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February 5, 2026Journal of General Virology0 citationsOpen Access

The replicative fitness and virulence of potato virus Y evolve differently in pepper lines with different levels of resistance and tolerance

TJThibaud JayetLTLucie TamisierMSMarion Szadkowski

Key Points

  • The study investigates how potato virus Y (PVY) evolves in terms of virulence and replicative fitness in pepper lines with varying resistance and tolerance levels.
  • Conducted experimental evolution for 9 months under controlled conditions.
  • Measured PVY virulence through its impact on plant fresh weight.
  • Assessed replicative fitness by evaluating systemic viral load in five pepper lines.
  • Compared responses among pepper lines differing in quantitative resistance and tolerance.
  • Three pepper lines exhibited changes in PVY replicative fitness or virulence.
  • Two pepper lines did not show significant changes in either replicative fitness or virulence.
  • Tolerance levels in three pepper lines fluctuated significantly between initial and evolved PVY populations.

Abstract

Despite their great agronomic interest and widespread occurrence in germplasm resources, the quantitative resistance and tolerance of plants to their parasites have rarely been studied in terms of durability potential. Using experimental evolution under controlled conditions for 9 months, we compared the evolution of potato virus Y (PVY) ( Potyvirus yituberosi ) virulence, measured by the effect of viral infection on plant fresh weight, and replicative fitness, measured by systemic viral load, in five pepper ( Capsicum annuum ) lines contrasting in their levels of quantitative resistance and tolerance. PVY evolutionary trajectories differed between pepper lines. Three lines revealed either an increase in PVY replicative fitness or an increase or decrease in PVY virulence. Two other lines did not reveal any significant change in PVY replicative fitness or virulence. The tolerance level of three pepper lines also differed significantly when measured with initial and evolved PVY populations, often associated with changes in PVY virulence. PVY evolutionary trajectories were partly explained by parameters linked to plant resistance operating at different stages of infection (inoculation, colonization of inoculated leaves and systemic infection). This study provides information on the durability potential of quantitative resistance and tolerance to PVY in pepper.

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Cite This Study

Jayet et al. (2026) studied this question.

synapsesocial.com/papers/698434ebf1d9ada3c1fb3a7ahttps://doi.org/10.1099/jgv.0.002208
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