Skip to main content
Log in

Prospecting for resistance of interspecific hybrids of Vitis spp. to Plasmopara viticola

  • Published:
Euphytica Aims and scope Submit manuscript

Abstract

In partnership with the University of California—UCDavis, this study intends to develop downy mildew-resistant grape cultivars with good agronomic traits. Hence, the goals of this research were to estimate the genetic parameters, via REML/BLUP, of variables related to downy mildew resistance in a population composed of 63 interspecific hybrids and to select promising clones on the basis of genotypic values for the breeding program of the grapevine. The experiment was conducted in randomized blocks with three replicates and one plant per plot. The evaluations were carried out in two different seasons and focused on determining disease severity. The severity data provided the basis for calculating the area under the disease progress curve (AUDPC) and the maximum severity (Smáx). Differences in the severity of downy mildew symptoms were reported among the 63 genotypes of Vitis spp., such as immune individuals (score 0) and highly susceptible to the AUDPC (3146.67) and Smáx (80.56) variables in the two seasons analyzed. The high genotype correlation seen for AUDPC (80.95%) and Smax (89.68%) suggests that the majority of genotypes had a similar response in terms of symptom severity in the two seasons evaluated. The greatest proportion of genetic variance was resulting from the effects of dominance, which corresponds to 244,165.9580 and 179.83, for AUDPC and Smax, respectively, suggesting that hybridizations are viable in the introgression of the resistance. Consequently, the values for individual heritability of the effects of dominance were greater (50.34 and 52.83%) for the AUDPC and Smax variables, respectively. It is thus recommended that the 20 most resistant genotypes, with lower genetic values for the two variables analyzed, be selected and crossed with Vitis vinifera genotypes to obtain resistant hybrids.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1
Fig. 2
Fig. 3
Fig. 4
Fig. 5
Fig. 6

Similar content being viewed by others

References

  • Akcura M, Kadir A, Hocaoglu O (2017) Biplot analysis of leaf rust resistance in pure lines selected from eastern anatolian bread wheat landraces of Turkey. Turk J Field Crops 22(2):227–234

    Google Scholar 

  • Alexopoulos CJ, Mims CW, Blackwell M (1996) Introductory mycology, 4th edn. Wiley, New York

    Google Scholar 

  • Almança MAK, Lerin S, Cavalcanti FR (2015) Doenças da videira. Informe Agropecuário. Belo Horizonte 36(289):7–12

    Google Scholar 

  • Angelotti F, Hamada E, Magalhães EE, Ghini R, Garrido LR, Pedro Júnior MJ (2017) Climate change and the occurrence of downy mildew in Brazilian grape vines. Pesqui Agropecu Bras 52(6):426–434

    Article  Google Scholar 

  • Atak A, Akkurt M, Polat Z, Çelik H, Kahraman KA, Akgül DS, Özer N, Söylemezoğlu G, Şire GG, Eibach R (2017) Susceptibility to downy mildew (Plasmopara viticola) and powdery mildew (Erysiphe necator) of different Vitis cultivars and genotypes. Ciência e Técnica Vitivinícola 32(1):23–32

    Article  Google Scholar 

  • Buffara CRS, Angelotti F, Vieira RA, Bogo A, Tesmann DJ, De Bem BP (2014) Elaboration and validation of a diagrammatic scale to assess downy mildew severity in grapevine. Ciência Rural 44(8):1384–1391

    Article  Google Scholar 

  • Cadle-Davidson L (2008) Variation within and between Vitis spp. for foliar resistance to the downy mildew pathogen Plasmopara viticola. Plant Dis 92:1577–1584

    Article  Google Scholar 

  • Camargo UA, Tonietto J, Hoffmann A (2011) Progressos na viticultura brasileira. Rev Bras Frutic Volume Especial:144–149

    Article  Google Scholar 

  • Cruz CD, Regazzi AJ, Carneiro PCS (2012) Modelos biométricos aplicados ao melhoramento genético. UFV, Viçosa, p 480

    Google Scholar 

  • De Bem BP, Bogo A, Everhart S, Casa RT, Gonçalves MJ, Marcon Filho JL, Cunha IC (2015) Effect of Y-trellis and vertical shoot positioning training systems on downy mildew and botrytis bunchrot of grape in highlands of southern Brazil. Sci Hortic 185:162–166

    Article  Google Scholar 

  • De Bem BP, Bogo A, Everhart SE, Casa RT, Gonçalves MJ, Marcon JLF, Rufato L, Silva FN, Allebrandt R, Cunha IC (2016) Effect of four training systems on the temporal dynamics of downy mildew in two grapevine cultivars in southern Brazil. Trop Plant Pathol 41:370–379

    Article  Google Scholar 

  • Diez-Navajas AM, Wiedemann-Merdinoglu S, Greif C, Merdinoglu D (2008) Nonhost versus host resistance to the grapevine downy mildew, Plasmopara viticola, studie dat the tissue level. Phytopathology 98:776–780

    Article  CAS  Google Scholar 

  • FAO. Food and Agriculture Organization (2017) Disponivel em: www.fao.org/faostat/en/. Acesso 15 Fevereiro de 2019

  • Freitas CA (2018) Tecnologia contra o míldio da videira. Agropecuária Catarinense, Florianópolis, 31(3):set/dez

  • Genta W, Tessmann DJ, Roberto SR, Vida JB, Scapin CR, Silva Ricce W, Clovis LR (2011) Manejo de míldio no cultivo protegido de videira de mesa’BRS Clara’. Pesqui Agropecu Bras 45(12):1388–1395

    Article  Google Scholar 

  • Gessler C, Pertot I, Perazzolli M (2011) Plasmopara viticola: a review of knowledge on downy mildew of grapevine and effective disease management. Phytopathol Mediterr J 50:1

    Google Scholar 

  • Gomes VM, Ribeiro RM, Viana AP, Souza RM, Santos EA, Rodrigues DL, Almeida OF (2017) Inheritance of resistance to Meloidogyne enterolobii and individual selection in segregating populations of Psidium spp. Eur J Plant Pathol 148:699–708

    Article  CAS  Google Scholar 

  • IBGE (2020) Instituto Brasileiro de Geografia e Estatística. Available in https://sidra.ibge.gov.br/Tabela/1613 15 de January de 2020

  • IBRAVIN. Instituto Brasileiro do Vinho (2018) Disponívelem: https://ibravin.org.br/. Acessoem 15 demaio de 2019

  • Kortekamp A, Zyprian E (2003) Characterization of Plasmopara-resistance in grapevine using in vitro plants. J Plant Physiol 160:1393–1400

    Article  CAS  Google Scholar 

  • Lafon R, Clerjeau M (1998) Downymildew. In: Pearson RC, Goheen AC (eds) Compendium of grape diseases. American Phytopathological Society, Saint Paul, pp 11–13

    Google Scholar 

  • Maia JDG, Ritschel PS (2015) Novas cultivares de videira para elaboração de suco e para mesa. In: Embrapa Uva e Vinho-Artigo em anais de congresso (ALICE). Encontro nacional sobre fruticultura de clima temperado, 14, Fraiburgo, SC. Anais. (v. 2-Resumos). Caçador: Epagri, v. 2 (trabalhos), pp 81–90

  • Naves RL, Tessmann DJ, Garrido LR, Sônego OR (2005) Doenças e seu controle. Embrapa Uva e Vinho. Sistemas de produção. Disponível em: https://sistemasdeproducao.cnptia.embrapa.br/FontesHTML/Uva/MesaNorteParana/doencas.htm. Acesso 15 fevereiro 2019

  • Naves RL, Santana APS, Papa MFS, Teixeira ECZ, Boliani AC (2010) Inibição da germinação in vitro de esporangiósporos de Plasmopara viticola por extrato de folhas de melão-de-são caetano. Trop Plant Pathol 3:1–11

    Google Scholar 

  • OIV. Organização Internacional da Vinha e do Vinho (2018) Disponível em: http://oiv.int. Acesso 15 fevereiro 2019

  • Oliveira PRD, Scotton DC, Nishimura DS, Figueira A (2005) Análise da diversidade genética por AFLP e identificação de marcadores associados à resistência a doenças em videira. Rev Bras Frutic 27(3):454–457

    Article  Google Scholar 

  • R Development Core Team (2015) R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna

    Google Scholar 

  • Resende MDV, Ramalho MAP, Carneiro PCS, Carneiro JES, Batista LG, Gois IB (2016) Selection index withparents, populations, progênies and generations effects in autogamous plant breeding. Crop Sci 56:530–546

    Article  Google Scholar 

  • Ribeiro AC, Guimarães PTG, Alvarez V, eds (1999) Recomendações para o uso de corretivos e fertilizantes em Minas Gerais—5a. aproximação. Viçosa, MG, Universidade Federal de Viçosa, p 359

  • Rouxel M, Mestre P, Comont G, Lehman BL, Schilder A, Delmotte F (2013) Phylogenetic and experimental evidence for host-specialized cryptic species in a biotrophic oomycete. New Phytol 197:251–263. https://doi.org/10.1111/nph.12016

    Article  PubMed  Google Scholar 

  • Santos EA, Viana AP, Freitas JCO, Rodrigues DL, Tavares RF, Paiva CL, Souza MM (2015) Genotype selection by REML/BLUP methodology in a segregating population from na interspecific Passiflora spp. crossing. Euphytica 204:1–11

    Article  Google Scholar 

  • Santos PR, Viana AP, Gomes VM, Preisigke SC, Santos EA, Cavalcante NR, Almeida OF, Walker MA (2018) Clonal selection in interspecific Vitis spp. hybrids resistant to the root-lesion nematode Pratylenchus brachyurus by REML/BLUP. Fruits 73(3):191–197

    Article  Google Scholar 

  • Santos PRD, Viana AP, Gomes VM, Preisigke SDC, Almeida OFD, Santos EA, Rodrigues DL, Rodrigues R, Walker MA (2019a) Resistance to Pratylenchus brachyurus in Vitis species population through multivariate approaches and mixed models. Sci Agricola 76(5):424–433

    Article  Google Scholar 

  • Santos PR, Viana AP, Santos EA, Walter FHB, Riaz S, Walker AM (2019b) Molecular genetic diversity in segregates of Vitis: implications for the breeding of grapevine aiming at resistance to Pratylenchus brachyurus. Euphytica 215:78

    Article  Google Scholar 

  • Shaner G, Finney RE (1977) The effect of nitrogen fertilization on the expression of slow-mildewing resistance in knox wheat. Phytopathology 70:1183–1186

    Article  Google Scholar 

  • Slowikowski K (2019) ggrepel: Repulsive text and label geoms for ‘ggplot2’. R package version 0.6 5.11 (2016)

  • Teixeira AHC, Souza RA, Ribeiro PHB, Reis VCS, Santos MGL (2002) Aptidão agroclimática da cultura da videira no Estado da Bahia, Brasil. Rev Bras Eng Agrícola Ambient 6(1):107–111

    Article  Google Scholar 

  • Toffolatti SL, Venturini G, Maffi D, Vercesi A (2012) Phenotypic and histochemical traits of the interaction between Plasmopara viticola and resistant or susceptible grapevine varieties. BMC Plant Biol 12:124

    Article  CAS  Google Scholar 

  • Unger S, Buche C, Boso S, Kassemeyer HH (2007) The course of colonization of two different Vitis genotypes by Plasmopara viticola indicates compatible and incompatible host-pathogen interactions. Phytopathology 97:780–786

    Article  Google Scholar 

  • USDA. United States Departament of Agriculture (2018) Disponível em: https://www.usda.gov/. Acesso 15 fevereiro 2019

  • Viana AP, Resende MDV (2014) Genética quantitativa no melhoramento de fruteiras. Editora Interciência, Rio de Janeiro, p 282

    Google Scholar 

  • Wickham H (2009) Ggplot2: elegant graphics for data analysis, 2nd edn. Springer, New York. https://doi.org/10.1007/978-0-387-98141-3

    Book  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Eileen Azevedo Santos.

Additional information

Publisher's Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Amaral, B.D., Viana, A.P., Santos, E.A. et al. Prospecting for resistance of interspecific hybrids of Vitis spp. to Plasmopara viticola. Euphytica 216, 68 (2020). https://doi.org/10.1007/s10681-020-02601-1

Download citation

  • Received:

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1007/s10681-020-02601-1

Keywords

Navigation