Pathogenic fungi

Scientific papers

   
Albertini, C., Gredt, M., & Leroux, P. (1999). Mutations of the beta-tubulin gene associated with different phenotypes of benzimidazole resistance in the cereal eyespot fungi Tapesia yallundae and Tapesia acuformis. Pesticide Biochemistry and Physiology, 64(1), 17-31.
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Albertini, C., Gredt, M., & Leroux, P. (2003). Polymorphism of 14 alpha-demethylase gene (CYP51) in the cereal eyespot fungi Tapesia acuformis and Tapesia yallundae. European Journal of Plant Pathology, 109(2), 117-128.
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Albertini, C., & Leroux, P. (2004). A Botrytis cinerea putative 3-keto reductase gene (ERG27) that is homologous to the mammalian 17 beta-hydroxysteroid dehydrogenase type 7 gene (17 beta-HSD7). European Journal of Plant Pathology, 110(7), 723-733.
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Albourie, J. M., Tourvieille, J., & Tourvieille de Labrouhe, D. (1998). Resistance to metalaxyl in isolates of the sunflower pathogen Plasmopara halstedii. European Journal of Plant Pathology, 104(3), 235-242.
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Allard, C., Bill, L., & Touraud, G. (1993). Ascochyta spp - Review of the literature and synthesis. Agronomie, 13(1), 5-24.
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Avenot, H., Simoneau, P., Iacomi-Vasilescu, B., & Bataille-Simoneau, N. (2005). Characterization of mutations in the two-component histidine kinase gene AbNIK1 from Alternaria brassicicola that confer high dicarboximide and phenylpyrrole resistance. Current Genetics, 47(4), 234-243.
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Billard, A., Fillinger, S., Leroux, P., Lachaise, H., Beffa, R., & Debieu, D. (2012). Strong resistance to the fungicide fenhexamid entails a fitness cost in Botrytis cinerea, as shown by comparisons of isogenic strains. Pest Management Science, 68(5), 684-691.
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Blum, M., Waldner, M., & Gisi, U. (2010). A single point mutation in the novel PvCesA3 gene confers resistance to the carboxylic acid amide fungicide mandipropamid in Plasmopara viticola. Fungal Genetics and Biology, 47(6), 499-510.
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Brunner, P. C., Stefansson, T. S., Fountaine, J., Richina, V., & McDonald, B. A. (2016). A Global analysis of CYP51 diversity and azole sensitivity in Rhynchosporium commune. Phytopathology, 106(4), 355-361.
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Chen, W. J., Delmotte, F., Richard-Cervera, S., Douence, L., Greif, C., & Corio-Costet, M. F. (2007). At least two origins of fungicide resistance in grapevine downy mildew populations. Applied and Environmental Microbiology, 73(16), 5162-5172.
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Crute, I. R., Norwood, J. M., & Gordon, P. L. (1987). The occurrence, characteristics and distribution in the United-Kingdom of resistance to phenylamide fungicides in Bremia-lactucae (lettuce downy mildew). Plant Pathology, 36(3), 297-315.
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Daami-Remadi, M., & El Mahjoub, M. (2006). Presence in Tunisia of Fusarium sambucinum isolates resistant to benzimidazoles: in vitro growth and aggressiveness on potato tubers. Biotechnology, Agronomie, Sociéte et Environnement, 10(1), 7-16.
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Debieu, D., Bach, J., Montesinos, E., Fillinger, S., & Leroux, P. (2013). Role of sterol 3-ketoreductase sensitivity in susceptibility to the fungicide fenhexamid in Botrytis cinerea and other phytopathogenic fungi. Pest Management Science, 69(5), 642-651.
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Delmas, C. E. L., Dussert, Y., Delière, L., Couture, C., Mazet, I. D., Richart Cervera, S., & Delmotte, F. (2017). Soft selective sweeps in fungicide resistance evolution: recurrent mutations without fitness costs in grapevine downy mildew. Molecular Ecology, 26(7), 1936-1951.
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Delye, C., Bousset, L., & Corio-Costet, M. F. (1998). PCR cloning and detection of point mutations in the eburicol 14 alpha-demethylase (CYP51) gene from Erysiphe graminis f. sp. hordei, a "recalcitrant" fungus. Current Genetics, 34(5), 399-403.
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Delye, C., Laigret, F., & Corio-Costet, M. F. (1997). A mutation in the 14 alpha-demethylase gene of Uncinula necator that correlates with resistance to a sterol biosynthesis inhibitor. Applied and Environmental Microbiology, 63(8), 2966-2970.
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Dufour, M. C., Fontaine, S., Montarry, J., & Corio-Costet, M. F. (2011). Assessment of fungicide resistance and pathogen diversity in Erysiphe necator using quantitative real-time PCR assays. Pest Management Science, 67(1), 60-69.
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Fehr, M., Wolf, A., & Stammler, G. (2015). Binding of the respiratory chain inhibitor ametoctradin to the mitochondrial bc1 complex. Pest Management Science, 72(3), 591-602.
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Fillinger, S., Leroux, P., Auclair, C., Barreau, C., Al Hajj, C., & Debieu, D. (2008). Genetic Analysis of Fenhexamid-Resistant Field Isolates of the Phytopathogenic Fungus Botrytis cinerea. Antimicrobial Agents and Chemotherapy, 52(11), 3933-3940.
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Fontaine, S., Remuson, F., Fraissinet-Tachet, L., Micoud, A., Marmeisse, R., & Melayah, D. (2009). Monitoring of Venturia inaequalis harbouring the Qol resistance G143A mutation in French orchards as revealed by PCR assays. Pest Management Science, 65(1), 74-81.
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Gao, L. Q., Berrie, A., Yang, J. R., & Xu, X. M. (2009). Within- and between-orchard variability in the sensitivity of Venturia inaequalis to myclobutanil, a DMI fungicide, in the UK. Pest Management Science, 65(11), 1241-1249.
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Genet, J. L., & Jaworska, G. (2009). Baseline sensitivity to proquinazid in Blumeria graminis f. sp tritici and Erysiphe necator and cross-resistance with other fungicides. Pest Management Science, 65(8), 878-884.
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Genet, J. L., & Vincent, O. (1999). Sensitivity of European Plasmopara viticola populations to cymoxanil. Pesticide Science, 55(2), 129-136.
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Gisi, U., & Cohen, Y. (1996). Resistance to phenylamide fungicides: a case study with Phytophthora infestans involving mating type and race structure. Annual Review of Phytopathology, 34, 549-572.
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Grouet, D., Montfort, F., & Leroux, P. (1981). Detection in France of a strain of Puccinia horiana resistant to oxycarboxin. Phytiatrie-Phytopharmacie, 30(1), 3-12.
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Iacomi-Vasilescu, B., Avenot, H., Bataille-Simoneau, N., Laurent, E., Guenard, M., & Simoneau, P. (2004). In vitro fungicide sensitivity of Alternaria species pathogenic to crucifers and identification of Alternaria brassicicola field isolates highly resistant to both dicarboximides and phenylpyrroles. Crop Protection, 23(6), 481-488.
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Kretschmer, M., Leroch, M., Mosbach, A., Walker, A. S., Fillinger, S., Mernke, D.,Schoonbeek, H. J., Pradier, J. M., Leroux, P., De Waard, M. A., Hahn, M. (2009). Fungicide-driven evolution and molecular basis of multidrug resistance in field populations of the grey mould fungus Botrytis cinerea. PLoS Pathog, 5(12), e1000696.
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Lalève, A., Fillinger, S., & Walker, A. S. (2014). Fitness measurement reveals contrasting costs in homologous recombinant mutants of Botrytis cinerea resistant to succinate dehydrogenase inhibitors. Fungal Genetics and Biology, 67 , 24-36.
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Lalève, A., Gamet, S., Walker, A.-S., Debieu, D., Toquin, V., & Fillinger, S. (2014). Site-directed mutagenesis of the P225, N230 and H272 residues of succinate dehydrogenase subunit B from Botrytis cinerea highlights different roles in enzyme activity and inhibitor binding. Environmental Microbiology, 16(7), 2253-2266.
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Leroux, P. (2003). Mode of action of agrochemicals towards plant pathogens. Comptes Rendus Biologies, 326(1), 9-21.
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Leroux, P., Albertini, C., Gautier, A., Gredt, M., & Walker, A. S. (2007). Mutations in the CYP51 gene correlated with changes in sensitivity to sterol 14 alpha-demethylation inhibitors in field isolates of Mycosphaerella graminicola. Pest Management Science, 63(7), 688-698.
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Leroux, P., Fritz, R., Debieu, D., Albertini, C., Lanen, C., Bach, J., Gredt, M., Chapeland, F. (2002). Mechanisms of resistance to fungicides in field strains of Botrytis cinerea. Pest Management Science, 58(9), 876-888.
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Leroux, P., Gredt, M., Leroch, M., & Walker, A.-S. (2010). Exploring mechanisms of resistance to respiratory inhibitors in field strains of Botrytis cinerea, the causal agent of gray mold. Applied and Environmental Microbiology, 76(19), 6615-6630.
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Leroux, P., & Walker, A.-S. (2011). Multiple mechanisms account for resistance to sterol 14α-demethylation inhibitors in field isolates of Mycosphaerella graminicola. Pest Management Science, 67(1), 44-59.
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Leroux, P. (1986). Characteristics of strains of Ustilago nuda, causal agent of barley loose smut, resistant to carboxin. Agronomie, 6, 225-226.
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Leroux, P., & Berthier, G. (1988). Resistance to carboxin and fenfuram in Ustilago nuda (Jens.) Rostr., the causal agent of barley loose smut. Crop Protection, 7(1), 16-19.
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Leroux, P., & Clerjeau, M. (1985). Resistance of Botrytis cinerea Pers and Plasmopara viticola (Berk and Curt) Berl and Detoni to fungicides in French vineyards. Crop Protection, 4(2), 137-160.
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Leroux, P., Gredt, M., Remuson, F., Micoud, A., & Walker, A. S. (2013). Fungicide resistance status in French populations of the wheat eyespot fungi Oculimacula acuformis and Oculimacula yallundae. Pest Management Science, 69(1), 15-26.
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Leroux, P., & Walker, A. S. (2013). Activity of fungicides and modulators of membrane drug transporters in field strains of Botrytis cinerea displaying multidrug resistance. European Journal of Plant Pathology, 135(4), 683-693.
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Ma, Z., Yoshimura, M. A., & Michailides, T. J. (2003). Identification and characterization of benzimidazole resistance in Monilinia fructicola from stone fruit orchards in California. Applied and Environmental Microbiology, 69(12), 7145-7152.
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Mair, W. J., Deng, W., Mullins, J. G. L., West, S., Wang, P., Besharat, N., Ellwood, S. R., Oliver, R. P., Lopez-Ruiz, F. J. (2016). Demethylase inhibitor fungicide resistance in Pyrenophora teres f. sp. teres associated with target site modification and inducible overexpression of Cyp51. Frontiers in Microbiology, 7, 1279.
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Martin, D., Olivier, J. M., & Lespinasse, Y. (1981). In vitro production of apple scab perithecia applied to the study of benomyl resistance. Agronomie, 1(9), 745-750.
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Molinero V., L. P., Tivoli B. et Champion R. (1993). Resistance to benzimidazoles fungicides in pathogens of Ascochyta diseases of peas. Seed Science and Technology, 21, 531-535.
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Omrane, S., Sghyer, H., Audeon, C., Lanen, C., Duplaix, C., Walker, A. S., & Fillinger, S. (2015). Fungicide efflux and the MgMFS1 transporter contribute to the multidrug resistance phenotype in Zymoseptoria tritici field isolates. Environmental Microbiology, 17(8), 2805-2823.
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Opalski, K. S., Tresch, S., Kogel, K. H., Grossmann, K., Kohle, H., & Huckelhoven, R. (2006). Metrafenone: studies on the mode of action of a novel cereal powdery mildew fungicide. Pest Management Science, 62(5), 393-401.
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Parisi, L., Guillaumes, J., & Wuster, G. (1994). Sensitivity to fenarimol of Venturia inaequalis strains from french orchards. Agronomie, 14(6), 387-394.
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Penaud, A., & Walker, A. S. (2016). Resistance management in oilseed rape pathogens in France. In H. Ishii & D. W. Hollomon (Eds.), Fungicide Resistance in Plant Pathogens - Principles and a Guide to Practical Management: Springer.
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Perez, W., Lara, J., & Forbes, G. A. (2009). Resistance to metalaxyl-M and cymoxanil in a dominant clonal lineage of Phytophthora infestans in Huanuco, Peru, an area of continuous potato production. European Journal of Plant Pathology, 125(1), 87-95.
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Rallos, L. E. E., & Baudoin, A. B. (2016). Co-occurrence of two allelic variants of CYP51 in Erysiphe necator and their correlation with over-expression for DMI resistance. PLOS ONE, 11(2), e0148025.
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Rehfus, A., Miessner, S., Achenbach, J., Strobel, D., Bryson, R., & Stammler, G. (2016). Emergence of succinate dehydrogenase inhibitor resistance of Pyrenophora teres in Europe. Pest Management Science, 72(10), 1977-1988.
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Robbertse, B., Rijst, M. v. d., Aarde, I. M. R. v., Lennox, C., & Crous, P. W. (2001). DMI sensitivity and cross-resistance patterns of Rhynchosporium secalis isolates from South Africa. Crop Protection, 20(2), 97-102.
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Sombardier, A., Dufour, M. C., Blancard, D., & Corio-Costet, M. F. (2010). Sensitivity of Podosphaera aphanis isolates to DMI fungicides: distribution and reduced cross-sensitivity. Pest Management Science, 66(1), 35-43.
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Taggart, P. J., Locke, T., Phillips, A. N., Pask, N., Hollomon, D. W., Kendall, S. J., Cooke, L. R., Mercer, P. C. (1999). Benzimidazole resistance in Rhynchosporium secalis and its effect on barley leaf blotch control in the UK. Crop Protection, 18(4), 239-243.
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Walker, A.-S., Gautier, A., Confais, J., Martinho, D., Viaud, M., Le Pecheur, P., Dupont, J., Fournier, E. (2011). Botrytis pseudocinerea, a new cryptic species causing gray mold in French vineyards in sympatry with Botrytis cinerea. Phytopathology, 101(12), 1433-1445.
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Walker, A.-S., Micoud, A., Rémuson, F., Grosman, J., Gredt, M., & Leroux, P. (2013). French vineyards provide information that opens ways for effective resistance management of Botrytis cinerea (grey mould). Pest Management Science, 69(6), 667-678.
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Walker, A. S., Auclair, C., Gredt, M., & Leroux, P. (2009). First occurrence of resistance to strobilurin fungicides in Microdochium nivale and Microdochium majus from French naturally infected wheat grains. Pest Management Science, 65(8), 906-915.
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Walker, A. S., Bouguennec, A., Confais, J., Morgant, G., & Leroux, P. (2011). Evidence of host-range expansion from new powdery mildew (Blumeria graminis) infections of triticale (xTriticosecale) in France. Plant Pathology, 60(2), 207-220.
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Wyand, R. A., & Brown, J. K. M. (2005). Sequence variation in the CYP51 gene of Blumeria graminis associated with resistance to sterol demethylase inhibiting fungicides. Fungal Genetics and Biology, 42(8), 726-735.
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