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Development of Neonectria ditissima infections initiated at grafting of apple trees

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Abstract

Infections of Neonectria ditissima, the cause of European fruit tree canker, may be initiated during propagation. In a survey of 19 commercial apple orchards in southern Norway in the year of planting or the following year, the graft-union area of 15,270 trees was examined. The disease was found in 53% of the orchards, at a low incidence (<10%) with two exceptions (13 and 42%). Scion wood from mother trees with no, a few or several cankers were used to propagate trees that were surveyed for up to 38 months. In total 20 out of 1116 (1.8%) trees developed canker. The higher the number of cankers was on the mother trees, the higher was the number of trees developing canker after grafting. Infections developed on both cultivars (Discovery, Summerred) and all three rootstocks (Antonovka, B9, M9), but more so on grafted than T-budded trees, and more in 2015 than in 2014. When the scion wood was inoculated at the time of T-budding or grafting, disease development went faster and to a higher incidence on T-budded (94%) than on grafted trees (50%). Dipping the scion wood end in a spore suspension prior to grafting resulted in more infections than when a suspension droplet was placed on the bud and bark surface of the scion wood after grafting. The present investigation documents that scion wood may harbour inoculum of N. ditissima. Furthermore, infections may be initiated at time of propagation, and management practices of both scion wood production and nurseries should encounter that fact.

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References

  • Amponsah, N. T., Fisher, B. M., Walter, M., Frijters, L., Hedderly, D. I., & Scheper, R. W. A. (2016). Hot water disinfection treatment to eliminate Neonectria ditissima infection in apple scion wood. New Zealand Plant Protection, 69, 221–229.

    Article  Google Scholar 

  • Amponsah, N. T., Walter, M., Scheper, R. W. A., & Beresford, R. M. (2017). Neonectria ditissima spore release and availability in New Zealand apple orchards. New Zealand Plant Protection, 70, 78–86.

    Article  Google Scholar 

  • Beresford, R. M., & Kim, K. S. (2011). Identification of regional climatic conditions favorable for development of European canker of apple. Phytopathology, 101, 135–146.

    Article  Google Scholar 

  • Børve, J., Kolltveit, S. A., Talgø, V., & Stensvand, A. (2018). Apple rootstocks may become infected by Neonectria ditissima during propagation. Acta Agriculturae Scandinavica Section B Soil and Plant Science, 68, 16–25.

    Google Scholar 

  • Crowdy, S. H. (1952). Observations of apple canker. IV The infection of leaf scars. Annals of Applied Biology, 39, 569–580.

    Article  Google Scholar 

  • Latorre, B., Rioja, M. E., Lillo, C., & Muñoz, M. (2002). The effect of temperature and wetness duration on infection and a warning system for European canker (Nectria galligena) of apple in Chile. Crop Protection, 21, 285–291.

    Article  Google Scholar 

  • McCracken, A. R., Berrie, A., Barbara, D. J., Locke, T., Cooke, L. R., Phelps, K., et al. (2003). Relative significance of nursery infections and orchard inoculum in the development and spread of apple canker (Nectria galligena) in young orchards. Plant Pathology, 52, 553–566.

    Article  Google Scholar 

  • Scheper, R. W. A., Stevenson, O. D., & Hedderley, D. I. (2016). Protection of budding wounds in apple nursery trees from European canker. New Zealand Plant Protection, 69, 207–212.

    Article  CAS  Google Scholar 

  • Swinburne, T. R. (1975). European canker of apple. Review of Plant Pathology, 54, 787–799.

    Google Scholar 

  • Walter, M., Roy, S., Fisher, B. M., Mackle, L., Amponsah, N. T., Curnow, T., Campbell, R. E., et al. (2016). How many conidia are required for wound infection of apple plants by Neonectria ditissima? New Zealand Plant Protection, 69, 238–245.

    Article  Google Scholar 

  • Weber, R. W. S. (2014). Biology and control of the apple canker fungus, Neonectria ditissima (syn. N. galligena) from a northwestern European perspective. Erwerbs-Obstbau, 56, 95–107.

    Article  Google Scholar 

  • Wenneker, M., de Jong, P. F., Joosten, N., Goedhart, P., & Thomma, B. P. H. J. (2017a). Development of a method for detection of latent European fruit tree canker (Neonectria ditissima) infections in apple and pear nurseries. European Journal of Plant Pathology, 148, 631–635.

    Article  Google Scholar 

  • Wenneker, M., Goedhart, P., van der Steeg, P., van de Weg, E., & Schouten, H. J. (2017b). Methods for the quantification of resistance of apple genotypes to European fruit tree canker caused by Neonectria ditissima. Plant Disease, 101, 2012–2019.

    Article  CAS  Google Scholar 

  • Xu, X. M., & Ridout, M. S. (1998). The effects of inoculum dose, duration of wet period, temperature and wound age on infection by Nectria galligena of pruning wounds on apple. European Journal of Plant Pathology, 104, 511–519.

    Article  Google Scholar 

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Acknowledgements

The authors thank the technicians at NIBIO Ullensvang and Fjeld Hagebruk for help with the experiments.

Funding

Funding was made available through the Research Council of Norway and Skattefunn. The Norwegian Elite plant station provided rootstocks and scion wood for the experiments.

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Correspondence to Jorunn Børve.

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The study was funded by the Research Council of Norway and Skattefunn.

This article does not contain any studies with human participation or animals performed by any of the authors.

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The authors declare that no known conflicts of interest exist.

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Børve, J., Dalen, M. & Stensvand, A. Development of Neonectria ditissima infections initiated at grafting of apple trees. Eur J Plant Pathol 155, 1225–1239 (2019). https://doi.org/10.1007/s10658-019-01851-7

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  • DOI: https://doi.org/10.1007/s10658-019-01851-7

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