T. D. Ferreira, R. S. Yassumoto, L. De-souza, J. R. Ishikawa, N. K. Barbosa et al., Outcome of the consultation with Member States and EFSA on the basic substance applications for Urtica spp. for use in plant protection as insecticide, acaricide and fungicide, scab and for post-harvest control of storage diseases of various fruits. EFSA Supporting Publications, vol.12, pp.705-720, 2006.

C. Garcia, C. M. Faria, R. V. Botelho, C. D. Leite, K. C. De-souza et al., Primary scab control using a "during-infection" spray timing and the effect on fruit quality and yield in organic apple production, Ciencia E Tecnica Vitivinicola, vol.30, pp.402-409, 2006.

G. P. Kamatou, I. Vermaak, A. M. Viljoen, R. Osboo, M. Khodaverdi et al., Antibacterial effect of effective compounds of Satureja hortensis and Thymus vulgaris essential oils against Erwinia amylovora, Journal of Agricultural Science and Technology, vol.17, issue.6, pp.2495-2501, 2007.

Y. S. Kim, H. M. Kim, C. Chang, I. C. Hwang, H. Oh et al., Biological evaluation of neopeptins isolated from a Streptomyces strain, Pest Management Science, vol.63, issue.12, pp.1208-1214, 2007.

G. K. Kishore, S. Pande, S. Harish, S. Texte-intégral-kordali, A. Cakir et al., Antifungal, phytotoxic and insecticidal properties of essential oil isolated from Turkish Origanum acutidens and its three components, carvacrol, thymol and p-cymene, Texte intégral La Torre, vol.91, pp.32-39, 2007.

C. D. Leite, R. V. Botelho, C. M. Faria, and A. J. Maia, Garlic extract and vegetable oil in the control of downy mildew in grapevines, Revista Brasileira de Fruticultura, vol.33, issue.2, pp.429-436, 2011.

P. A. Marchand, C. A. Isambert, M. Jonis, C. E. Parveaud, M. Chovelon et al., Évaluation des caractéristiques et de l'intérêt agronomique de préparations simples de plantes, pour des productions fruitières, légumières et viticoles économes en intrants. Innovations Agronomiques, pp.83-96, 2014.

K. A. Abo-elyousr and H. H. El-hendawy, Integration of Pseudomonas fluorescens and acibenzolar-S-methyl to control bacterial spot disease of tomato, Crop Protection, vol.27, issue.7, pp.1118-1124, 2008.

A. Alaphilippe, Y. Elad, D. R. David, S. Derridj, and C. Gessler, Effects of a biocontrol agent of apple powdery mildew (Podosphaera leucotricha) on the host plant and on non-target organisms: An insect pest (Cydia pomonella) and a pathogen, 2008.
URL : https://hal.archives-ouvertes.fr/hal-02664328

, Biocontrol Science and Technology, vol.18, issue.2, pp.121-138

A. A. Almoneafy, K. U. Kakar, Z. Nawaz, B. Li, M. A. Saand et al., Synergistic effect of acetyl salicylic acid and DL-Beta-aminobutyric acid on biocontrol efficacy of Bacillus strains against tomato bacterial wilt, Texte intégral Almoneafy, A.A, vol.63, issue.2, pp.102-113, 2013.

M. Altindag, M. Sahin, A. Esitken, S. Ercisli, M. Guleryuz et al., Biological control of brown rot (Moniliana laxa Ehr.) on apricot (Prunus armeniaca L. cv. Hacihaliloglu) by Bacillus, Burkholdria, and Pseudomonas application under in vitro and in vivo conditions, Zeitschrift Fur Pflanzenkrankheiten Und Pflanzenschutz-Journal of Plant Diseases and Protection, vol.38, issue.3, pp.5165-5173, 2002.

K. L. Bailey, O. Carisse, M. Leggett, G. Holloway, F. Leggett et al., Isolation of Ralstonia solanacearum-infecting bacteriophages from tomato fields in Chiang Mai, Thailand, and their experimental use as biocontrol agents, Canada. Canadian Journal of Plant Pathology-Revue Canadienne De Phytopathologie, vol.17, issue.9, pp.308-317, 2003.

J. M. Byrne, A. C. Dianese, P. Ji, H. L. Campbell, D. A. Cuppels et al., Improvement of a dry formulation of Pseudomonas fluorescens EPS62e for fire blight disease biocontrol by combination of culture osmoadaptation with a freeze-drying lyoprotectant, Journal of Applied Microbiology, vol.32, issue.3, pp.782-791, 2005.

O. Carisse, D. ;. Rolland, P. A. Elmer, I. Vinas, N. Teixido et al., Efficacy of selected streptomycetes and a streptomycete plus pseudomonad combination in the management of selected bacterial and fungal diseases of field tomatoes, Effect of timing of application of the biological control agent Microsphaeropsis ochracea on the production and ejection pattern of ascospores by Venturia inaequalis, vol.94, pp.276-284, 2003.

S. Dagostin, H. J. Scharer, I. Pertot, and L. Tamm, Are there alternatives to copper for controlling grapevine downy mildew in organic viticulture? Crop Protection, vol.30, pp.776-788, 2011.

D. Bello, G. M. Monaco, C. I. Sisterna, M. N. Nico, and A. I. , Relationship between an in vitro and greenhouse assay for biological control of Bipolaris sorokiniana-induced seedling blight of wheat, Biological Agriculture & Horticulture, vol.26, issue.2, pp.103-119, 2008.

D. Bello, G. M. Sisterna, M. N. Monaco, and C. I. , Antagonistic effect of soil rhizosphere microorganisms on Bipolaris sorokiniana, the causal agent of wheat seedling blight, International Journal of Pest Management, vol.49, issue.4, pp.313-317, 2003.

A. De-cal, I. Larena, M. Linan, R. Torres, N. Lamarca et al., Effects of in-season crop-protection combined with postharvest applied fungicide on suppression of potato storage diseases caused by oomycete pathogens, Genome, proteome and structure of a T7-like bacteriophage of the kiwifruit canker phytopathogen Pseudomonas syringae pv. actinidiae. Viruses-Basel, vol.106, pp.631-639, 2000.

A. Gentili, E. Mariotti, A. Vincenzi, A. Mazzaglia, A. Heydari et al., Influence of additives on adhesion of Penicillium frequentans conidia to peach fruit surfaces and relationship to the biocontrol of brown rot caused by Monilinia laxa, International Journal of Food Microbiology, vol.90, issue.2, pp.66-72, 2004.

A. Guyer, M. De-vrieze, D. Bonisch, R. Gloor, T. Musa et al., The anti-Phytophthora effect of selected potato-associated Pseudomonas strains: from the laboratory to the field, Frontiers in Microbiology, vol.6, 2014.

L. A. Hadwiger, H. Mcdonel, D. Glawe, B. A. Vieira, J. R. Vieira et al., Suppression of the bacterial spot pathogen Xanthomonas euvesicatoria on tomato leaves by an attenuated mutant of Xanthomonas perforans, Texte intégral Halfeld, vol.92, pp.3323-3330, 2006.

J. F. Huang, Z. Wei, S. Y. Tan, X. L. Mei, Q. R. Shen et al., Integrated biological control of bacterial speck and spot of tomato under field conditions using foliar biological control agents and plant growth-promoting rhizobacteria, Texte intégral Jochum, vol.62, pp.427-435, 2003.

A. Kawaguchi, K. Inoue, Y. Inoue, C. A. Keyser, B. Jensen et al., Comparison of the efficacy of chitosan with that of a fluorescent pseudomonad for the control of Fusarium head blight disease of cereals and associated mycotoxin contamination of grain, Texte intégral Khan, vol.80, pp.14-19, 2009.

H. Y. Kim, G. J. Choi, H. B. Lee, S. W. Lee, H. K. Lim et al., Some fungal endophytes from vegetable crops and their anti-oomycete activities against tomato late blight, Letters in Applied Microbiology, vol.44, issue.3, pp.332-337, 2007.

I. Y. Kim, P. L. Pusey, Y. F. Zhao, S. S. Korban, H. Choi et al., Characterization of plant growth promoting rhizobacteria and their potential as bioprotectant against tomato bacterial wilt caused by Ralstonia solanacearum, Controlled release of Pantoea agglomerans E325 for biocontrol of fire blight disease of apple, vol.161, pp.401-407, 2005.

J. P. Levenfors, T. H. Eberhard, J. J. Levenfors, B. Gerhardson, M. Hokeberg et al., From the root to the stem: interaction between the biocontrol root endophyte Pseudomonas fluorescens PICF7 and the pathogen Pseudomonas savastanoi NCPPB 3335 in olive knots, Biological control of snow mould (Microdochium nivale) in winter cereals by Pseudomonas brassicacearum, MA250. Biocontrol, vol.53, pp.98-105, 2004.

D. L. Mcneil, S. Romero, J. Kandula, C. Stark, A. Stewart et al., The genome of the Erwinia amylovora phage PhiEaH1 reveals greater diversity and broadens the applicability of phages for the treatment of fire blight, New Zealand Plant Protection, vol.54, issue.1, pp.25-27, 2001.

F. H. Medeiros, I. S. Moraes, E. B. Da-silva, E. B. Silveira, and R. D. Mariano, Management of melon bacterial blotch by plant beneficial bacteria, Phytoparasitica, vol.37, issue.5, pp.453-460, 2009.

J. Mercier, S. E. Lindow, A. Mikicinski, P. Sobiczewski, J. Pulawska et al., Antimicrobial activities of Rhizobium sp strains against Pseudomonas savastanoi, the agent responsible for the olive knot disease in Algeria, Texte intégral Moss, vol.22, pp.72-81, 2001.

E. A. Moya-elizondo and B. J. Jacobsen, Integrated management of Fusarium crown rot of wheat using fungicide seed treatment, cultivar resistance, and induction of systemic acquired resistance (SAR), Biological Control, vol.92, pp.153-163, 2016.

I. Muller, R. Lurz, M. Kube, C. Quedenau, W. Jelkmann et al., Response of tomato wilt pathogen Ralstonia solanacearum to the volatile organic compounds produced by a biocontrol strain Bacillus amyloliquefaciens SQR-9, Germany affecting the fire blight pathogen Erwinia amylovora. Microbial Biotechnology, vol.4, pp.1519-1526, 2000.

D. A. Rocha, A. B. Moura, A. Volckaert, S. Venneman, B. Devlercq et al., Characterization of noval bacteriophages for biocontrol of bacterial blight in leek caused by Pseudomonas syringae pv. porri, Ralstonia solanacearum and Fusarium oxysporum f. sp lycopersici by rhizobacteria, vol.38, pp.438-449, 2012.

E. Sari, H. R. Etebarian, and H. Aminian, The effects of Bacillus pumilus, isolated from wheat rhizosphere, on resistance in wheat seedling roots against the take-all fungus, Gaeumannomyces graminis var. tritici, Journal of Phytopathology, vol.155, pp.720-727, 2007.

L. Bouvier, M. Bourcy, M. Boulay, M. Tellier, P. Guérif et al., A new pear scab resistance gene Rvp1 from the European pear cultivar 'Navara' maps in a genomic region syntenic to an apple scab resistance gene cluster on linkage group 2, Tree Genetics & Genomes, vol.8, issue.1, pp.53-60, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01209884

J. K. Bowen, C. H. Mesarich, V. G. Bus, R. M. Beresford, K. M. Plummer et al., Quantitative resistance increases the durability of qualitative resistance to Leptosphaeria maculans in Brassica napus, European Journal of Plant Pathology, vol.12, issue.2, pp.541-548, 1969.

F. Calenge, A. Faure, M. Goerre, C. Gebhardt, W. E. Van-de-weg et al., Quantitative trait loci (QTL) analysis reveals both broad-spectrum and isolate-specific QTL for scab resistance in an apple progeny challenged with eight isolates of Venturia inaequalis, Phytopathology, vol.94, issue.4, pp.370-379, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02675316

A. Carmeille, C. Caranta, J. Dintinger, P. Prior, J. Luisetti et al., Reassessment of QTLs for late blight resistance in the tomato accession L3708 using a restriction site associated DNA (RAD) linkage map and highly aggressive isolates of Phytophthora infestans, Canadian Journal of Plant Science, vol.113, issue.1, pp.611-619, 2006.

W. J. Chen, F. Delmotte, S. Richard-cervera, L. Douence, C. Greif et al., Development of AFLP and CAPS markers linked to the scab resistance gene, Rvn2, in an inter-specific hybrid pear (Pyrus spp.), Journal of Horticultural Science & Biotechnology, vol.73, issue.16, pp.281-286, 2002.

C. E. Durel, F. Calenge, L. Parisi, W. E. Van-de-weg, L. P. Kodde et al., An overview of the position and robustness of scab resistance QTLs and major genes by aligning genetic maps of five apple progenies, Acta Horticulturae, vol.663, pp.135-140, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02763830

C. E. Durel, L. Parisi, F. Laurens, W. E. Van-de-weg, R. Liebhard et al., Genetic dissection of partial resistance to race 6 of Venturia inaequalis in apple, Genome, vol.46, issue.2, pp.224-234, 2003.
URL : https://hal.archives-ouvertes.fr/hal-02678489

J. G. Elphinstone, Bacterial wilt disease and the Ralstonia solanacearum species complex, pp.9-28, 2005.

S. Fawke, M. Doumane, S. Schornack, A. Texte-intégral-feechan, C. Anderson et al., Genetic dissection of a TIR-NB-LRR locus from the wild north American grapevine species Muscadinia rotundifolia identifies paralogous genes conferring resistance to major fungal and oomycete pathogens in cultivated grapevine, Oomycete interactions with plants: Infection strategies and resistance principles. Microbiology and Molecular Biology Reviews, vol.79, pp.113-135, 1971.

M. E. Gallegly and M. E. Marvel, Inheritance of resistance to tomato race-0 of Phytophthora infestans, Phytopathology, vol.45, pp.103-109, 1955.

F. Gawehns, B. J. Cornelissen, F. L. Takken, C. Gebhardt, C. Gessler et al., Presence/absence, differential expression and sequence polymorphisms between PiAVR2 and PiAVR2-like in Phytophthora infestans determine virulence on R2 plants, The potential of effector-target genes in breeding for plant innate immunity, vol.6, pp.658-674, 2004.

J. ;. Glazebrook, M. L. Kuhn, L. Vincenot, S. Bernard-samain, L. Cattolico et al., Genome structure impacts molecular evolution at the AvrLm1 avirulence locus of the plant pathogen Leptosphaeria maculans, Canadian Journal of Botany-Revue Canadienne De Botanique, vol.43, issue.12, pp.1377-1386, 1975.

N. J. Grunwald, G. R. Montes, H. L. Saldana, O. A. Covarrubias, and W. E. Fry, Potato late blight management in the Toluca Valley: Field validation of SimCast modified for cultivars with high field resistance, Plant Disease, vol.86, issue.10, pp.1163-1168, 2002.

B. J. Haas, S. Kamoun, M. C. Zody, R. H. Jiang, R. E. Handsaker et al., Competition between Phytophthora infestans effectors leads to increased aggressiveness on plants containing broad-spectrum late blight resistance, Texte intégral Halterman, D.A, vol.461, issue.7262, pp.1666-1670, 2009.

M. T. Hauser, P. M. Boonekamp, R. Hutten, E. Jacobsen, L. A. Lotz et al., Societal costs of late blight in potato and prospects of durable resistance through cisgenic modification, Texte intégral Haverkort, A.J, vol.5, issue.1, pp.249-264, 2008.

J. G. Hawkes, Origins of cultivated potatoes and species relationships, Potato genetics. Wallingford: CAB International, pp.3-42, 1994.

M. C. Heath, G. ;-s.;-di-gaspero, L. Kovacs, S. Howard, E. Kiss et al., Resistance to Erysiphe necator in the grapevine 'Kishmish vatkana' is controlled by a single locus through restriction of hyphal growth, Current Opinion in Plant Biology, vol.3, issue.4, pp.427-438, 2000.

J. Huang, M. L. Yang, X. M. Zhang, J. W. Scott, W. C. Yang et al., Assessment of Solanum hougasii in Washington and Mexico as a source of resistance to late blight, Texte intégral Huet, vol.58, pp.217-228, 1987.

E. Jacobsen, H. J. Schouten, A. K. Asman, P. Corcoran, J. Fogelqvist et al., A Point mutation in the polymerase of potato virus Y confers virulence toward the Pvr4 resistance of pepper and a high competitiveness cost in susceptible cultivar, Molecular Plant-Microbe Interactions, vol.25, issue.5, pp.823-830, 2007.

R. Naerstad, A. Hermansen, T. Bjor, D. G. Neder, C. Pinto et al., In planta expression screens of Phytophthora infestans RXLR effectors reveal diverse phenotypes, including activation of the Solanum bulbocastanum disease resistance protein Rpi-blb2, Texte intégral Olanya, vol.56, pp.409-424, 2007.

L. Parisi, Y. Lespinasse, J. Guillaumes, J. ;. Kruger, S. Foster et al., High-resolution mapping and analysis of the resistance locus Rpi-abpt against Phytophthora infestans in potato, Dissection of foliage and tuber late blight resistance in mapping populations of potato, vol.83, pp.75-83, 1993.

L. Parra, B. Maisonneuve, A. Lebeda, J. Schut, M. Christopoulou et al., Rationalization of genes for resistance to Bremia lactucae in lettuce, Euphytica, vol.210, issue.3, pp.309-326, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01379669

A. Patocchi, A. Frei, J. E. Frey, M. ;. Kellerhals, A. F. Adam-blondon et al., Towards improvement of marker assisted selection of apple scab resistant cultivars: Venturia inaequalis virulence surveys and standardization of molecular marker alleles associated with resistance genes, Theoretical and Applied Genetics, vol.24, issue.4, pp.151-175, 2001.

N. Peeters, A. Guidot, F. Vailleau, and M. Valls, Ralstonia solanacearum, a widespread bacterial plant pathogen in the post-genomic era, Molecular Plant Pathology, vol.14, issue.7, pp.651-662, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02651341

L. C. Peirce, L. Perchepied, D. Leforestier, E. Ravon, P. Guerif et al., Relationships between race-specific and race-non-specific resistance to potato late blight and length of potato vegetation period in various sources of resistance, American Journal of Potato Research, vol.10, issue.10, pp.189-94, 1971.

D. Pushpa, K. N. Yogendra, R. Gunnaiah, A. C. Kushalappa, A. Murphy et al., Current understanding of grapevine defense mechanisms against the biotrophic fungus (Erysiphe necator), the causal agent of powdery mildew disease. Horticulture Research, 2.Texte intégral Quamme, Identification of late blight resistance-related metabolites and genes in potato through nontargeted metabolomics, vol.32, p.130, 2005.

H. Rietman, G. Bijsterbosch, L. M. Cano, H. R. Lee, J. H. Vossen et al., Texte intégral Rivera-Pena, A., 1990. Wild tuber-bearing species of Solanum and incidence of Phytophthora infestans (Mont.) de Bary on the western slopes of the volcano Nevado de Toluca. 5. Type of resistance to P. infestans, Molecular Plant-Microbe Interactions, vol.25, issue.7, pp.740-757, 2002.

B. Rolland, L. Fontaine, A. Mailliard, O. Gardet, E. Heumez et al., From selection to cultivation with the support of all stakeholders: the first registration in France of two winter bread wheat varieties after value for cultivation and use evaluation in organic farming systems, Current Opinion in Biotechnology, vol.7, issue.1, pp.120-125, 2000.
URL : https://hal.archives-ouvertes.fr/hal-01259737

J. Rousseau, S. Chanfreau, M. Rouxel, P. Mestre, A. Baudoin et al., Geographic distribution of cryptic species of Plasmopara viticola causing downy mildew on wild and cultivated grape in Eastern North America, Les cépages résistants aux maladies cryptogamiques -Panorama européen. Groupe ICV, 228, vol.104, pp.457-479, 2000.

K. A. Schneider, M. E. Brothers, J. D. Kelly, A. J. Debets, M. Slakhorst et al., Rpv10: a new locus from the Asian Vitis gene pool for pyramiding downy mildew resistance loci in grapevine, Texte intégral Schoustra, vol.37, pp.421-458, 1997.

J. W. Scott, J. B. Jones, S. F. Hutton, M. Pais, M. Franceschetti et al., Historical introgression of the downy mildew resistance gene Rpv12 from the Asian species Vitis amurensis into grapevine varieties, Texte intégral van Hese, vol.914, pp.1201-1214, 1963.

I. Villette, M. Lateur, B. Lefrancq, P. ;. Lepoivre, R. P. Oliver et al., Genetic mapping and localization of quantitative trait loci affecting fungal disease resistance and leaf morphology in grapevine (Vitis vinifera L), Study of components of partial resistance to scab on a range of apple cultivars, vol.663, pp.693-706, 2000.

K. Won, H. Bastiaanse, Y. K. Kim, J. H. Song, S. S. Kang et al., Genetic mapping of polygenic scab (Venturia pirina) resistance in an interspecific pear family, Molecular Breeding, vol.34, issue.4, pp.2179-2189, 2014.

B. Yang, A. Sugio, and F. F. White, Avoidance of host recognition by alterations in the repetitive and C-terminal regions of AvrXa7, a type III effector of Xanthomonas oryzae pv. oryzae, Molecular Plant-Microbe Interactions, vol.18, issue.2, pp.142-149, 2005.

L. N. Yang, H. Mclellan, S. Naqvi, Q. He, P. C. Boevink et al., Potato NPH3/RPT2-like protein StNRL1, targeted by a Phytophthora infestans RXLR effector, is a susceptibility factor, Texte intégral Yogendra, vol.171, pp.284-298, 2015.

L. P. Zhang, G. Y. Lin, D. Nino-liu, M. R. Foolad, Y. Li et al., QTL analysis of new sources of resistance to Erwinia carotovora ssp atroseptica in potato done by AFLP, RFLP, and resistance-gene-like markers, Texte intégral Zimnoch-Guzowska, vol.12, issue.1, pp.1156-1167, 2000.

A. Boudichevskaia, H. Flachowsky, A. Peil, C. Fischer, F. Dunemann et al., The Vh8 locus of a new gene-for-gene interaction between Venturia inaequalis and the wild apple Malus sieversii is closely linked to the Vh2 locus in Malus pumila R12740-7A, Development of a multiallelic SCAR marker for the scab resistance gene Vr1/Vh4/Vx from R12740-7A apple and its utility for molecular breeding. Tree Genetics & Genomes, vol.2, pp.541-548, 2000.

F. Calenge, A. Faure, M. Goerre, C. Gebhardt, W. E. Van-de-weg et al., Quantitative trait loci (QTL) analysis reveals both broad-spectrum and isolate-specific QTL for scab resistance in an apple progeny challenged with eight isolates of Venturia inaequalis, Texte intégral Calonnec, A, vol.94, issue.4, pp.533-544, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02675316

M. Chevalier, C. Bernard, L. Parisi, C. Audrain, M. Tellier et al., Fine mapping of the Rvi5 (Vm) apple scab resistance locus in the 'Murray' apple genotype, Texte intégral Cova, vol.663, issue.10, p.12, 2004.

P. De-franceschi, V. Cova, S. Tartarini, and L. Dondini, Characterization of a new apple S-RNase allele and its linkage with the Rvi5 gene for scab resistance, Molecular Breeding, vol.36, issue.1, p.11, 2016.

K. Delate, A. Mckern, R. Turnbull, J. Walker, R. Volz et al., Adaptation of a plant pathogen to partial host resistance: Selection for greater aggressiveness in grapevine downy mildew, Texte intégral Delmas, vol.873, pp.709-725, 2010.

F. Delmotte, P. Mestre, C. Schneider, H. H. Kassemeyer, P. Kozma et al., Rapid and multiregional adaptation to host partial resistance in a plant pathogenic oomycete: Evidence from European populations of Plasmopara viticola, the causal agent of grapevine downy mildew, Agriculture Ecosystems & Environment, vol.27, issue.5, pp.627-633, 2010.
URL : https://hal.archives-ouvertes.fr/hal-02632510

F. Dunemann, R. Glass, S. Bartsch, M. A. Eldin, A. Peil et al., Molecular cloning and analysis of apple HcrVf resistance gene paralogs in a collection of related Malus species, Tree Genetics & Genomes, vol.8, issue.5, pp.1095-1109, 2012.

A. Duponcheel, J. Keulemans, P. Cremmers, I. ;. Millet, L. Parisi et al., Reduction of fungicides to control apple scab on a partial resistant cultivar, based on type of chemical, biological and climatological conditions, Texte intégral Durel, vol.595, issue.2, pp.224-234, 2002.

C. E. Durel, L. Parisi, F. Laurens, J. S. Venisse, M. F. Jourjon et al., The fire blight resistance QTL of Malus fusca (Mfu10) is affected but not broken down by the highly virulent Canadian Erwinia amylovora strain E2002A, Does the Vf gene maintain a residual resistance to apple scab despite its breakdown by Venturia inaequalis race 6 strains? Acta Horticulturae, vol.538, pp.149-173, 2000.

M. Fischer, C. Fischer, M. Fischer, M. Geibel, C. Fischer et al., The pillnitz re-series of apple cultivars -Do they hold promise? 80 Years of professional German fruit breeding, Fungal Genetics and Biology, vol.50, issue.2, pp.284-292, 2003.

F. Guerin and B. Le-cam, Breakdown of the scab resistance gene Vf in apple leads to a founder effect in populations of the fungal pathogen Venturia inaequalis, Phytopathology, vol.94, issue.4, pp.364-369, 2004.

C. R. Hampson, C. R. Hampson, H. A. Quamme, P. L. Sholberg, M. Hemmat et al., Yield response, pest damage and fruit quality parameters of scab-resistant and scabsusceptible apple cultivars in integrated and organic production systems, Texte intégral, vol.976, pp.385-389, 2000.

M. Kellerhals, T. Szekely, C. Sauer, J. E. Frey, A. Patocchi et al., An assessment of the durability and susceptibility of scab resistance in apple cultivars, Indian Journal of Biotechnology, vol.51, issue.1, pp.448-454, 2004.

M. A. Khan, C. E. Durel, B. Duffy, D. Drouet, M. Kellerhals et al., Identification and validation of QTLs linked to fire blight resistance in Malus and their applicability in marker-assisted selection, Texte intégral Le Roux, P.M, vol.814, pp.55-64, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02758308

P. M. Le-roux, D. Christen, B. Duffy, S. Tartarini, L. Dondini et al., Screening method for polygenic scab resistance within an apple breeding programme: Relationship between early greenhouse screening test on young seedlings and their scab susceptibility in natural field conditions, Pyrus communis L.). Plant Breeding, vol.131, issue.5, pp.197-200, 2000.

Y. Lespinasse, C. Pinet, L. Parisi, C. Liang, L. Liu et al., The variability of Venturia inaequalis CKE. races in the Czech Republic and the accumulation of resistance genes in apple germplasm, European Journal of Horticultural Science, vol.595, issue.5, pp.65-72, 2002.

P. Mestre, M. C. Piron, D. Merdinoglu, S. Texte-intégral-montanari, L. Perchepied et al., A QTL detected in an interspecific pear population confers stable fire blight resistance across different environments and genetic backgrounds, Identification of effector genes from the phytopathogenic oomycete Plasmopara viticola through the analysis of gene expression in germinated zoospores, vol.116, pp.1065-1080, 2007.

G. Parravicini, C. Gessler, C. Denance, P. Lasserre-zuber, E. Vergne et al., Identification of serine/threonine kinase and nucleotide-binding site-leucine-rich repeat (NBS-LRR) genes in the fire blight resistance quantitative trait locus of apple cultivar 'Evereste', Molecular Plant Pathology, vol.12, issue.5, pp.493-505, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02644596

A. Patocchi, B. Bigler, B. Koller, M. Kellerhals, C. Gessler et al., Towards improvement of marker assisted selection of apple scab resistant cultivars: Venturia inaequalis virulence surveys and standardization of molecular marker alleles associated with resistance genes, ): a new apple scab resistance gene. Theoretical and Applied Genetics, vol.109, pp.1517-1525, 2003.

N. L. Russo, T. L. Robinson, G. Fazio, H. S. Aldwinckle, S. Tartarini et al., Scab (Venturia inaequalis) resistance in apple: the Vf-gene and polygenic resistance in the breeding strategy at DCA -Bologna, Texte intégral Sansavini, vol.92, issue.3, pp.29-32, 2002.

S. Sikorskaite, D. Gelvonauskiene, V. Bendokas, V. Stanys, and D. Baniulis, Malus sp -V-inaequalis interaction characteristics among local apple cultivars in Lithuania, Acta Horticulturae, vol.976, pp.567-572, 2013.

J. M. Soriano, S. G. Joshi, M. Van-kaauwen, Y. Noordijk, R. Groenwold et al., Fine mapping of the gene Rvi18 (V25) for broad-spectrum resistance to apple scab, and development of a linked SSR marker suitable for marker-assisted breeding, Texte intégral Soufflet-Freslon, vol.5, issue.3, p.7, 2004.

I. Villette, M. Lateur, B. Lefrancq, P. Lepoivre, I. Vogt et al., QTL mapping for resistance to fire blight using several Erwinia amylovora strains resulting in different host-pathogen interactions, European Journal of Plant Pathology, vol.663, issue.1, pp.97-104, 2004.

J. E. Bradshaw and G. Ramsay, Utilisation of the commonwealth potato collection in potato breeding, Euphytica, vol.146, issue.1-2, pp.9-19, 2005.

M. Brylinska, I. Tomczynska, H. Jakuczun, I. Wasilewicz-flis, K. Witek et al., Fine mapping of the Rpi-rzc1 gene conferring broad-spectrum resistance to potato late blight, European Journal of Plant Pathology, vol.143, issue.1, pp.193-198, 2015.

C. T. Bull, S. J. Gebben, P. H. Goldman, M. Trent, and R. J. Hayes, Host genotype and hypersensitive reaction influence population levels of Xanthomonas campestris pv. vitians in lettuce, Phytopathology, vol.105, issue.3, pp.316-324, 2015.

M. A. Cadena-hinojosa, M. Diaz-valasis, R. A. Guzman-plazola, S. Fernandez-pavia, and N. J. Grunwald, Late blight resistance of five Mexican potato cultivars in the eastern Sierra of the state of Mexico, American Journal of Potato Research, vol.84, issue.5, pp.385-392, 2007.

A. Carrasco, J. E. Chauvin, B. Trognitz, A. Pawlak, O. Rubio-covarruvias et al., Marker-assisted breeding for disease resistance in potato, Potato Research, vol.52, issue.3, pp.245-248, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02659139

Q. Chen, H. Y. Li, Y. Z. Shi, D. Beasley, B. Bizimungu et al., Development of an effective protoplast fusion system for production of new potatoes with disease and insect resistance using Mexican wild potato species as gene pools, Canadian Journal of Plant Science, vol.88, issue.4, pp.611-619, 2008.

X. M. Chen, Integration of cultivar resistance and fungicide application for control of wheat stripe rust, Canadian Journal of Plant Pathology, vol.36, issue.3, pp.311-326, 2014.

Y. Chen, Z. Y. Liu, and D. A. Halterman, Molecular Determinants of Resistance Activation and Suppression by Phytophthora infestans Effector IPI-O, Plos Pathogens, vol.8, issue.3, p.10, 2012.

J. Chunwongse, C. Chunwongse, L. Black, and P. Hanson, Molecular mapping of the Ph-3 gene for late blight resistance in tomato, Journal of Horticultural Science & Biotechnology, vol.77, issue.3, pp.281-286, 2002.

L. M. Colton, H. I. Groza, S. M. Wielgus, and J. M. Jiang, Marker-assisted selection for the broad-spectrum potato late blight resistance conferred by gene RB derived from a wild potato species, Crop Science, vol.46, issue.2, pp.589-594, 2006.

D. E. Cooke, L. M. Cano, S. Raffaele, R. A. Bain, L. R. Cooke et al., Genome analyses of an aggressive and invasive lineage of the Irish potato famine pathogen, Plos Pathogens, vol.8, issue.10, p.14, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01607590

S. Costanzo, B. J. Christ, and K. G. Haynes, Late blight resistance in a diploid full-sib potato family, Plant Breeding, vol.123, issue.4, pp.377-381, 2004.

A. P. Cruz, V. Ferreira, M. J. Pianzzola, M. I. Siri, N. S. Coll et al., A novel, sensitive method to evaluate potato germplasm for bacterial wilt resistance using a luminescent Ralstonia solanacearum reporter strain, Molecular Plant-Microbe Interactions, vol.27, issue.3, pp.277-285, 2014.

S. Danan, J. E. Chauvin, B. Caromel, J. D. Moal, R. Pelle et al., Fine mapping quantitative resistances to downy mildew in lettuce revealed multiple sub-QTLs with plant stage dependent effects reducing or even promoting the infection, Texte intégral de Souza, vol.119, pp.2995-3007, 2008.

J. Du, E. Verzaux, A. Chaparro-garcia, G. Bijsterbosch, L. C. Keizer et al., Elicitin recognition confers enhanced resistance to Phytophthora infestans in potato, Nature Plants, vol.1, issue.4, p.5, 2015.

H. S. Duarte, L. Zambolim, E. S. Mizubuti, J. G. Padua, J. I. Ribeiro et al., The field resistance of potato cultivars to foliar late blight and its relationship with foliage maturity type and skin type in Brazil, Australasian Plant Pathology, vol.41, issue.2, pp.139-155, 2012.

H. S. Duarte, L. Zambolim, F. A. Rodrigues, P. A. Paul, J. G. Padua et al., Field resistance of potato cultivars to foliar early blight and its relationship with foliage maturity and tuber skin types, Tropical Plant Pathology, vol.39, issue.4, pp.294-306, 2014.

M. L. Feldman, A. B. Andreu, S. Korgan, M. C. Lobato, M. Huarte et al., PLPKI: A novel serine protease inhibitor as a potential biochemical marker involved in horizontal resistance to Phytophthora infestans, Texte intégral Flier, vol.133, issue.2, pp.326-337, 2003.

M. R. Foolad, M. T. Sullenberger, E. W. Ohlson, and B. K. Gugino, Response of accessions within tomato wild species, Solanum pimpinellifolium to late blight, Plant Breeding, vol.133, issue.3, pp.401-411, 2014.

G. A. Forbes, Using host resistance to manage potato late blight with particular reference to developing countries, Potato Research, vol.55, issue.3-4, pp.205-216, 2012.

E. M. Gilroy, S. Breen, S. C. Whisson, J. Squires, I. Hein et al., Presence/absence, differential expression and sequence polymorphisms between PiAVR2 and PiAVR2-like in Phytophthora infestans determine virulence on R2 plants, New Phytologist, vol.191, issue.3, pp.763-776, 2011.

L. D. Giordano, L. S. Boiteux, A. M. Quezado-duval, M. E. Fonseca, F. V. Resende et al., BRS Tospodoro': a high lycopene processing tomato cultivar adapted to organic cropping systems and with multiple resistance to pathogens, Horticultura Brasileira, vol.28, issue.2, pp.241-245, 2010.

N. J. Grunwald, G. R. Montes, H. L. Saldana, O. A. Covarrubias, and W. E. Fry, Potato late blight management in the Toluca Valley: Field validation of SimCast modified for cultivars with high field resistance, Plant Disease, vol.86, issue.10, pp.1163-1168, 2002.

M. G. Guevara, C. Almeida, J. R. Mendieta, C. J. Faro, P. Verissimo et al., Molecular cloning of a potato leaf cDNA encoding an aspartic protease (StAsp) and its expression after P. infestans infection, Plant Physiology and Biochemistry, vol.43, issue.9, pp.882-889, 2005.

Z. R. Hansen, I. M. Small, M. Mutschler, W. E. Fry, and C. D. Smart, Differential susceptibility of 39 tomato varieties to Phytophthora infestans clonal lineage US-23, Plant Disease, vol.98, issue.12, pp.1666-1670, 2014.

K. Harbaoui, W. Hamada, Y. Li, V. Vleeshouwers, and T. Van-der-lee, Increased difficulties to control late blight in Tunisia are caused by a genetically diverse Phytophthora infestans population next to the clonal lineage NA-01, Plant Disease, vol.98, issue.7, pp.898-908, 2014.

S. F. Hutton, J. W. Scott, W. C. Yang, S. C. Sim, D. M. Francis et al., Identification of QTL associated with resistance to bacterial spot race T4 in tomato, Theoretical and Applied Genetics, vol.121, issue.7, pp.1275-1287, 2010.

D. A. Inglis, C. R. Brown, B. G. Gundersen, L. D. Porter, J. S. Miller et al., Assessment of Solanum hougasii in Washington and Mexico as a source of resistance to late blight, American Journal of Potato Research, vol.84, issue.3, pp.217-228, 2007.

M. Jeuken and P. Lindhout, Lactuca saligna, a non-host for lettuce downy mildew (Bremia lactucae), harbors a new race-specific Dm gene and three QTLs for resistance, Theoretical and Applied Genetics, vol.105, issue.2-3, pp.384-391, 2002.

P. Kankwatsa, E. Adipala, J. J. Hakiza, M. Olanya, and H. M. Kidanemariam, Effect of integrating planting time, fungicide application and host resistance on potato late blight development in south-western Uganda, Journal of Phytopathology-Phytopathologische Zeitschrift, vol.150, issue.4-5, pp.248-257, 2002.

S. Kunkeaw, S. Tan, and G. Coaker, Molecular and evolutionary analyses of Pseudomonas syringae pv. tomato Race 1, Molecular Plant-Microbe Interactions, vol.23, issue.4, pp.415-424, 2010.

A. Lebeau, M. C. Daunay, A. Frary, A. Palloix, J. F. Wang et al., Bacterial wilt resistance in tomato, pepper, and eggplant: Genetic resources respond to diverse strains in the Ralstonia solanacearum species complex, Phytopathology, vol.101, issue.1, pp.154-165, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02652195

A. Lebeda, B. Mieslerova, I. Petrzelova, P. Korbelova, and E. Cesnekova, Patterns of virulence variation in the interaction between Lactuca spp. and lettuce powdery mildew (Golovinomyces cichoracearum), Fungal Ecology, vol.5, issue.6, pp.670-682, 2012.

A. Lebeda and V. Zinkernagel, Evolution and distribution of virulence in the German population of Bremia lactucae, Plant Pathology, vol.52, issue.1, pp.41-51, 2003.

C. H. Li, J. Wang, D. H. Chien, E. Chujoy, B. F. Song et al., Cooperation-88: A high yielding, multi-purpose, late blight resistant cultivar growing in Southwest China, American Journal of Potato Research, vol.88, issue.2, pp.190-194, 2011.

G. C. Li, S. W. Huang, X. Guo, Y. Li, Y. Yang et al., Cloning and characterization of R3b; Members of the R3 superfamily of late blight resistance genes show sequence and functional divergence, Molecular Plant-Microbe Interactions, vol.24, issue.10, pp.1132-1142, 2011.

J. M. Li, L. Liu, Y. L. Bai, R. Finkers, F. Wang et al., Identification and mapping of quantitative resistance to late blight (Phytophthora infestans) in Solanum habrochaites LA1777, Euphytica, vol.179, issue.3, pp.427-438, 2011.

Z. Y. Liu and D. Halterman, Different genetic mechanisms control foliar and tuber resistance to Phytophthora infestans in wild potato Solanum verrucosum, American Journal of Potato Research, vol.86, issue.6, pp.476-480, 2009.

Z. Liua and D. Halteman, Identification and characterization of RB-orthologous genes from the late blight resistant wild potato species Solanum verrucosum, Physiological and Molecular Plant Pathology, vol.69, issue.4-6, pp.230-239, 2006.

H. J. Lu, J. G. Hu, and S. J. Kwon, Association analysis of bacterial leaf spot resistance and SNP markers derived from expressed sequence tags (ESTs) in lettuce (Lactuca sativa L.), Molecular Breeding, vol.34, issue.3, pp.997-1006, 2014.

S. Marhadour, R. Pelle, J. M. Abiven, F. Aurousseau, H. Dubreuil et al., Disease progress curve parameters help to characterise the types of resistance to late blight segregating in cultivated potato, Potato Research, vol.56, issue.2, pp.99-114, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01208626

H. L. Merk, H. Ashrafi, and M. R. Foolad, Selective genotyping to identify late blight resistance genes in an accession of the tomato wild species Solanum pimpinellifolium, Euphytica, vol.187, issue.1, pp.63-75, 2012.

Y. Y. Molan, Y. E. Ibrahim, and A. A. Al-masrahi, Identification in saudi arabia of Pseudomonas corrugata, the tomato pith necrosis pathogen, and assessment of cultivar resistance and seed treatment, Journal of Plant Pathology, vol.92, issue.1, pp.213-218, 2010.

J. Montarry, F. M. Hamelin, I. Glais, R. Corbière, and D. Andrivon, Fitness costs associated with unnecessary virulence factors and life history traits: evolutionary insights from the potato late blight pathogen Phytophthora infestans, Bmc Evolutionary Biology, vol.10, p.9, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00729514

T. Mosquera, M. F. Alvarez, J. M. Jimenez-gomez, M. S. Muktar, M. J. Paulo et al., Targeted and untargeted approaches unravel novel candidate genes and diagnostic SNPs for quantitative resistance of the potato (Solanum tuberosum L.) to Phytophthora infestans causing the late blight disease, Plos One, vol.11, issue.6, p.36, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02630873

M. S. Muktar, J. Lubeck, J. Strahwald, and C. Gebhardt, Selection and validation of potato candidate genes for maturity corrected resistance to Phytophthora infestans based on differential expression combined with SNP association and linkage mapping, Frontiers in Genetics, vol.6, p.19, 2015.

R. Naerstad, A. Hermansen, and T. Bjor, Exploiting host resistance to reduce the use of fungicides to control potato late blight, Plant Pathology, vol.56, issue.1, pp.156-166, 2007.

D. G. Neder, C. Pinto, D. S. Melo, A. L. Lepre, and L. D. Peixouto, Selection of potato clones for multiple resistances to early blight, PVY and PVX, Ciencia Rural, vol.40, issue.8, pp.1702-1708, 2010.

B. Nordskog, A. Elameen, D. M. Gadoury, and A. Hermansen, Virulence characteristics of Bremia lactucae populations in Norway, European Journal of Plant Pathology, vol.139, issue.4, pp.679-686, 2014.

T. H. Park, Genetic diversity of resistance to Phytophthora infestans derived from Solanum venturii, Horticulture Environment and Biotechnology, vol.54, issue.5, pp.422-429, 2013.

T. H. Park, S. Foster, G. Brigneti, and J. D. Jones, Two distinct potato late blight resistance genes from Solanum berthaultii are located on chromosome 10, Euphytica, vol.165, issue.2, pp.269-278, 2009.

T. H. Park, V. Vleeshouwers, R. C. Hutten, H. J. Van-eck, E. Van-der-vossen et al., High-resolution mapping and analysis of the resistance locus Rpi-abpt against Phytophthora infestans in potato, Molecular Breeding, vol.16, issue.1, pp.33-43, 2005.

S. L. Phillips, M. W. Shaw, and M. S. Wolfe, The effect of potato variety mixtures on epidemics of late blight in relation to plot size and level of resistance, Annals of Applied Biology, vol.147, issue.3, pp.245-252, 2005.

F. Pilet, G. Chacon, G. A. Forbes, and D. Andrivon, Protection of susceptible potato cultivars against late blight in mixtures increases with decreasing disease pressure, Phytopathology, vol.96, issue.7, pp.777-783, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02661643

F. Pilet, R. Pelle, D. Ellisseche, and D. Andrivon, Efficacy of the R2 resistance gene as a component for the durable management of potato late blight in France, Plant Pathology, vol.54, issue.6, pp.723-732, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02682450

J. Plich, B. Tatarowska, R. Lebecka, J. Sliwka, E. Zimnoch-guzowska et al., R2-like Gene contributes to resistance to Phytophthora infestans in Polish potato cultivar Bzura, American Journal of Potato Research, vol.92, issue.3, pp.350-358, 2015.

J. Plich, B. Tatarowska, D. Milczarek, E. Zimnoch-guzowska, and B. Flis, Relationships between race-specific and race-non-specific resistance to potato late blight and length of potato vegetation period in various sources of resistance, Field Crops Research, vol.196, pp.311-324, 2016.

D. Pushpa, K. N. Yogendra, R. Gunnaiah, A. C. Kushalappa, and A. Murphy, Identification of late blight resistance-related metabolites and genes in potato through nontargeted metabolomics, Plant Molecular Biology Reporter, vol.32, issue.2, pp.584-595, 2014.

H. Rietman, G. Bijsterbosch, L. M. Cano, H. R. Lee, J. H. Vossen et al., Qualitative and quantitative late blight resistance in the potato cultivar Sarpo Mira is determined by the perception of five distinct RXLR effectors, Molecular Plant-Microbe Interactions, vol.25, issue.7, pp.910-919, 2012.

J. M. Sandbrink, L. T. Colon, P. Wolters, and W. J. Stiekema, Two related genotypes of Solanum microdontum carry different segregating alleles for field resistance to Phytophthora infestans, Molecular Breeding, vol.6, issue.2, pp.215-225, 2000.

J. W. Scott, J. B. Jones, and S. F. Hutton, Oblique resistance: the host-pathogen interaction of tomato and the bacterial spot pathogen, Acta Horticulturae, vol.914, pp.441-447, 2011.

M. Sharlach, D. Dahlbeck, L. Liu, J. Chiu, J. M. Jimenez-gomez et al., Fine genetic mapping of RXopJ4, a bacterial spot disease resistance locus from Solanum pennellii LA716, Theoretical and Applied Genetics, vol.126, issue.3, pp.601-609, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01204025

X. Shi, Z. D. Tian, J. Liu, E. A. Van-der-vossen, and C. H. Xie, A potato pathogenesis-related protein gene, StPRp27, contributes to racenonspecific resistance against Phytophthora infestans, Molecular Biology Reports, vol.39, issue.2, pp.1909-1916, 2012.

I. Simko, S. Costanzo, V. Ramanjulu, B. J. Christ, and K. G. Haynes, Mapping polygenes for tuber resistance to late blight in a diploid Solanum phureja x S-stenotomum hybrid population, Plant Breeding, vol.125, issue.4, pp.385-389, 2006.

P. Skelsey, W. A. Rossing, G. J. Kessel, and W. Van-der-werf, Invasion of Phytophthora infestans at the landscape level: How do spatial scale and weather modulate the consequences of spatial heterogeneity in host resistance?, Phytopathology, vol.100, issue.11, pp.1146-1161, 2010.

J. Sliwka, H. Jakuczun, M. Chmielarz, A. Hara-skrzypiec, I. Tomczynska et al., Late blight resistance gene from Solanum ruiz-ceballosii is located on potato chromosome X and linked to violet flower colour, Bmc Genetics, vol.13, p.12, 2012.

C. D. Smart, S. D. Tanksley, H. Mayton, and W. E. Fry, Resistance to Phytophthora infestans in Lycopersicon pennellii, Plant Disease, vol.91, issue.8, pp.1045-1049, 2007.

W. Akram, T. Anjum, and B. Ali, Phenylacetic acid is ISR determinant produced by Bacillus fortis IAGS162, which involves extensive remodulation in metabolomics of tomato to protect against Fusarium wilt, Frontiers in Plant Science, vol.7, issue.8, pp.913-919, 2003.

P. Albersheim, B. S. Valent, R. Reda, V. Tagliavento, P. Magro et al., Synergistic effect of acetyl salicylic acid and DL-Beta-aminobutyric acid on biocontrol efficacy of Bacillus strains against tomato bacterial wilt, Texte intégral Aleandri, vol.78, pp.102-113, 1978.

J. Amini, Induced resistance in tomato plants against Fusarium wilt invoked by nonpathogenic Fusarium, chitosan and Bion, Plant Pathology Journal, vol.25, issue.3, pp.256-262, 2009.

C. C. Andrade, R. S. Resende, F. A. Rodrigues, P. R. Silveira, J. A. Rios et al., Inducers of resistance on the control of tomato bacterial speck and on the activity of defense enzymes, Texte intégral Andreu, A.B, vol.38, issue.1, pp.162-170, 2006.

I. Arnault, A. Furet, A. Kasprick, A. Mançois, M. Chovelon et al., Lutte contre le mildiou. Possibilités de réduction des doses d'intrants avec du fructose, vol.161, pp.46-47, 2016.

M. M. Atia, H. Buchenauer, A. Z. Aly, M. I. Abou-zaid, H. S. Seifi et al., Benzothiadiazole (BTH)-induced resistance against Botrytis cinerea is inversely correlated with vegetative and generative growth in bean and cucumber, but not in tomato, Biological Agriculture & Horticulture, vol.23, issue.2, pp.1118-1128, 2003.

A. Aziz, P. Trotel-aziz, L. Dhuicq, P. Jeandet, M. Couderchet et al., Synergistic interaction between BABA and mancozeb in controlling Phytophthora infestans in potato and tomato and Pseudoperonospora cubensis in cucumber, Texte intégral Badawy, vol.96, pp.106-113, 2000.

D. A. Cambiagno, C. Lonez, J. M. Ruysschaert, M. E. Alvarez, W. B. Jiang et al., Induction of resistance in Yali pear (Pyrus bretschneideri Rehd.) fruit against postharvest diseases by acibenzolar-S-methyl sprays on trees during fruit growth, Molecular Plant Pathology, vol.16, issue.9, pp.31-36, 2006.

Y. Cohen, A. E. Rubin, M. ;. Vaknin, M. Maraschin, R. M. Di-piero et al., Post infection application of DL-3-amino-butyric acid (BABA) induces multiple forms of resistance against Bremia lactucae in lettuce, European Journal of Plant Pathology, vol.130, issue.1, pp.434-441, 2011.

R. V. Diogo, K. Wydra, H. Z. Dong, Y. Cohen, M. C. Dufour et al., Managing Phytophthora crown and root rot on tomato by pre-plant treatments with biocontrol agents, resistance inducers, organic and mineral fertilizers under nursery conditions, Silicon-induced basal resistance in tomato against Ralstonia solanacearum is related to modification of pectic cell wall polysaccharide structure. Physiological and Molecular Plant Pathology, vol.70, pp.151-158, 1996.

M. A. Hassan, H. Buchenauer, R. M. Herrera, G. Virgen-calleros, M. Ruiz-lopez et al., Extracts from green and brown seaweeds protect tomato (Solanum lycopersicum) against the necrotrophic fungus Alternaria solani, Journal of Plant Diseases and Protection, vol.115, issue.5, pp.1607-1614, 2008.

C. H. Huang, G. E. Vallad, S. A. Zhang, A. M. Wen, B. Balogh et al., Effect of application frequency and reduced rates of acibenzolar-S-methyl on the field efficacy of induced resistance against bacterial spot on tomato, Texte intégral Il'inskaya, vol.96, pp.449-455, 2000.

M. Iriti, M. Rossoni, M. Borgo, F. ;. Faoro, J. B. Tolentino et al., Benzothiadiazole enhances resveratrol and anthocyanin biosynthesis in grapevine, meanwhile improving resistance to Botrytis cinerea, Journal of Agricultural and Food Chemistry, vol.52, issue.14, pp.1125-1131, 2004.

J. D. Jones and J. L. Dangl, Specific elicitors of plant phytoalexin production -determinants of race specificity in pathogens, Texte intégral Keen, vol.444, issue.7117, pp.74-75, 1975.

P. Krol, R. Igielski, S. Pollmann, E. ;. Kepczynska, S. M. Sanzani et al., Priming of seeds with methyl jasmonate induced resistance to hemi-biotroph Fusarium oxysporum f.sp lycopersici in tomato via 12-oxo-phytodienoic acid, salicylic acid, and flavonol accumulation, Texte intégral Latorse, vol.179, p.9, 1987.

J. Y. Li, P. Trivedi, N. Wang, E. Texte-intégral-liljeroth, T. Bengtsson et al., Induced resistance in potato to Phytophthora infestans-effects of BABA in greenhouse and field tests with different potato varieties, Field evaluation of plant defense inducers for the control of Citrus Huanglongbing, vol.106, pp.481-488, 2001.

A. J. Maia, C. D. Leite, R. V. Botelho, C. Faria, and D. Machado, Chitosan as an option to control mildew in the sustainable vinegrowing, Semina-Ciencias Agrarias, vol.33, pp.2519-2529, 2012.

M. L. Maldonado, R. E. Falloon, R. C. Butler, A. J. Conner, S. R. Bulman et al., Induced resistance by beta-aminobutyric acid in artichoke against white mould caused by Sclerotinia sclerotiorum, Australasian Plant Pathology, vol.44, issue.4, pp.943-950, 2008.

A. Mazzucchi and A. Brunelli, Resistance to Erwinia amylovora in immature pears induced by acibenzolar-S-methyl in the orchard, Phytopathologia Mediterranea, vol.47, issue.3, pp.272-276, 2008.

J. P. Metraux, H. Signer, J. Ryals, E. Ward, M. Wyssbenz et al., Increase in salicylic-acid at the onset of systemic acquired-resistance in cucumber, Science, vol.250, issue.4983, pp.1004-1006, 1990.

N. Mohamed, J. Lherminier, M. J. Farmer, J. Fromentin, N. Beno et al., Defense responses in grapevine leaves against Botrytis cinerea induced by application of a Pythium oligandrum strain or its elicitin, oligandrin, to roots, European Journal of Plant Pathology, vol.97, issue.5, pp.117-124, 2007.
URL : https://hal.archives-ouvertes.fr/hal-02668560

M. S. Monjil, T. Nozawa, Y. Shibata, D. Takemoto, M. Ojika et al., An ethoxylated surfactant enhances the penetration of the sulfated laminarin through leaf cuticle and stomata, leading to increased induced resistance against grapevine downy mildew, Induction of systemic resistance against Plasmopara viticola in grapevine by Trichoderma harzianum T39 and benzothiadiazole, vol.338, pp.74-82, 2000.

G. C. Percival, K. Noviss, I. ;. Haynes, M. L. De-resende, A. C. Monteiro et al., Field evaluation of systemic inducing resistance chemicals at different growth stages for the control of apple (Venturia inaequalis) and pear (Venturia pirina) scab, Pesquisa Agropecuaria Brasileira, vol.28, issue.8, pp.125-133, 2000.

P. D. Roberts, M. T. Momol, L. Ritchie, S. M. Olson, J. B. Jones et al., Evaluation of spray programs containing famoxadone plus cymoxanil, acibenzolar-S-methyl, and Bacillus subtilis compared to copper sprays for management of bacterial spot on tomato, Texte intégral Romanazzi, vol.27, issue.12, pp.785-791, 2008.

L. Sanchez, B. Courteaux, J. Hubert, S. Kauffmann, J. H. Renault et al., Rhamnolipids elicit defense responses and induce disease resistance against biotrophic, hemibiotrophic, and necrotrophic pathogens that require different signaling pathways in Arabidopsis and highlight a central role for salicylic acid, Pseudomonas Syringae and Related Pathogens: Biology and Genetics, vol.160, pp.483-487, 2003.
URL : https://hal.archives-ouvertes.fr/hal-01968723

R. G. Sharathchandra, S. N. Raj, N. P. Shetty, K. N. Amruthesh, H. S. Shetty et al., Foliar spray of a cell wall protein fraction from the biocontrol agent Pythium oligandrum induces defencerelated genes and increases resistance against Cercospora leaf spot in sugar beet, A Chitosan formulation Elexa TM induces downy mildew disease resistance and growth promotion in pearl millet, vol.23, pp.357-369, 2002.

B. Thuerig, A. Binder, T. Boller, U. Guyer, S. Jimenez et al., A beta-1,3 glucan sulfate induces resistance in grapevine against Plasmopara viticola through priming of defense responses, including HR-like cell death, Molecular Plant-Microbe Interactions, vol.114, issue.2, pp.243-249, 2003.

F. Val, S. Desender, K. Bernard, P. Potin, G. Hamelin et al., Plant foliar disease suppression mediated by composted forms of paper mill residuals exhibits molecular features of induced resistance. Physiological and Molecular Plant Pathology, Texte intégral Vergnes, vol.98, issue.6, pp.45-52, 2003.

D. R. Walters, N. D. Havis, L. Paterson, J. Taylor, D. J. Walsh et al., Effects of benzothiadiazole on disease resistance and soluble sugar accumulation in grape berries and its possible cellular mechanisms involved, Postharvest Biology and Technology, vol.5, issue.9, pp.1143-1149, 2012.

Y. L. Wang, B. Li, X. Chen, Y. Shi, Q. Zhou et al., Mutual relations between jasmonic acid and acibenzolar-S-methyl in the induction of resistance to fire blight in apple trees, Journal of Food Agriculture & Environment, vol.10, issue.3-4, pp.99-108, 2012.

D. Worrall, G. H. Holroyd, J. P. Moore, M. Glowacz, P. Croft et al., Methyl jasmonate treatment of mature Norway spruce (Picea abies) trees increases the accumulation of terpenoid resin components and protects against infection by Ceratocystis polonica, a bark beetle-associated fungus, Texte intégral Références bibliographiques citées, vol.193, pp.61-69, 2005.

M. Berger, Expérimentation d'isothérapiques en culture maraîchère, Texte intégral Blondiaux, vol.228, pp.20-24, 2007.

L. Chalker-scott, M. Texte-intégral-giannattasio, E. Vendramin, F. Fornasier, S. Alberghini et al., Microbiological features and bioactivity of a fermented manure product (preparation 500) used in biodynamic agriculture, The science behind biodynamic preparations: A literature review, vol.23, pp.173-187, 1994.

T. A. Modolon, P. Boff, M. I. Boff, and D. J. Miquelluti, Homeopathic and high dilution preparations for pest management to tomato crop under organic production system. Horticultura Brasileira, Texte intégral Références bibliographiques citées, vol.30, pp.1-32, 1998.

P. Barbieri and S. Bocchi, Analysis of the alternative agriculture's seeds market sector: History and development, Journal of Agricultural & Environmental Ethics, vol.28, issue.4, pp.789-801, 2015.

C. Bellevaux, Pas de litière pour la tavelure en hiver. Le broyage réduit le stock d'ascospores. Réussir Fruits et Légumes, vol.302, pp.40-41, 2011.

S. Boquel, J. H. Zhang, and X. Z. Nie, How long can rogued potato plants left in the field be a source of potato virus Y for aphids?, American Journal of Potato Research, vol.94, issue.1, pp.81-87, 2017.

L. Brun, C. Gomez, and E. Dumont, Prophylaxie contre la tavelure du pommier. Phytoma -La défense des végétaux, vol.581, pp.16-18, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02672681

S. Buchleither, A. Bohr, T. Arnegger, and U. Mayr, Effects of beetroot vinasse on ascospore formation and infestation of Venturia inaequalis in organic apple orchards, Proceedings of the 17. International conference on organic fruit-growing 'eco.fruit, pp.154-158, 2016.

O. Carisse, V. Philion, D. Rolland, and J. Bernier, Effect of fall application of fungal antagonists on spring ascospore production of the apple scab pathogen, Venturia inaequalis, Phytopathology, vol.90, issue.1, pp.31-37, 2000.

R. J. Cook, Diseases caused by root-infecting pathogens in dryland agriculture, Annual Review of Phytopathology, vol.13, pp.95-116, 1990.

R. D. Davidson, A. J. Houser, K. Sather, and R. Haslar, Controlling PVY in seed: What works and what does not, American Journal of Potato Research, vol.90, issue.1, pp.28-32, 2013.

J. A. Davis, E. B. Radcliffe, and D. W. Ragsdale, Planter skips and impaired stand favors potato virus Y spread in potato, American Journal of Potato Research, vol.86, issue.3, pp.203-208, 2009.

T. Dias, A. Dukes, and P. M. Antunes, Accounting for soil biotic effects on soil health and crop productivity in the design of crop rotations, Journal of the Science of Food and Agriculture, vol.95, issue.3, pp.447-454, 2015.

S. Gaba, F. Lescourret, S. Boudsocq, J. Enjalbert, P. Hinsinger et al., Multiple cropping systems as drivers for providing multiple ecosystem services: from concepts to design, Agronomy for Sustainable Development, vol.35, issue.2, pp.607-623, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01173332

M. Giraud, Compte rendu de réunion. Groupe de Travail National Tavelure: Ctifl, vol.8, 2008.

C. Gomez, L. Brun, D. Chauffour, and D. D. Le-vallee, Effect of leaf litter management on scab development in an organic apple orchard, Agriculture Ecosystems & Environment, vol.118, issue.1-4, pp.249-255, 2007.
URL : https://hal.archives-ouvertes.fr/hal-02665707

I. J. Holb, Effect of four non-chemical sanitation treatments on leaf infection by Venturia inaequalis in organic apple orchards, European Journal of Horticultural Science, vol.72, issue.2, pp.60-65, 2007.

I. J. Holb, Fungal disease management in environmentally friendly apple production -A Review, pp.219-292, 2009.

I. J. Holb, B. Heijne, and M. J. Jeger, Overwintering of conidia of Venturia inaequalis and the contribution to early epidemics of apple scab, Plant Disease, vol.88, issue.7, pp.751-757, 2004.

I. J. Holb and G. Schnabel, Effect of fungicide treatments and sanitation practices on brown rot blossom blight incidence, phytotoxicity, and yield for organic sour cherry production, Policy brief: How governments can support participatory guarantee system (PGS), vol.89, pp.1164-1170, 2005.

N. Ioannou, Production of seed potatoes in Cyprus: the effects of roguing and planting date on the spread of potato leaf roll virus, tuber yield, and infestation by potato tuber moth, Potato Research, vol.32, issue.3, pp.331-339, 1989.

L. Jamar, S. Oste, L. Tournant, K. Wateau, and M. Lateur, Effet de la gestion des litières de feuilles en automne sur le développement de la tavelure du pommier en verger biologique. 4. Conférence internationale sur les méthodes alternatives en protection des cultures. Evolution des cadres réglementaires européen et français, Nouveaux moyens et stratégies innovantes, nouveau Siècle, pp.568-573, 2011.

J. D. Janse, Review on brown rot (Ralstonia solanacearum race 3, biovar 2, phylotype IIB) epidemiology and control in the Netherlands since 1995: a success story of integrated pest management, Journal of Plant Pathology, vol.94, issue.2, pp.257-272, 2012.

B. Loquet, C. Coureau, and W. Couanon, Méthodes prophylactiques de lutte contre la tavelure du pommier. Eléments de méthodologie et résultats d'essai, Infos Ctifl, vol.254, pp.14-19, 2009.

W. E. Machardy, Apple Scab: Biology, epidemiology, and management. The American Phytopathology Society, vol.545, p.p, 1996.

D. C. Mcgee, Epidemiologic approach to disease management through seed technology, Annual Review of Phytopathology, vol.33, pp.445-466, 1995.

M. Olle, A. Tsahkna, T. Tahtjarv, and I. H. Williams, Plant protection for organically grown potatoes -a review, Biological Agriculture & Horticulture, vol.31, issue.3, pp.147-157, 2015.

C. Parveaud, C. Gomez, C. Gros, P. Asencio, D. De-le-vallée et al., Is leaf litter removal more efficient than leaf litter shredding to control apple scab ? An answer in a commercial organic orchard, Proceedings of the 4th ISOFAR Scientific Conference, pp.275-278, 2014.

I. Pertot, T. Caffi, V. Rossi, L. Mugnai, C. Hoffmann et al., A critical review of plant protection tools for reducing pesticide use on grapevine and new perspectives for the implementation of IPM in viticulture, Crop Protection, vol.97, pp.70-84, 2017.
URL : https://hal.archives-ouvertes.fr/hal-02628891

J. S. Popp and H. Scherm, IPM practices of southern states peach producers in the USA, Acta Horticulturae, vol.592, pp.717-724, 2002.

D. K. Roget, N. R. Venn, and A. D. Rovira, Reduction of Rhizoctonia root-rot of direct drilled wheat by short-term chemical fallow, Australian Journal of Experimental Agriculture, vol.27, issue.3, pp.425-430, 1987.

V. Rossi and T. Caffi, The role of rain in dispersal of the primary inoculum of Plasmopara viticola, Phytopathology, vol.102, issue.2, pp.158-165, 2012.

A. Rumbou and C. Gessler, Greek epidemics of grapevine downy mildew are driven by local oosporic inoculum: a population biology approach, Journal of Biological Research-Thessaloniki, vol.7, pp.3-18, 2007.

N. Sauvion, G. Thébaud, V. Marie-jeanne, J. Peyre, L. Brun et al., Enroulement chlorotique de l'abricotier (ECA). Phytoma -La défense des végétaux, vol.654, pp.28-32, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01506228

, Senura -Station d'Expérimentation Nucicole Rhône-Alpes, 2005. L'anthracnose du noyer. 6 p.Texte intégral

M. S. Sisterson and D. C. Stenger, Roguing with replacement in perennial crops: Conditions for successful disease management, Phytopathology, vol.103, issue.2, pp.117-128, 2013.

D. K. Sutton, W. E. Machardy, and W. G. Lord, Effects of shredding or treating apple leaf litter with urea on ascospore dose of Venturia inaequalis and disease buildup, Plant Disease, vol.84, issue.12, pp.1319-1326, 2000.

R. S. Tegg and C. R. Wilson, QPCR testing seed potato tubers for pathogens -what value for potato seed certification?, Acta Horticulturae, vol.1118, pp.117-123, 2016.

S. Thomas-sharma, A. Abdurahman, S. Ali, J. L. Andrade-piedra, S. Bao et al., Seed degeneration in potato: the need for an integrated seed health strategy to mitigate the problem in developing countries, Plant Pathology, vol.65, issue.1, pp.3-16, 2016.

L. Tsror, O. Erlich, M. Hazanovsky, B. Ben-daniel, U. Zig et al., Detection of Dickeya spp. latent infection in potato seed tubers using PCR or ELISA and correlation with disease incidence in commercial field crops under hot-climate conditions, Plant Pathology, vol.61, issue.1, pp.161-168, 2012.

A. Vercesi, S. L. Toffolatti, G. Zocchi, R. Guglielmann, and L. Ironi, A new approach to modelling the dynamics of oospore germination in Plasmopara viticola, European Journal of Plant Pathology, vol.128, issue.1, pp.113-126, 2010.

C. Vincent, B. Rancourt, and O. Carisse, Apple leaf shredding as a non-chemical tool to manage apple scab and spotted tentiform leafminer, Agriculture Ecosystems & Environment, vol.104, issue.3, pp.595-604, 2004.

A. Wezel, M. Casagrande, F. Celette, J. F. Vian, A. Ferrer et al., Agroecological practices for sustainable agriculture. A review. Agronomy for Sustainable Development, vol.34, pp.1-20, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01234800

M. S. Wolfe, J. P. Baresel, D. Desclaux, I. Goldringer, S. Hoad et al., Developments in breeding cereals for organic agriculture, Texte intégral Références bibliographiques citées, vol.163, pp.323-346, 2008.
URL : https://hal.archives-ouvertes.fr/hal-02668092

M. Arregui, Protection de la cerise contre l'éclatement: les couvertures anti-pluie, où en est-on? : Serfel, 34 p. Texte intégral Arregui, vol.227, pp.60-61, 2003.

M. Bertelsen, H. ;. Lindhard-pedersen, A. ;. Stensvand, J. G. Bel, G. Clauzel et al., Effets des bâches anti-pluie sur le développement des bioagresseurs de l'abricotier -Résultats, Preliminary results show rain roofs to have remarkable effect on diseases of apples. Proceedings of the 16. International Conference on Organic Fruit-Growing 'eco.fruit, vol.87, pp.30-36, 1974.

A. M. Detoni, E. Clemente, C. ;. Fornari, W. Deng, M. Yang et al., Comparaison de systèmes de conduite en verger de pommiers : intérêts d'une protection physique sans traitements phytosanitaires, Journées Techniques Légumes & Cultures pérennes Biologiques, vol.29, pp.16-20, 2007.

F. Masson, Protéger ses cerises. Voen a le vent en poupe. L'arboriculture fruitière, vol.659, pp.26-27, 2011.

F. Masson, Protection des cerises. Premières couvertures Voen en France. L'arboriculture fruitière, vol.667, pp.31-32, 2012.

F. Masson, P. F. Ning, T. F. Xu, and Z. W. Zhang, Effect of rain-shelter Cultivation of Vitis vinifera cv. cabernet gernischet on the phenolic profile of berry skins and the incidence of grape diseases, Des bâches anti-pluie pour lutter contre PSA. Médiafel -Newsletter du 10/07/2014.Texte intégral Meng, vol.18, pp.381-397, 2013.

P. ;. Mitham, A. Gamliel, M. R. Finckh, C. K. Chandler, J. F. Price et al., Comparison of epidemics of Botrytis fruit rot and powdery mildew of strawberry in large plastic tunnel and field production systems, Texte intégral Terres et Territoires, 2017. Mildiou, vol.72, pp.901-909, 2001.

S. Y. Yu, C. Y. Liu, C. H. Liang, C. Q. Zang, L. Liu et al., Réduction d'emploi des produits phytosanitaires. Couvrir les pommiers avec une bâche anti-pluie, Journal of Phytopathology, vol.165, issue.5, pp.48-54, 2016.

M. J. Zwankhuizen, F. Govers, J. C. Zadoks, and . Mundt, D'autres essais menés aux Etats-Unis ont pu également montrer une efficacité des associations variétales contre le mildiou, efficacité d'autant plus grande que l'infection initiale était focale plutôt que généralisée, European Journal of Plant Pathology, vol.106, issue.7, 1996.

. Pilet, Il serait intéressant d'évaluer les mélanges variétaux, en agriculture biologique, associés 'obtenir des niveaux d'efficacité intéressants, 2003.

D. Andrivon, C. Giorgetti, A. Baranger, A. Calonnec, P. Cartolaro et al., Development of natural late blight epidemics in pure and mixed plots of potato cultivars with different levels of partial resistance, European Journal of Plant Pathology, vol.135, issue.3, pp.59-64, 1969.

J. J. Burdon, J. S. Zhan, L. G. Barrett, J. Papaix, P. H. Thrall et al., Sustainable management of scab control through the integration of apple resistant cultivars in a low-fungicide input system, Agriculture Ecosystems & Environment, vol.106, issue.10, pp.526-533, 2007.

M. Edin, J. Lichou, P. Luneau, P. Soing, M. Lefèvre et al., La bactériose de l'abricotier, vol.40, 2000.

K. A. Garrett, C. C. Mundt, M. E. Nelson, G. G. Grove, W. F. Mahaffee et al., Host diversity can reduce potato late blight severity for focal and general patterns of primary inoculum, Texte intégral Giorgetti, C, vol.90, issue.12, pp.1343-1351, 2000.

I. J. Holb, Effect of pruning on apple scab in organic apple production, Plant Disease, vol.89, issue.6, pp.611-618, 2005.

I. J. Holb, B. Le-cam, and V. Caffier, Timing of first and final sprays against apple scab combined with leaf removal and pruning in organic apple production, European Journal of Horticultural Science, vol.72, issue.2, pp.621-630, 2007.

C. Loyce, J. M. Meynard, C. Bouchard, B. Rolland, P. Lonnet et al., Growing winter wheat cultivars under different management intensities in France: A multicriteria assessment based on economic, energetic and environmental indicators, Annual Review of Phytopathology, vol.125, issue.2, pp.1133-1141, 1996.
URL : https://hal.archives-ouvertes.fr/hal-01004226

A. Patocchi, A. Frei, J. E. Frey, M. S. Kellerhals, M. W. Shaw et al., Towards improvement of marker assisted selection of apple scab resistant cultivars: Venturia inaequalis virulence surveys and standardization of molecular marker alleles associated with resistance genes, Annals of Applied Biology, vol.24, issue.4, pp.777-783, 2005.

J. P. Prunier, J. P. Jullian, R. Minodier, and G. Clauzel, L'Abricotier. Une stratégie pour éviter les dégâts du chancre bactérien, INRA mensuel, vol.123, pp.18-21, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02680824

A. Ratnadass, P. Fernandes, J. Avelino, and R. Habib, Plant species diversity for sustainable management of crop pests and diseases in agroecosystems: a review. Agronomy for Sustainable Development, Texte intégral Rodewald, J, vol.32, issue.1, pp.740-757, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00930491

B. Rolland, L. Fontaine, A. Mailliard, O. Gardet, E. Heumez et al., From selection to cultivation with the support of all stakeholders: The first registration in France of two winter bread wheat varieties after value for cultivation and use evaluation in organic farming systems, Organic Agriculture, vol.7, issue.1, pp.73-81, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01259737

S. Simon, P. E. Lauri, L. Brun, H. Defrance, B. Sauphanor et al., Invasion of Phytophthora infestans at the landscape level: How do spatial scale and weather modulate the consequences of spatial heterogeneity in host resistance?, Journal of Horticultural Science & Biotechnology, vol.81, issue.4, pp.1146-1161, 2006.

J. B. Smithson, J. M. Lenne, D. D. Stuthman, K. J. Leonard, J. Miller-garvin et al., Powdery mildew development is positively influenced by grapevine vegetative growth induced by different soil management strategies, GM potato late blight R gene differential set for virulence monitoring of Phytophthora infestans, vol.128, pp.219-234, 1996.

C. Gary, L. Brun, D. Andrivon, O. Coptimizer, and ;. Kuflik, Ils montrent en général une efficacité quelquefois égale, Europe, 2001.

. Dagostin, L'efficacité de ces produits de substitution semble améliorée quand ils sont associés à des doses réduites de cuivre, 2011.

A. , et les bénéfices attendus d'une réduction forte de l'emploi des pesticides synthétiques, 2013.

. Andrivon, 'utilisation, seule ou en interaction avec d'autres leviers (densité de plantation, associations variétales, et quelques pratiques agronomiques telles que la gestion des dates de plantation et du niveau de fertilisation azotée, pp.500-503, 2000.

, Par ailleurs, la gestion du mildiou n'est manifestement pas le seul facteur de performance de certaines de ces stratégies de conduite : le choix variétal n'influe par exemple pas que sur la sensibilité au parasite, mais aussi sur le potentiel de rendement, voire sur la valeur commerciale du produit ; de même, certaines interventions inefficaces contre le mildiou dans ces essais ont pu procurer un bénéfice contre d'autres maladies (Alternaria), voire d'autres stress, Il convient cependant de noter que cette performance est très hétérogène selon les stratégies et/ou les lieux, effets indissociables ici : elle semble globalement meilleure dans les zones océaniques et tempérées, 2009.

D. ;. Andrivon, J. M. Lucas, D. ;. Ellisseche, P. Mouron, E. Dolega et al., Development of natural late blight epidemics in pure and mixed plots of potato cultivars with different levels of partial resistance, Plantes, parasites et pathologistes : de la compréhension des interactions à la gestion durable des résistances. Cahiers Agricultures, vol.18, pp.40-45, 2003.

S. Dagostin, H. J. Scharer, I. Pertot, and L. Tamm, Are there alternatives to copper for controlling grapevine downy mildew in organic viticulture? Crop Protection, vol.30, pp.776-788, 2011.

L. Delière, P. Cartolaro, B. Leger, O. ;. Naud, V. Caffier et al., Field evaluation of an expertise-based formal decision system for fungicide management of grapevine downy and powdery mildews, Agriculture Ecosystems & Environment, vol.71, issue.9, pp.41-48, 2015.

K. A. Garrett and C. C. Mundt, Host diversity can reduce potato late blight severity for focal and general patterns of primary inoculum, Phytopathology, vol.90, issue.12, pp.1307-1312, 2000.

K. A. Garrett, R. J. Nelson, C. C. Mundt, G. Chacon, R. E. Jaramillo et al., Blight-MOP: Development of a systems approach for the management of late blight (caused by Phytophthora infestans) in EU organic potato production, Canadian Journal of Plant Pathology-Revue Canadienne De Phytopathologie, vol.91, issue.10, pp.141-148, 2001.

M. Olle, A. Tsahkna, T. Tahtjarv, I. H. Williams, P. K. Andrews et al., Protection of susceptible potato cultivars against late blight in mixtures increases with decreasing disease pressure, Plant protection for organically grown potatoes -a review. Biological Agriculture & Horticulture, vol.31, pp.541-555, 2001.

V. Ainsi, ;. Baret, and . Estevez, s'attachent à démontrer que les déterminants de l'innovation pour les chercheurs, c'est-à-dire les facteurs qui déterminent leurs choix d'activités de recherche, sont très souvent orientés du modèle ESR (Efficacité, Substitution, Rupture) d'innovation proposé par Hill (1985) au détriment des autres modes d'innovation, montre rapidement ses limites, 2000.

, Références bibliographiques citées

D. ;. Andrivon, C. Giorgetti, A. Baranger, A. Calonnec, P. Cartolaro et al., Defining and designing plant architectural ideotypes to control epidemics?, Plantes, parasites et pathologistes : de la compréhension des interactions à la gestion durable des résistances. Cahiers Agricultures, vol.18, pp.159-180, 2009.
URL : https://hal.archives-ouvertes.fr/hal-01000341

A. M. Dumont, G. Vanloqueren, P. M. Stassart, P. V. Baret, G. Domon et al., Le modèle ESR (efficacité-substitution-reconceptualisation), un modèle d'analyse pour l'évaluation de l'agriculture durable applicable à l'évaluation de la stratégie phytosanitaire au Québec, Clarifying the socioeconomic dimensions of agroecology: between principles and practices. Agroecology and Sustainable Food Systems, vol.40, pp.89-99, 1985.

K. Lange, A. ;. Levert, H. ;. Jeannerat, J. De-wit, L. Janmaat et al., Understanding obstacles and opportunities for successful market introduction of crop varieties with resistance against major diseases. Organic Agriculture, sous presse.Texte intégral Nuijten, Concepts and strategies of organic plant breeding in light of novel breeding techniques. Sustainability, vol.7, p.19, 2009.

D. Pacifico, R. Paris, L. Fontaine, A. Mailliard, O. Gardet et al., From selection to cultivation with the support of all stakeholders: the first registration in France of two winter bread wheat varieties after value for cultivation and use evaluation in organic farming systems, Texte intégral Rolland, B, vol.8, issue.10, pp.73-81, 2001.

R. P. Singh, P. K. Singh, J. Rutkoski, D. P. Hodson, X. Y. He et al., Texte intégral Vf » dans les zones où celle-ci est contournée par le pathogène), l'utilisation de protection physique apparaît indispensable (bâches anti-pluie), Texte intégral Tiemens, vol.54, pp.352-362, 2008.

. Enfin, efficacité durable) rigoureuse, en particulier des plants autoproduits sans certification, devrait pallier ce manque d'efficacité, mais reste vulnérable à la fragilité de la plupart des résistances variétales très efficaces. Dès lors, un scénario 'zéro cuivre durable' renforçant cette résistance par d'autres mécanismes (architecture défavorable à l'infection, mélanges variétaux

, La langue française étant un critère nécessaire pour la qualification des experts, seuls les auteurs travaillant au sein d'institutions francophones ont été retenus. Les documentalistes ont alors établi une liste des principaux auteurs et fourni divers indicateurs (nombre de publications, discipline de l'auteur définie par des mots-clés

, Aussi, lors de la première réunion plénière de l'ESCo en avril 2016, il a été décidé de : ? se focaliser sur la période de publication 2000-2016, ? restreindre les corpus aux publications relatives aux cultures bénéficiant aujourd'hui de l'homologation d'au moins un produit contenant du cuivre (traitements aériens ou de semences), ont généré des corpus avec un volume trop important de références

, INRA n'ayant pas renouvelé son abonnement aux CAB abstract en 2016. L'interrogation du WoS a porté sur le champ "Topic, Les corpus documentaires ont été construits à partir de requêtes uniquement dans le WoS

, A ce niveau, les corpus générés présentaient un volume de références trop important et, de plus, des références jugées non pertinentes par les experts. En effet, la recherche sur le champ "Topic" du WoS engendre des résultats parasites dus au fait que certaines publications ne comportent les termes des équations de recherche que dans le champ Keyword plus, Le catalogue des produits phytopharmaceutiques et de leurs usages, des matières fertilisantes et des supports de culture autorisés en France

, De plus, une équation "cultures" est construite sur la base des cultures bénéficiant aujourd'hui de l'homologation d'au moins un produit contenant du cuivre, 2016.

, * OR Cu) AND ("organic farm*" OR "organic agricultur*" OR "organic culture*" OR "sustainable agricultur*" OR "organic pratice*" OR "sustainable management*")) OR ((sanitation* OR "cultivar mixture*" OR "anti-rain sheet*") AND (bacteri* OR fungus OR fungi OR, ? Conduite des couverts -Systèmes de culture TS=

. Ts=, OR "bio-fumigation*" OR "biofungicide*" OR "biopesticide*" OR "bioprotective agent*" OR "bioprotector effect*" OR "defen?e hormone*" OR "eliciting induced resistance*" OR "green leaf volatile*" OR "volatile organic compound*" OR "induce defen?e reaction*" OR "induced plant disease resistance*" OR "induced resistance*" OR "induced systemic resistance*" OR "induction of resistance*" OR "integrated pest management*" OR "microbial control*" OR "mycoparasitic fung*" OR "natural control*" OR "plant resistance inducer*" OR "plant defen?e inducer*" OR "soil suppressiveness" OR "systemic acquired resistance*" OR "plant defen?e activator*" OR "plant defen?e elicitor*" OR (priming AND, activation of defen?e mechanism*" OR "application of natural substance*" OR "beneficial organism*" OR "bacterial antagonist*" OR "bio-fumigant*" OR "biofumigant*" OR "biofumigation*

O. R. Phytophthora and . Bremia, OR Monilia OR Monilinia OR "late blight" OR Pseudomonas OR Xanthomonas OR Coryneum OR Fusicoccum OR "sooty blotch" OR "fly speck" OR "black rot, OR rust) ? Cultures

, Citroncirus webberi" OR ((Orange OR Oranges) NOT "methyl orange") OR Prunus OR "Prune fruit" OR "Prune fruits" OR "Prune tree" OR "Prune trees" OR Plum OR Plums OR Peach OR Peaches OR Nectarine OR Nectarines OR Cherries OR Cherry OR Amygdalus OR Almond OR Almonds OR Apricot OR Apricots OR Armeniaca OR Corylus OR Walnut OR Walnuts OR Nut OR Nuts OR Hazelnut* OR Hazel OR Hazels OR Olive OR Olives OR Olea OR "Humulus lupulus" OR Hop OR Grape OR Grapes OR Grapevine OR Grapevines OR "Vitis vinifera" OR ((seed OR seeds) AND ("secale cereale, TS=(beet OR Beets OR "Beta vulgaris" OR Chard OR Chards OR Cabbage OR Cabbages OR Kohlrabi OR Cauliflower OR Cauliflowers OR Turnip OR Turnips OR Broccoli OR Broccolis OR "Brassica oleracea" OR "Brassica rapa, vol.100, pp.1951-1989, 1999.

. 80%-100%, , 2008.