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Distribution and Genetic Diversity of Grapevine Viruses in Russia
by
Yurchenko, Eugeniya
, Volodin, Vitalii
, Vinogradova, Svetlana
, Porotikova, Elena
, Terehova, Uliana
in
Berries
/ Coat protein
/ coat proteins
/ Disease
/ Genetic diversity
/ genetic variation
/ Grapes
/ Grapevine fanleaf virus
/ Grapevine fleck virus
/ Grapevine leafroll-associated virus 1
/ Grapevine leafroll-associated virus 2
/ Grapevine leafroll-associated virus 3
/ Grapevine rupestris stem pitting-associated virus
/ Grapevine virus A
/ grapevine virus infection
/ grapevine viruses
/ Grapevines
/ Infections
/ Load distribution
/ molecular variants
/ phylogenetic analysis
/ Phylogenetics
/ Phylogeny
/ Plant virus diseases
/ Plant viruses
/ Plantations
/ Polymerase chain reaction
/ Russia
/ Species composition
/ species diversity
/ Stem pitting
/ Stress concentration
/ Tactics
/ Vineyards
/ viral diagnostics
/ Viral diseases
/ Viral infections
/ viral load
/ Viruses
/ Viticulture
/ Vitis
/ Vitis vinifera
/ Wineries & vineyards
/ Wines
2021
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Distribution and Genetic Diversity of Grapevine Viruses in Russia
by
Yurchenko, Eugeniya
, Volodin, Vitalii
, Vinogradova, Svetlana
, Porotikova, Elena
, Terehova, Uliana
in
Berries
/ Coat protein
/ coat proteins
/ Disease
/ Genetic diversity
/ genetic variation
/ Grapes
/ Grapevine fanleaf virus
/ Grapevine fleck virus
/ Grapevine leafroll-associated virus 1
/ Grapevine leafroll-associated virus 2
/ Grapevine leafroll-associated virus 3
/ Grapevine rupestris stem pitting-associated virus
/ Grapevine virus A
/ grapevine virus infection
/ grapevine viruses
/ Grapevines
/ Infections
/ Load distribution
/ molecular variants
/ phylogenetic analysis
/ Phylogenetics
/ Phylogeny
/ Plant virus diseases
/ Plant viruses
/ Plantations
/ Polymerase chain reaction
/ Russia
/ Species composition
/ species diversity
/ Stem pitting
/ Stress concentration
/ Tactics
/ Vineyards
/ viral diagnostics
/ Viral diseases
/ Viral infections
/ viral load
/ Viruses
/ Viticulture
/ Vitis
/ Vitis vinifera
/ Wineries & vineyards
/ Wines
2021
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Distribution and Genetic Diversity of Grapevine Viruses in Russia
by
Yurchenko, Eugeniya
, Volodin, Vitalii
, Vinogradova, Svetlana
, Porotikova, Elena
, Terehova, Uliana
in
Berries
/ Coat protein
/ coat proteins
/ Disease
/ Genetic diversity
/ genetic variation
/ Grapes
/ Grapevine fanleaf virus
/ Grapevine fleck virus
/ Grapevine leafroll-associated virus 1
/ Grapevine leafroll-associated virus 2
/ Grapevine leafroll-associated virus 3
/ Grapevine rupestris stem pitting-associated virus
/ Grapevine virus A
/ grapevine virus infection
/ grapevine viruses
/ Grapevines
/ Infections
/ Load distribution
/ molecular variants
/ phylogenetic analysis
/ Phylogenetics
/ Phylogeny
/ Plant virus diseases
/ Plant viruses
/ Plantations
/ Polymerase chain reaction
/ Russia
/ Species composition
/ species diversity
/ Stem pitting
/ Stress concentration
/ Tactics
/ Vineyards
/ viral diagnostics
/ Viral diseases
/ Viral infections
/ viral load
/ Viruses
/ Viticulture
/ Vitis
/ Vitis vinifera
/ Wineries & vineyards
/ Wines
2021
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Distribution and Genetic Diversity of Grapevine Viruses in Russia
Journal Article
Distribution and Genetic Diversity of Grapevine Viruses in Russia
2021
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Overview
Viral diseases can seriously damage the vineyard productivity and the quality of grape and wine products. Therefore, the study of the species composition and range of grapevine viruses is important for the development and implementation of strategies and tactics to limit their spread and increase the economic benefits of viticulture. In 2014–2019, we carried out a large-scale phytosanitary monitoring of Russian commercial vineyards in the Krasnodar region, Stavropol region and Republic of Crimea. A total of 1857 samples were collected and tested for the presence of Grapevine rupestris stem pitting-associated virus (GRSPaV), Grapevine virus A (GVA), Grapevine leafroll-associated virus-1 (GLRaV-1), Grapevine leafroll-associated virus-2 (GLRaV-2), Grapevine leafroll-associated virus-3 (GLRaV-3), Grapevine fanleaf virus (GFLV), and Grapevine fleck virus (GFkV) using RT-PCR. Out of all samples tested, 54.5% were positive for at least one of the viruses (GRSPaV, GVA, GLRaV-1, GLRaV-2, GLRaV-3, GFLV, GFkV) in the Stavropol region, 49.8% in the Krasnodar region and 49.5% in the Republic of Crimea. Some plants were found to be infected with several viruses simultaneously. In the Republic of Crimea, for instance, a number of plants were infected with five viruses. In the Krasnodar region and the Republic of Crimea, 4.7% and 3.3% of the samples were predominantly infected with both GFkV and GRSPaV, whereas in the Stavropol region, 6% of the selected samples had both GLRaV-1 and GVA infections. We carried out a phylogenetic analysis of the coat protein genes of the detected viruses and identified the presence of GVA of groups I and IV, GRSPaV of groups BS and SG1, GLRaV-1 of group III, GLRaV-2 of groups PN and H4, GLRaV-3 of groups I and III. The results obtained make it possible to assess the viral load and the distribution of the main grapevine viruses on plantations in the viticultural zones of Russia, emphasizing the urgent need to develop and implement long-term strategies for the control of viral diseases of grapes.
Publisher
MDPI AG,MDPI
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