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Articles

Foliar application of endophytic Wickerhamomyces anomalus against grey mould in Eucalyptus dunnii

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Pages 93-102 | Received 19 May 2019, Accepted 27 Oct 2019, Published online: 12 Nov 2019

References

  • Anvisa. (2013). Microbiologia clínica para o controle de infecção relacionada à assistência à saúde. Módulo 8: Detecção e identificação dos fungos de importância médica. Brasília: Agência Nacional de Vigilância Sanitária.
  • Araújo, W. L., Lima, A. O. S., Azevedo, J. L., Marcon, J., Kuklinsky-Sobral, J., & Lacava, P. T. (2002). Manual: Isolamento de microorganismos endofíticos. Piracicaba: Calq.
  • Auer, C. G., Santos, A. F. D., & Furtado, E. L. (2016). Doenças do eucalipto. In L. Amorim, J. A. M. Rezende, A. Bergamin Filho, & L. E. A. Camargo (Eds.), Manual de Fitopatologia (5th ed., pp. 359–372). Ouro Fino: Editora Agronômica Ceres Ltda.
  • Bier, O. (1980). Bacteriologia e Imunologia. São Paulo: Melhoramentos.
  • Bizi, R. M. (2006). Alternativas de controle do mofo-cinzento e do oídio em mudas de eucalipto [Control alternatives of gray mold and powdery mildew in eucalyptus seedlings] (Master’s thesis). Universidade Federal do Paraná, Curitiba, PR, Brazil.
  • Chaube, H. S., & Singh, U. S. (1991). Plant disease management: Principles and practices. Boca Raton: CRC Press.
  • Chen, P.-H., Chen, R.-Y., & Choy, J.-Y. (2018). Screening and evaluation of yeast antagonists for biological control of Botrytis cinerea on strawberry fruits. Mycobiology, 46(1), 33–46. doi: 10.1080/12298093.2018.1454013
  • Edginton, L. V., Knew, K. L., & Barron, G. L. (1971). Fungitoxic spectrum of benzimidazole compounds. Phytopathology, 61(7), 42–44. doi: 10.1094/Phyto-61-42
  • Elad, Y., Köhl, J., & Fokkema, N. J. (1994). Control of infection and sporulation of Botrytis cinereaon bean and tomato by saprophytic yeasts. Phytopathology, 84(10), 1193–1200. doi: 10.1094/Phyto-84-1193
  • Ferreira, F. A. (1989). Patologia florestal: principais doenças florestais no Brasil [Forest pathology: Major forest diseases in Brazil]. Viçosa: SIF.
  • Fillinger, S., & Elad, Y. (2016). Botrytis – the fungus, the pathogen and its management in agricultural systems. New York: Springer International Publishing.
  • Grigoletti Junior, A. G., Santos, A. F. D., & Auer, C. G. (2000). Perspectivas do uso do controle biológico contra doenças florestais [Perspectives on the use of biological control against forest diseases]. Floresta, 30(1/2), 155–165.
  • Ibá. (2019). Relatório Ibá 2017 [Report Ibá 2017]. Retrieved from https://iba.org/images/shared/Biblioteca/IBA_RelatorioAnual2017.pdf
  • Joubert, P. M., & Doty, S. L. (2018). Endophytic yeasts: Biology, ecology and applications. In A. M. Pirttilä & A. C. Frank (Eds.), Endophytes of forest trees (pp. 3–14). Cham: Springer.
  • Kratz, D., & Wendling, I. (2013). Produção de mudas de Eucalyptus dunnii em substratos renováveis [Production of Eucalyptus dunnii seedlings in renewable substrates]. Floresta, 43(1), 125–136. doi: 10.5380/rf.v43i1.25989
  • Lee, G., Lee, S. H., Kim, K. M., & Ryu, C. M. (2017). Foliar application of the leaf-colonizing yeast Pseudozyma churashimaensis elicits systemic defense of pepper against bacterial and viral pathogens. Scientific Reports, 7, 39432. doi: 10.1038/srep39432
  • Mariano, R. L. R. (1993). Métodos de seleção in vitro para o controle microbiológico de patógeno de plantas [In vitro selection methods for the microbiological control of plant pathogens]. Revisão Anual de Patologia de Plantas, 1, 69–409.
  • Nelder, J. A., & Baker, R. J. (1972). Generalized linear models. New Jersey: John Wiley and Sons Inc.
  • Panebianco, A., Castello, I., Cirvilleri, G., Perrone, G., Epifani, F., Ferrara, M., … Vitale, A. (2015). Detection of Botrytis cinerea field isolates with multiple fungicide resistance from table grape in Sicily. Crop Protection, 77, 65–73. doi: 10.1016/j.cropro.2015.07.010
  • Parafati, L., Vitale, A., Restuccia, C., & Cirvilleri, G. (2015). Biocontrol ability and action mechanism of food-isolated yeasts strains against Botrytis cinerea causing post-harvest bunch rot of table grape. Food Microbiology, 47, 85–92. doi: 10.1016/j.fm.2014.11.013
  • Pauluk-Corrêa, I., Bozza De Almeida, A., & Pimentel, I. C. (2018). Biocontrol activity of yeast strains isolated from green coffee beans against ochratoxin A-producing Aspergillus species. International Journal of Microbiology Research, 10(6), 1268–1273. doi: 10.9735/0975-5276.10.6.1268-1273
  • Paz, I. C. P., Santin, R. C. M., Guimarães, A. M., da Rosa, O. P. P., Quecine, M. C., Silva, M. C. P., … Matsumura, T. S. (2018). Biocontrol of Botrytis cinerea and Calonectria gracilis by eucalypts growth promoters Bacillus spp. Microbial Pathogenesis, 121, 106–109. doi: 10.1016/j.micpath.2018.05.026
  • Ramos, D. M. B., Silva, C. F., Batista, L. R., & Schwan, R. F. (2010). Inibição in vitro de fungos toxigênicos por Pichia sp. e Debaryomyces sp. isoladas de frutos de café (Coffea arabica) [In vitro inhibition of toxigenic fungi by Pichia sp. and Debaryomyces sp. isolated from coffee fruits (Coffea arabica)]. Acta Scientiarum Agronomy, 32(3), 397–402.
  • Raspor, P., Miklič-Milek, D., Avbelj, M., & Čadež, N. (2010). Biocontrol of grey mould disease on grape caused by Botrytis cinerea with autochthonous wine yeasts. Food Technology & Biotechnology, 48(3), 336–343.
  • Salla, T. D., Astarita, L. V., & Santarém, E. R. (2016). Defense responses in plants of Eucalyptus elicited by Streptomyces and challenged with Botrytis cinerea. Planta, 243(4), 1055–1070. doi: 10.1007/s00425-015-2460-8
  • Sbravatti Junior, J. A., Auer, C. G., Pimentel, I. C., dos Santos, A. F., & Schultz, B. (2013). In vitro selection of endophytes for biological control of Botrytis cinerea in Eucalyptus benthamii. Floresta, 43(1), 145–151. doi: 10.5380/rf.v43i1.26265
  • Sbravatti Junior, J. A., Poitevin, C. G., Robl, D., dos Santos, A. F., Pimentel, I. C., Dalzoto, P. R., & Auer, C.G. (2016). Redução da severidade do mofo cinzento em mudas de Eucalyptus benthamii tratadas com Trichoderma atroviride [Reduction in gray mold severity in Eucalyptus benthamii seedlings treated with Trichoderma atroviride]. Summa Phytopathologica, 42(4), 363–365. doi: 10.1590/0100-5405/2148
  • Spadaro, D., & Droby, S. (2016). Development of biocontrol products for postharvest diseases of fruit: The importance of elucidating the mechanisms of action of yeasts antagonists. Trends in Food Science & Technology, 47, 39–49. doi: 10.1016/j.tifs.2015.11.003
  • Talibi, I., Boubaker, H., Boudyach, E. H., & Aoumar, A. A. B. (2014). Alternative methods for the control of postharvest citrus diseases. Journal of Applied Microbiology, 117(1), 1–17. doi: 10.1111/jam.12495
  • Zaldúa, S., & Sanfuentes, E. (2010). Control of Botrytis cinerea in Eucalyptus globulus mini-cuttings using Clonostachys and Trichoderma strains. Chilean Journal of Agricultural Research, 70(4), 576–582. doi: 10.4067/S0718-58392010000400007
  • Zhang, D., Spadaro, D., Garibaldi, A., & Gullino, M. L. (2011). Potential biocontrol activity of a strain of Pichia guilliermondii against grey mold of apples and its possible modes of action. Biological Control, 57, 193–201. doi: 10.1016/j.biocontrol.2011.02.011

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