildew-infected cucumber plants correlates with the induction of chalcone synthase and chalcone isomerase, Physiol. Mol. Plant Pathol, vol.61, pp.90420-90420, 2002.

E. Fritsch, K. Undorf-spahn, J. Kienzle, C. Zebitz, and J. Hüber, , 2005.

. Apfelwickler-granulovirus, Erste Hinweise auf Unterschiede in der Empfindlichkeit lokaler Apfelwickler-Populationen (Codling moth granulovirus: first indication of variations in the susceptibility of local codling moth populations), Nachr. Dtsch. Pflanzenschutzd, vol.57, pp.29-34

M. Gerlagh, J. M. Whipps, S. P. Budge, G. Van-de-geijn, and H. M. , Efficiency of isolates of Coniothyrium minitans as mycoparasites of Sclerotinia sclerotiorum, Sclerotium cepivorum and Botrytis cinerea on tomato stem pieces, Eur. J. Plant Pathol, vol.102, pp.787-793, 1996.

E. M. Govrin and A. Levine, The hypersensitive response facilitates plant infection by the necrotrophic pathogen Botrytis cinerea, Curr. Biol, vol.10, pp.751-757, 2000.

E. M. Govrin, S. Rachmilevitch, B. S. Tiwari, M. Soloman, and A. Levine, An elicitor from Botrytis cinerea induces the hypersensitive response in Arabidopsis thaliana and other plants and promotes the gray mold disease, Phytopathology, vol.96, pp.299-307, 2006.

R. Guetsky, D. Shtienberg, Y. Elad, and A. Dinoor, Combining biocontrol agents to reduce the variability of biological control, Phytopathology, vol.91, pp.621-627, 2001.

R. Guetsky, D. Shtienberg, Y. Elad, E. Fischer, and A. Dinoor, Improving biological control by combining biocontrol agents each with several mechanisms of disease suppression, Phytopathology, vol.92, pp.976-985, 2002.

S. Gurusiddaiah, D. M. Weller, A. Sarkar, and R. J. Cook, Characterization of an antibiotic produced by a strain of Pseudomonas fluorescens inhibitory to Gaeumannomyces graminis var. tritici and Pythium spp, Antimicrob. Agents Chemother, vol.29, pp.488-495, 1986.

S. Harish, K. Manjula, and A. R. Podile, Fusarium udum is resistant to the mycolytic activity of a biocontrol strain of Bacillus subtilis AF 1, FEMS Microbiol. Ecol, vol.25, pp.385-390, 1998.

G. E. Harman, Overview of mechanisms and uses of Trichoderma spp, Phytopathology, vol.96, pp.190-194, 2006.

U. Heilig, P. Delval, and B. Blum, Registered Biocontrol Products and their use in Europe, Classical and Augmentative Biological Control Against Diseases and Pests: Critical Status Analysis and Review of Factors Influencing Their Success, pp.34-41, 2011.

R. D. Holt and M. E. Hochberg, When is biological control evolutionarily stable (or is it)?, Ecology, vol.78, p.78, 1997.

C. R. Howell, Mechanisms employed by Trichoderma species in the biological control of plant diseases: the history and evolution of current concepts, Plant Dis, vol.87, pp.4-10, 2003.

Y. Huang, X. Xie, L. Yang, J. Zhang, G. Li et al., Susceptibility of Sclerotinia sclerotiorum strains different in oxalate production to infection by the mycoparasite Coniothyrium minitans, World J. Microbiol. Biotechnol, vol.27, pp.2799-2805, 2011.

B. J. Jacobsen, Biological control of plant diseases by phyllosphere applied biological control agents, Microbial Ecology of Aerial Plant Surfaces, pp.133-147, 2006.

W. J. Janisiewicz and L. Korsten, Biological control of postharvest diseases of fruits, Annu. Rev. Phytopathol, vol.40, pp.411-441, 2002.

A. F. Janmaat and J. Myers, Rapid evolution and the cost of resistance to Bacillus thuringiensis in greenhouse populations of cabbage loopers, Trichoplusia ni, Proc. R. Soc. B Biol. Sci, vol.270, pp.2263-2270, 2003.

R. W. Jones and R. E. Pettit, Variation in sensitivity among anastomosis groups in Rhizoctonia solani to the antibiotic gliotoxin, Plant Dis, vol.71, pp.34-36, 1987.

M. Kretschmer, M. Leroch, A. Mosbach, A. Walker, S. Fillinger et al., Fungicide-driven evolution and molecular basis of multidrug resistance in field populations of the grey mould fungus Botrytis cinerea, PLoS Pathog, vol.5, p.1000696, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02668014

R. Lahlali, G. Peng, B. D. Gossen, L. Mcgregor, F. Q. Yu et al., Evidence that the biofungicide Serenade (Bacillus subtilis) suppresses clubroot on canola via antibiosis and induced host resistance, Phytopathology, vol.103, pp.245-254, 2013.

C. Leifert, H. Li, S. Chidburee, S. Hampson, S. Workman et al., Antibiotic production and biocontrol activity by Bacillus subtilis Cl27 and Bacillus pumilus Cl45, J. Appl. Bacteriol, vol.78, pp.97-108, 1995.

E. Levy, Z. Eyal, I. Chet, and A. Hochman, Resistance mechanisms of Septoria tritici to antifungal products of, Pseudomonas. Physiol. Mol. Plant Pathol, vol.40, pp.163-171, 1992.

H. Li and C. Leifert, Development of resistance in Botryotinia fuckeliana (de Barry) Whetzel against the biological control agent Bacillus subtilis CL27, Z. Pflanzenkr. Pflanzenschutz, vol.101, pp.414-418, 1994.

M. P. Lutz, G. Feichtinger, G. Defago, D. , and B. , Mycotoxigenic Fusarium and deoxynivalenol production repress chitinase gene expression in the biocontrol agent Trichoderma atroviride P1, Appl. Environ. Microbiol, vol.69, pp.3077-3084, 2003.

X. Ma, X. Yang, F. Zeng, L. Yang, D. Yu et al., Physcion, a natural anthraquinone derivative, enhances the gene expression of leaf-specific thionin of barley against Blumeria graminis, Pest. Manag. Sci, vol.66, pp.718-724, 2010.

G. L. Mark, J. P. Morrissey, P. Higgins, O. 'gara, and F. , Molecular-based strategies to exploit Pseudomonas biocontrol strains for environmental biotechnology applications, FEMS Microbiol. Ecol, vol.56, pp.167-177, 2006.

M. Mazzola and R. J. Cook, Effects of fungal root pathogens on the population dynamics of biocontrol strains of fluorescent pseudomonads in the wheat rhizosphere, Appl. Environ. Microbiol, vol.57, pp.2171-2178, 1991.

M. Mazzola, D. K. Fujimoto, L. S. Thomashow, and R. J. Cook, Variation in sensitivity of Gaeumannomyces graminis to antibiotics produced by fluorescent Pseudomonas spp. and effect on biological control of take-all of wheat, Appl. Environ. Microbiol, vol.61, pp.2554-2559, 1995.

M. Mazzola, X. Zhao, M. F. Cohen, and J. M. Raaijmakers, Wheat cultivar-specific selection of 2,4-diacetylphloroglucinol-producing fluorescent, 2007.

, Pseudomonas species from resident soil populations, Phytopathology, vol.97, pp.1348-1355

B. A. Mcdonald, Using dynamic diversity to achieve durable disease resistance in agricultural ecosystems, Trop. Plant Pathol, vol.39, pp.191-196, 2014.

B. A. Mcdonald and C. Linde, Pathogen population genetics, evolutionary potential, and durable resistance, Annu. Rev. Phytopathol, vol.40, pp.349-379, 2002.

W. H. Mcgaughey, Insect resistance to the biological insecticide Bacillus thuringiensis, Science, vol.229, pp.193-194, 1985.

W. H. Mcgaughey, J. , and D. E. , Indianmeal moth (Lepidoptera: pyralidae) resistance to different strains and mixtures of Bacillus thuringiensis, J. Econ. Entomol, vol.85, pp.1594-1600, 1992.

M. G. Milgroom and P. Cortesi, Biological control of chestnut blight with hypovirulence: a critical analysis, Annu. Rev. Phytopathol, vol.42, pp.311-338, 2004.

J. L. Milner, L. Silosuh, J. C. Lee, H. Y. He, J. Clardy et al., Production of kanosamine by Bacillus cereus UW85, Appl. Environ. Microbiol, vol.62, pp.3061-3065, 1996.

L. W. Moore, W. , and G. , Agrobacterium radiobacter strain 84 and biological control of crown gall, Annu. Rev. Phytopathol, vol.17, pp.163-179, 1979.

J. P. Morrissey, O. , and A. E. , Fungal resistance to plant antibiotics as a mechanism of pathogenesis. Microbiol, Mol. Biol. Rev, vol.63, pp.708-724, 1999.

P. C. Nicot, M. Bardin, C. Alabouvette, J. Köhl, and M. Ruocco, Potential of biological control based on published research. 1. Protection against plant pathogens of selected crops, Classical and Augmentative Biological Control Against Diseases and Pests: Critical Status Analysis and Review of Factors Influencing Their Success, pp.1-11, 2011.

P. C. Nicot, B. Blum, J. Köhl, and M. Ruocco, Conclusions and perspectives, Classical and Augmentative Biological Control Against Diseases and Pests: Critical Status Analysis and Review of Factors Influencing Their Success, pp.68-70, 2011.

R. Notz, M. Maurhofer, H. Dubach, D. Haas, and G. Defago, Fusaric acid-producing strains of Fusarium oxysporum alter 2,4-diacetylphloroglucinol biosynthetic gene expression in Pseudomonas fluorescens CHA0 in vitro and in the rhizosphere of wheat, Appl. Environ. Microbiol, vol.68, pp.2229-2235, 2002.

A. E. Osbourn, Preformed antimicrobial compounds and plant defense against fungal attack, Plant Cell, vol.8, pp.1821-1831, 1996.

L. K. Otto-hanson, Z. Grabau, C. Rosen, C. E. Salomon, and L. L. Kinkel, Pathogen variation and urea influence selection and success of Streptomyces mixtures in biological control, Phytopathology, vol.103, pp.34-42, 2013.

B. H. Ownley, D. M. Weller, and L. S. Thomashow, Influence of in situ and in vitro pH on suppression of Gaeumannomyces graminis var tritici by Pseudomonas fluorescens 2-79, Phytopathology, vol.82, pp.178-184, 1992.

T. C. Paulitz and R. R. Belanger, Biological control in greenhouse systems, Annu. Rev. Phytopathol, vol.39, pp.103-133, 2001.

T. L. Peever, Y. Liu, P. Cortesi, and M. G. Milgroom, Variation in tolerance and virulence in the chestnut blight fungushypovirus interaction, Appl. Environ. Microbiol, vol.66, pp.4863-4869, 2000.

T. Quidde, A. E. Osbourn, and P. Tudzynski, Detoxification of alphatomatine by Botrytis cinerea, Physiol. Mol. Plant Pathol, vol.52, pp.151-165, 1998.

J. M. Raaijmakers, T. C. Paulitz, C. Steinberg, C. Alabouvette, and Y. Moënne-loccoz, The rhizosphere: a playground and battlefield for soilborne pathogens and beneficial microorganisms, Plant Soil, vol.321, pp.341-361, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02545054

J. M. Raaijmakers, M. Vlami, D. Souza, and J. T. , Antibiotic production by bacterial biocontrol agents, J. Gen. Mol. Microbiol, vol.81, pp.537-547, 2002.

B. Randoux, D. Renard, E. Nowak, J. Sanssené, J. Courtois et al., Inhibition of Blumeria graminis f. sp. tritici germination and partial enhancement of wheat defenses by Milsana, Phytopathology, vol.96, pp.1278-1286, 2006.

V. V. Rivera-varas, T. A. Freeman, N. C. Gudmestad, and G. A. Secor, Mycoparasitism of Helminthosporium solani by Acremonium strictum, vol.97, pp.1331-1337, 2007.

M. Ruocco, S. Woo, F. Vinale, S. Lanzuise, and M. Lorito, Identified difficulties and conditions for field success of biocontrol. 2. Technical aspects: factors of efficacy, Classical and Augmentative Biological Control Against Diseases and Pests: Critical Status Analysis and Review Of Factors Influencing Their Success, pp.45-57, 2011.

G. Sansone, I. Rezza, V. Calvente, D. Benuzzi, S. De-tosetti et al., Control of Botrytis cinerea strains resistant to iprodione in apple with rhodotorulic acid and yeasts, Postharvest Biol. Technol, vol.35, pp.245-251, 2005.

G. Sansone, I. Rezza, G. Fernandez, V. Calvente, D. Benuzzi et al., Inhibitors of polygalacturonase and laccase of Botrytis cinerea and their application to the control of this fungus, Int. Biodeterior. Biodegradation, vol.65, pp.243-247, 2011.

O. Santamaria, M. A. Gonzalez, J. A. Pajaresand, J. J. Diez, B. Sauphanor et al., Effect of fungicides, endophytes and fungal filtrates on in vitro growth of Spanish isolates of Gremmeniella abietina, Carpocapse des pommes: cas de résistance au virus de la granulose en vergers biologiques, vol.37, pp.24-27, 2006.

M. Sbaghi, P. Jeandet, R. Bessis, and P. Leroux, Degradation of stilbene-type phytoalexins in relation to the pathogenicity of Botrytis cinerea to grapevines, Plant Pathol, vol.45, pp.139-144, 1996.

E. L. Schnabel and A. L. Jones, Isolation and characterization of Five Erwinia amylovora bacteriophages and assessment of phage resistance in strains of Erwinia amylovora, Appl. Environ. Microbiol, vol.67, pp.59-64, 2001.

H. Schoonbeek, G. Del-sorbo, D. Waard, and M. A. , The ABC transporter BcatrB affects the sensitivity of Botrytis cinerea to the phytoalexin resveratrol and the fungicide fenpiclonil, Mol. Plant Microbe Interact, vol.14, pp.562-571, 2001.

H. Schoonbeek, J. M. Raaijmakers, D. Waard, and M. A. , Fungal ABC transporters and microbial interactions in natural environments, Mol. Plant Microbe Interact, vol.15, pp.1165-1172, 2002.

H. J. Schoonbeek, A. C. Jacquat-bovet, F. Mascher, and J. P. Metraux, , 2007.

, Oxalate-degrading bacteria can protect Arabidopsis thaliana and crop plants against Botrytis cinerea, Mol. Plant Microbe Interact, vol.20, pp.1535-1544

A. Schouten, O. Maksimova, Y. Cuesta-arenas, . Van-den, G. Berg et al., Involvement of the ABC transporter BcAtrB and the laccase BcLCC2 in defence of Botrytis cinerea against the broad-spectrum antibiotic 2,4-diacetylphloroglucinol, Environ. Microbiol, vol.10, pp.1145-1157, 2008.

A. Schouten, . Van-den, G. Berg, V. Edel-hermann, C. Steinberg et al., Defense responses of Fusarium oxysporum to 2,4-diacetylphloroglucinol, a broad-spectrum antibiotic produced by Pseudomonas fluorescens, Mol. Plant Microbe Interact, vol.17, pp.1201-1211, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02680974

M. A. Shibu, H. S. Lin, H. H. Yang, and K. C. Peng, Trichoderma harzianum ETS 323-mediated resistance in Brassica oleracea var. capitata to Rhizoctonia solani involves the novel expression of a glutathione s-transferase and a deoxycytidine deaminase, J. Agric. Food Chem, vol.60, pp.10723-10732, 2012.

D. Shtienberg and Y. Elad, Incorporation of weather forecasting in integrated, biological-chemical management of Botrytis cinerea, Phytopathology, vol.87, pp.332-340, 1997.

V. O. Stockwell, M. D. Kawalek, L. W. Moore, and J. E. Loper, Transfer of pAgK84 from the biocontrol agent Agrobacterium radiobacter K84 to under field conditions, Phytopathology, vol.86, pp.31-37, 1996.

B. E. Tabashnik, Evolution of resistance to Bacillus thuringiensis, Annu. Rev. Entomol, vol.39, pp.47-79, 1994.

G. J. Turner and H. T. Tribe, On Coniothyrium minitans and its parasitism of Sclerotinia species, Trans. Br. Mycol. Soc, vol.66, issue.76, pp.80098-80106, 1976.

, Frontiers in Plant Science | www.frontiersin.org July, vol.6, p.566, 2015.

F. G. Van-zyl, B. W. Strijdom, and J. L. Staphorst, Susceptibility of Agrobacterium tumefaciens strains to two agrocin-producing Agrobacterium strains, Appl. Environ. Microbiol, vol.52, pp.234-238, 1986.

A. Vitale, G. Cirvilleri, I. Castello, D. Aiello, and G. Polizzi, Evaluation of Trichoderma harzianum strain T22 as biological control agent of Calonectria pauciramosa, BioControl, vol.57, pp.687-696, 2012.

J. A. Vorholt, Microbial life in the phyllosphere, Nat. Rev. Microbiol, vol.10, pp.828-840, 2012.

Y. Wang, L. Lim, S. Diguistini, G. Robertson, J. Bohlmann et al., A specialized ABC efflux transporter GcABC-G1 confers monoterpene resistance to Grosmannia clavigera, a bark beetle-associated fungal pathogen of pine trees, New Phytol, vol.197, pp.886-898, 2013.

J. M. Whipps, S. Sreenivasaprasad, S. Muthumeenakshi, C. W. Rogers, and M. P. Challen, Use of Coniothyrium minitans as a biocontrol agent and some molecular aspects of sclerotial mycoparasitism, Eur. J. Plant Pathol, vol.121, pp.323-330, 2008.

L. Wiesel, A. C. Newton, I. Elliott, D. Booty, E. M. Gilroy et al., Molecular effects of resistance elicitors from biological origin and their potential for crop protection, Front. Plant Sci, vol.5, p.655, 2014.

X. J. Yang, L. J. Yang, F. S. Zeng, L. B. Xiang, S. N. Wang et al., Distribution of baseline sensitivities to natural product physcion among isolates of Sphaerotheca fuliginea and Pseudoperonospora cubensis, 2008.