Investigating phenotypic traits as potential drivers of the emergence of EU_37_A2, an invasive new lineage of Phytophthora infestans in Western Europe

Author:

Puidet Britt1ORCID,Mabon Romain2,Guibert Michele2,Kiiker Riinu1,Loit Kaire1,Le Vinh Hong3,Eikemo Håvard3,Dewaegeneire Pauline4,Saubeau Guillaume5,Chatot Catherine56,Aurousseau Frédérique7,Cooke David E. L.8,Lees Alison K.8ORCID,Abuley Isaac K.9ORCID,Hansen Jens G.9ORCID,Corbière Roselyne2,Leclerc Melen2,Najdabbasi Neda1,Andrivon Didier2ORCID

Affiliation:

1. Estonian University of Life Sciences Tartu Estonia

2. INRAE, UMR IGEPP Le Rheu France

3. Norwegian Institute of Bioeconomy Research Ås Norway

4. Sipre and FN3PT‐inov3PT Achicourt France

5. Florimond Desprez Veuve & Fils Cappelle‐en‐Pévèle France

6. Germicopa Breeding Châteauneuf du Faou France

7. Sipre Bretteville Du Grand Caux France

8. The James Hutton Institute, Invergowrie Dundee UK

9. Aarhus University Aarhus Denmark

Abstract

AbstractSince the mid‐2010s, Phytophthora infestans clones that have been dominant in Western Europe from the beginning of the 21st century, for example, EU_13_A2, EU_6_A1 and EU_1_A1, are being replaced by several other emerging clones, including EU_37_A2. The objective of this study was to determine whether the main drivers for the success of EU_37_A2 in Western Europe are associated with decreased fungicide sensitivity, increased virulence and/or aggressiveness. Axenic P. infestans cultures were sampled in the 2016 and 2017 growing seasons from potato crops in France and the United Kingdom. Amongst these, four genotypes were identified: EU_37_A2, EU_13_A2, EU_1_A1 and EU_6_A1. Although a wide range of fluazinam sensitivity was found amongst individual isolates, clonal lines EU_13_A2 and EU_37_A2 showed decreased sensitivity to fluazinam. EU_37_A2 overcame the R5 differential cultivar more often than isolates of EU_1_A1 or EU_6_A1. However, this does not explain the competitive advantage of EU_37_A2 over the virulent EU_13_A2. The fittest genotype, as measured by aggressiveness under controlled conditions, was EU_6_A1, followed by EU_37_A2, EU_13_A2 and then EU_1_A1. EU_37_A2 isolates also showed a shorter latent period than either EU_6_A1 or EU_13_A2, which could favour its long‐term persistence. Overall, the data suggest that the emergence of EU_37_A2 in Western Europe was driven by its resistance to a then‐major fungicide and shorter generation time. This conclusion is further supported by the fact that EU_37_A2 emergence was slowed by the progressive reduction in the use of fluazinam as a single active ingredient in the years following its initial detection.

Funder

European Commission

Norges Forskningsråd

Rural and Environment Science and Analytical Services Division

Miljø- og Fødevareministeriet

Publisher

Wiley

Subject

Horticulture,Plant Science,Genetics,Agronomy and Crop Science

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