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Evolution of morphological but not aggressiveness‐related traits following a major resistance breakdown in the poplar rust fungus, Melampsora larici‐populina

Authors :
Maupetit, Agathe
Fabre, Bénédicte
Pétrowski, Jérémy
Andrieux, Axelle
De Mita, Stéphane
Frey, Pascal
Halkett, Fabien
Hayden, Katherine
Maupetit, Agathe
Fabre, Bénédicte
Pétrowski, Jérémy
Andrieux, Axelle
De Mita, Stéphane
Frey, Pascal
Halkett, Fabien
Hayden, Katherine
Source :
Evolutionary Applications (1752-4571) (Wiley), 2021-02 , Vol. 14 , N. 2 , P. 513-523
Publication Year :
2021

Abstract

Crop varieties carrying qualitative resistance to targeted pathogens lead to strong selection pressure on parasites, often resulting in resistance breakdown. It is well known that qualitative resistance breakdowns modify pathogen population structure but few studies have analysed the consequences on their quantitative aggressiveness‐related traits. The aim of this study was to characterize the evolution of these traits following a resistance breakdown in the poplar rust fungus, Melampsora larici‐populina. We based our experiment on three temporal populations sampled just before the breakdown event, immediately after and four years later. First, we quantified phenotypic differences among populations for a set of aggressiveness traits on a universally susceptible cultivar (infection efficiency, latent period, lesion size, mycelium quantity, and sporulation rate) and one morphological trait (mean spore volume). Then we estimated heritability to establish which traits could be subjected to adaptive evolution, and tested for evidence of selection. Our results revealed significant changes in the morphological trait but no variation in aggressiveness traits. By contrast, recent works have demonstrated that quantitative resistance (initially assumed more durable) could be eroded and lead to increased aggressiveness. Hence, this study is one example suggesting that the use of qualitative resistance may be revealed to be less detrimental to long‐term sustainable crop production.

Details

Database :
OAIster
Journal :
Evolutionary Applications (1752-4571) (Wiley), 2021-02 , Vol. 14 , N. 2 , P. 513-523
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1198076794
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1111.EVA.13136