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May 8, 2026PLoS Pathogens0 citationsOpen Access

Globodera pallida virulence on major potato resistance has a common genetic basis across Western Europe

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ASArno S. SchavelingLRLeidy van RijtYDYoonseon Do

Key Points

  • This research aims to determine the genetic basis of virulence in Globodera pallida populations across Western Europe.
  • Selected eight Dutch G. pallida populations on the GpaV vrn-containing potato variety Seresta.
  • Analyzed allele frequencies of four virulence-associated SNPs in Dutch, British, and French populations.
  • Developed an allele-specific quantitative PCR assay to measure alternative allele frequencies of a specific SNP.
  • Found that a common allele is consistently selected by GpaV vrn across Western Europe.
  • Demonstrated that the allele frequency of SNP T173N correlates with reproduction levels on GpaV vrn.
  • AS-qPCR assay reliably indicates virulence levels in Dutch and German G. pallida populations.

Abstract

The potato cyst nematode Globodera pallida poses a major threat to potato production in Western Europe. Current management strategies largely depend on the use of potato varieties carrying the genetic resistance GpaV vrn . However, reports from multiple West-European countries indicate a steady rise in virulence against GpaV vrn -containing potato varieties, raising serious concerns about G. pallida control. Although recent studies have resolved the genetic basis of virulence in two Dutch G. pallida populations, it remains unclear how conserved this genetic adaptation is in populations from different regions. To investigate this, we first selected eight Dutch G. pallida populations on the GpaV vrn -containing potato variety Seresta and confirmed a previously identified virulence locus. Second, by analysing the allele frequencies of four virulence-associated SNPs in Dutch, British, and French GpaV vrn -selected G. pallida populations, we found that the same allele is consistently selected by GpaV vrn across Western Europe. Third, we analysed the propagation of eight G. pallida populations on 26 GpaV vrn -containing potato varieties and showed that a population’s allele frequency of a single SNP (T173N) accurately reflects its reproduction on GpaV vrn . Fourth, we developed an allele-specific quantitative PCR (AS-qPCR) assay to determine a population’s alternative allele frequency (AAF) of T173N and showed that AS-qPCR-based AAFs reliably indicate virulence levels on GpaV vrn in Dutch and German G. pallida populations. Together, these findings suggest that a common allele is consistently selected by GpaV vrn in populations from different regions across Western Europe. The AS-qPCR assay developed in this study provides a practical tool to estimate G. pallida virulence on GpaV vrn in the field, enabling field-tailored and sustainable resistance management strategies for farmers.

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Cite This Study

Schaveling et al. (2026) studied this question.

synapsesocial.com/papers/69fd7f4fbfa21ec5bbf07d38https://doi.org/10.1371/journal.ppat.1014201
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