Grapevine rootstocks can be a source of infection with non-regulated viruses
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Published:2020-02-06
Issue:3
Volume:156
Page:897-912
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ISSN:0929-1873
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Container-title:European Journal of Plant Pathology
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language:en
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Short-container-title:Eur J Plant Pathol
Author:
Demian Emese, Jaksa-Czotter Nikoletta, Molnar Janos, Tusnady Gabor E., Kocsis Laszlo, Varallyay EvaORCID
Abstract
AbstractGrapevine can be infected by several viruses and viroids, the presence of which can lead to yield losses and vineyard decline. Our previous survey of vineyards in Hungary suggested that viral infection originates from infected propagation material. To investigate whether rootstocks can be a source of virus infections, we surveyed seventeen rootstock vineyards and two rootstock collections in Hungary to determine the virome by high-throughput sequencing of small RNAs. The presence of the viruses was also tested by RT-PCR. The results showed that viruses whose presence is routinely checked were almost absent in rootstock vineyards but were present in rootstock genotype collections. Moreover, first the time in Hungary, we detected the presence of Australian grapevine viroid in the rootstock genotype collection at Pecs. In contrast, viruses that are not regulated or not routinely tested, namely, grapevine rupestris stem-pitting-associated virus, grapevine Syrah virus-1 and grapevine Pinot gris virus, were detected in almost all locations in most of the varieties. The presence and absence of infected rootstock genotypes in the same vineyard together with phylogenetic analysis suggested that viral infections originated from infected propagation material. Moreover, we found the symptomatic variant of grapevine Pinot gris virus in several rootstock vineyards without symptoms, suggesting the possibility for leaf mottling and deformation disease symptoms to manifest on susceptible cultivars following grafting onto these rootstocks.
Funder
Hungarian Scientific Research Fund
Publisher
Springer Science and Business Media LLC
Subject
Horticulture,Plant Science,Agronomy and Crop Science
Reference37 articles.
1. Bertazzon, N., Forte, V., Filippin, L., Causin, R., Maixner, M., & Angelini, E. (2017). Association between genetic variability and titre of grapevine pinot gris virus with disease symptoms. Plant Pathology, 66, 949–959. 2. Bianchi, G. L., De Amicis, F., De Sabbata, L., Di Bernardo, N., Governatori, G., Nonino, F., et al. (2015). Occurrence of grapevine pinot gris virus in Friuli Venezia Giulia (Italy): Field monitoring and virus quantification by real-time RT-PCR. EPPO Bulletin, 45, 22–32. 3. Boonham, N., Kreuze, J., Winter, S., van der Vlugt, R., Bergervoet, J., Tomlinson, J., & Mumford, R. (2014). Methods in virus diagnostics: From ELISA to next generation sequencing. Virus Research, 186, 20–31. 4. Coetzee, B., Freeborough, M. J., Maree, H. J., Celton, J. M., Rees, D. J., & Burger, J. T. (2010). Deep sequencing analysis of viruses infecting grapevines: Virome of a vineyard. Virology, 400, 157–163. 5. Czotter, N., Molnar, J., Pesti, R., Demian, E., Barath, D., Varga, T., et al. (2018a). Use of siRNAs for diagnosis of viruses associated to Woody plants in nurseries and stock collections. Methods in Molecular Biology, 1746, 115–130.
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