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Testing the effectiveness of microbial biostimulants to increase the resistance of the variety Chardonnay to “Bois noir” phytoplasma Cover

Testing the effectiveness of microbial biostimulants to increase the resistance of the variety Chardonnay to “Bois noir” phytoplasma

Open Access
|Jul 2025

References

  1. Angelini, E., Constable, F., Duduk, B., Fiore, N., Quaglino, F., Bertaccini, A. 2018: Grapevine phytoplasmas. In: Phytoplasmas: Plant pathogenic bacteria-I: Characterisation and epidemiology of phytoplasma-associated diseases. Singapore: Springer Singapore, 2018, pp. 123–151.
  2. Belli, G., Bianco, P.A., Conti, M. 2010: Grapevine yellows in Italy: past, present and future. Journal of Plant Pathology 92: 303–326.
  3. Bianco, P. A., Romanazzi, G., Mori, N., Myrie, W., Bertaccini, A. 2019: Integrated management of phytoplasma diseases. In: A. Bertaccini, G. P. Weintraub, G. P. Rao, & N. Mori (Eds.): Transmission and management of phytoplasma-associated diseases. Phytoplasmas: Plant pathogenic bacteria–II. Singapore: Springer, 2019, pp. 237–258.
  4. Bulgari D., Casati P., Quaglino F., Bianco P. A., Compant S., Mathieu F. 2016: Endophytic bacteria associated with grapevine plants: putative candidates for phytoplasma containment. In: Biocontrol of Major Grapevine Diseases: Leading Research. CABI: Wallingford, UK, pp. 215–230.
  5. Caudwell, A. 1961: Les phénomènes de rétablissement chez la flavescence dorée de la vigne. Ann. Epiphyt. 12: 347–354.
  6. Dermastia, M., Bertaccini, A., Constable, F., Mehle, N. 2017: Grapevine yellows diseases and their phytoplasma agents: biology and detection. Cham: Springer, 2017, 1st ed.
  7. Dicke, M., Hilker, M. 2003: Induced plant defences: from molecular biology to evolutionary ecology. BAAE 4: 3–14.
  8. Garau, R., Prota, V.A., Sechi, S., Moro, G. 2008: Biostimulants distribution to plants affected by ‘bois noir’: results regarding recovery. Petria, 18: 366–368.
  9. Kölber, M. 2011: Phytoplasma diseases of grapevine and the possible measures to control them. International Journal of Horticultural Science. 17: 37–43.
  10. Kosovac, A., Jakovljević, M., Krstić, O., Cvrković, T., Mitrović, M., Toševski, I., Jović, J. 2019: Role of plant-specialized Hyalesthes obsoletus associated with Convolvulus arvensis and Crepis foetida in the transmission of ‘Candidatus Phytoplasma solani’-inflicted bois noir disease of grapevine in Serbia. European journal of plant pathology, 153: 183–195.
  11. Kunicki, E, Grabowska, A., Sekara, A., Wojciechowska, R. 2010: The effect of cultivar type, time of cultivation, and biostimulant treatment on the yield of spinach (Spinacia oleracea L.). Folia Hortic. 22: 9–13.
  12. Maixner, M. 2011: Recent advances in Bois noir research. Petria, 21: 17–32.
  13. Maixner, M., Kröhner, D., Kappel, Y. 2011: Symptom remission and recovery in ‘bois noir’ infected grapevines. Bulletin of Insectology. 64: 175–176.
  14. Maixner, M., Mori, N. 2013: Management of “bois noir” through vector control. Phytopathogenic Mollicutes, 3: 44–46.
  15. Marchi, G., Braccini, P., Paltrinieri, S., Rizzo, D., Contaldo, N., Cinelli, T., Bertaccini, A. 2011: Spread of ‘bois noir’ in organic vineyards in Tuscany: spatial pattern analysis and identification of the phytoplasma in weeds. Petria, 21: 114–115.
  16. Martini, M., Musetti, R., Grisan, S., Polizzotto, R., Borselli, S., Pavan, F., Osler, R. 2009: DNA-dependent detection of the grapevine fungal endophytes Aureobasidium pullulans and Epicoccum nigrum. Plant Disease 93: 993–998.
  17. Mehle, N., Kavčič, S., Mermal, S., Vidmar, S., Pompe Novak, M., Riedle-Bauer, M., Brader, G., Kladnik, A., Dermastia, M. 2022: Geographical and Temporal Diversity of ‘Candidatus Phytoplasma solani’ in Wine-Growing Regions in Slovenia and Austria. Frontiers in plant science, 13: 889675.
  18. Minuz, R. L., Mancini, V., Ruschioni, S., Mozzon, M., Foligni, R., Isidoro, N. 2020: Volatiles emitted by resistance inducer-treated grapevines affect Hyalesthes obsoletus behavioural responses. Bull. Insectol. 73: 117–123.
  19. Mori, N., Quaglino, F., Tessari, F., Pozzebon, A., Bulgari, D., Casati, P., Bianco, P. A. 2015: Investigation on “bois noir” epidemiology in northeastern Italian vineyards through a multidisciplinary approach. Annals of Applied Biology, 166: 75–89.
  20. Moussa, A., Passera, A., Torcoli, S., Serina, F., Quaglino, F., Mori, N. 2021: “Evaluation of biostimulant effectiveness in grapevine “Bois noir” management,” in Abstracts of VIII Incontro Nazionale sui Fitoplasmi e le Malattie da Fitoplasmi, Catania, 14–15 Ottobre, 2021. INFitoplasmi 2021.
  21. Murolo, S., Garbarino, M., Mancini, V., Romanazzi, G. 2020: Spatial pattern of Bois noir: Case study of a delicate balance between disease progression and recovery. Scientific Reports, 10: 9801.
  22. Murolo, S., Mancini, V. Romanazzi, G. 2014: Spatial and temporal stolbur population structure in a cv. Chardonnay vineyard according to vmp1 gene characterization. Plant Pathol. 63: 700–707.
  23. Oliveira, M. J. R. A., Roriz, M., Vasconcelos, M. W., Bertaccini, A., Carvalho, S. M. P. 2019: Conventional and novel approaches for managing “flavescence dorée” in grapevine: knowledge gaps and future prospects. Plant Pathology, 68: 3–17.
  24. Pavan, F., Mori, N., Bressan, S., Mutton, P. 2012: Control strategies for grapevine phytoplasma diseases: Factors influencing the profitability of replacing symptomatic plants. Phytopathol. Mediterr. 51: 11–22.
  25. Quaglino, F., Zhao, Y., Casati, P., Bulgari, D., Bianco, P.A., Wei, W., Davis, R.E. 2013: Candidatus Phytoplasma solani’, a novel taxon associated with stolbur- and bois noir-related diseases of plants. International Journal of Systematic and Evolutionary Microbiology. 63: 2879–2894.
  26. Riedle-Bauer, M., Brader, G. 2023: Effects of insecticides and repellents on the spread of ‘Candidatus Phytoplasma solani’ under laboratory and field conditions. Journal of Plant Diseases and Protection, 130: 1057–1074.
  27. Riedle-Bauer, M., Hanak, K., Regner, F., Tiefenbrunner, W. 2010: Influence of Pruning Measures on Recovery of Bois Noir-infected Grapevines. Journal of phytopathology, 158: 628–632.
  28. Romanazzi, G., D'Ascenzo, D., Murolo, S. 2009: Field treatment with resistance inducers for the control of grapevine bois noir. Journal of Plant Pathology: 677–682.
  29. Romanazzi, G., Murolo, S., Feliziani, E. 2013: Effects of an innovative strategy to contain grapevine Bois noir: field treatment with resistance inducers. Phytopathology, 103: 785–791.
  30. Teklic, T., Paradikovic, N., Špoljarevic, M., Zeljkovic, S., Loncaric, Z., Lisjak, M. 2020: Linking abiotic stress, plant metabolites, biostimulants and functional food. Annals of Applied Biology 178 (2): 169–191.
  31. Zahavi, T., Sharon, R., Sapir, G., Mawassi, M., Dafny-Yelin, M., Naor, V. 2013: The long-term effect of Stolbur phytoplasma on grapevines in the Golan Heights. Australian Journal of Grape and Wine Research 19: 277–284.
DOI: https://doi.org/10.2478/mittklbg-2025-0001 | Journal eISSN: 3061-063X | Journal ISSN: 3061-0621
Language: English
Page range: 1 - 14
Submitted on: Jan 7, 2025
Published on: Jul 11, 2025
Published by: High School and Federal Office of Viticulture and Pomology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Pavel Pavloušek, Pavlína Hornychová, Ivana Flajšingerová, published by High School and Federal Office of Viticulture and Pomology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.