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DVORAK, E.

Publications and source records attributed to DVORAK, E..

2 recordsLinked to original sources

A multivirulent Plasmopara viticola strain from Cilaos on Reunion Island breaks down Rpv1, Rpv3.1 and Rpv10 mediated resistance of grapevine

AbstractGrapevine downy mildew, caused by Plasmopara viticola, is one of the most destructive diseases in viticulture. Resistance-based management strategies rely on grapevine varieties carrying major resistance loci (Rpv). Although breakdown of several loci has been reported, Rpv1 had remained effective until now. Here, we provide the first evidence of Rpv1 breakdown by P. viticola in Cilaos on Reunion Island (France) and the first case of a strain simultaneously overcoming three resistances of grapevine. We combined pathogenicity assays with whole-genome sequencing to characterize a P. viticola strain collected in Cilaos in 2023, alongside a panel of eight reference strains of known virulence. Hypersensitive response and sporulation were assessed for each strain on Chardonnay (susceptible variety) and four resistant varieties carrying Rpv1, Rpv3.1, Rpv10, or Rpv12. The strain collected in Cilaos was able to overcome not only Rpv1 but also Rpv3.1 and Rpv10. On Rpv1, we observed a complete loss of host recognition with high sporulation. On Rpv3.1, the phenotype was consistent with previous breakdowns, and the strain carried the vir1 allele previously described in France. By contrast, the breakdown of Rpv10 differed from that reported in European populations: whereas European strains displayed only partial breakdown of resistance, the strain of Cilaos showed complete loss of host recognition with high sporulation. Moreover, genomic analyses revealed a novel mutation, a large homozygous deletion in the corresponding avr locus. Our genomic data analyses further suggests that this P. viticola strain shares a genetic background with populations from mainland France, raising serious concerns about the potential emergence and spread of multivirulent lineages in Europe. These findings highlight the need for large-scale virulence monitoring of P. viticola and improved strategies for the sustainable management of grapevine resistance in Europe.

plant biology↗

Parallel adaptation and admixture drive the evolution of virulence in the grapevine downy mildew pathogen

O_LIPlasmopara viticola is a biotrophic oomycete responsible for grapevine downy mildew, one of the most destructive diseases in viticulture. Breeding for resistant varieties relies on the introgression of partial resistance factors from wild grapes, but virulent strains are rapidly emerging. C_LIO_LITo decipher the genetic bases of the adaptation to plant resistance in P. viticola, we carried out a QTL mapping study using two F1 populations segregating for the ability to overcome Rpv3.1, Rpv10 and Rpv12. Trajectories of virulence emergence were also compared by conducting a population structure analysis on a panel of diversity. C_LIO_LIWe confirmed the position of AvrRpv3.1 and identified the AvrRpv12 locus, in which strains overcoming Rpv12 presented large deletions encompassing several RXLR genes. Distinct virulent alleles were selected independently in different winegrowing regions. Unlike this standard case of recessive virulence, partial breakdown of Rpv10 was determined by a dominant locus, suggesting a suppressor activity. The virulent haplotype exhibits structural rearrangements and an extended effector repertoire. It corresponds to an admixed genomic segment likely originating from a secondary introduction of P. viticola into Europe. C_LIO_LIOn top of the identification of candidate effectors, these results illustrate the range of evolutionary pathways through which plant pathogen populations can adapt to plant resistances. C_LI

plant biology↗