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Combining Selective Pressures to Enhance the Durability of Disease Resistance Genes

Frontiers in Plant Science · 2016 · Vol. 7 · pp. 1916–1916
François DelmotteDenis BourguetPierre FranckThomas GuillemaudXavier ReboudCorinne VacherAnne Sophie A. S. Walker

Abstract

The efficacy of disease resistance genes in plants decreases over time because of the selection of virulent pathogen genotypes. A key goal of crop protection programs is to increase the durability of the resistance conferred by these genes. The spatial and temporal deployment of plant disease resistance genes is considered to be a major factor determining their durability. In the literature, four principal strategies combining resistance genes over time and space have been considered to delay the evolution of virulent pathogen genotypes. We reviewed this literature with the aim of determining which deployment strategy results in the greatest durability of resistance genes. Although theoretical and empirical studies comparing deployment strategies of more than one resistance gene are very scarce, they suggest that the overall durability of disease resistance genes can be increased by combining their presence in the same plant (pyramiding). Retrospective analyses of field monitoring data also suggest that the pyramiding of disease resistance genes within a plant is the most durable strategy. By extension, we suggest that the combination of disease resistance genes with other practices for pathogen control (pesticides, farming practices) may be a relevant management strategy to slow down the evolution of virulent pathogen genotypes.

Wheat and Barley Genetics and PathologyPlant Virus Research StudiesPlant-Microbe Interactions and ImmunityBiologyResistance (ecology)GeneBiotechnologyPlant disease resistanceDurabilityPathogenVirulenceGeneticsGenotype

Funding

  • Institut National de la Recherche Agronomique
Citations
567
FWCI
178.87
field-weighted impact
References
96
Percentile
100%
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Citations per year
References
The past, present and future of breeding rust resistant wheat
Frontiers in Plant Science · 2014 · 545 citations
Global food demand and the sustainable intensification of agriculture
Proceedings of the National Academy of Sciences · 2011 · 7,334 citations
Genomic Selection for Crop Improvement
Crop Science · 2009 · 1,657 citations
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