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Featured researches published by A. Evenhuis.


G3: Genes, Genomes, Genetics | 2012

Population Dynamics of Phytophthora infestans in the Netherlands Reveals Expansion and Spread of Dominant Clonal Lineages and Virulence in Sexual Offspring

Yingrui Li; T.A.J. van der Lee; A. Evenhuis; G.B.M. van den Bosch; P.J. van Bekkum; M.G. Förch; M.P.E. van Gent-Pelzer; H.M.G. van Raaij; E. Jacobsen; Sanwen Huang; F. Govers; Vivianne G. A. A. Vleeshouwers; G.J.T. Kessel

For a comprehensive survey of the structure and dynamics of the Dutch Phytophthora infestans population, 652 P. infestans isolates were collected from commercial potato fields in the Netherlands during the 10-year period 2000–2009. Genotyping was performed using 12 highly informative microsatellite markers and mitochondrial haplotypes. In addition, for each isolate, the mating type was determined. STRUCTURE analysis grouped the 322 identified genotypes in three clusters. Cluster 1 consists of a single clonal lineage NL-001, known as “Blue_13”; all isolates in this cluster have the A2 mating type and the Ia mitochondrial haplotype. Clusters 2 and 3 display a more elaborate substructure containing many unique genotypes. In Cluster 3, several distinct clonal lineages were also identified. This survey witnesses that the Dutch population underwent dramatic changes in the 10 years under study. The most notable change was the emergence and spread of A2 mating type strain NL-001 (or “Blue_13”). The results emphasize the importance of the sexual cycle in generating genetic diversity and the importance of the asexual cycle as the propagation and dispersal mechanism for successful genotypes. Isolates were also screened for absence of the Avrblb1/ipiO class I gene, which is indicative for virulence on Rpi-blb1. This is also the first report of Rpi-blb1 breakers in the Netherlands. Superimposing the virulence screening on the SSR genetic backbone indicates that lack the Avrblb1/ipiO class I gene only occurred in sexual progeny. So far, the asexual spread of the virulent isolates identified has been limited.


European Journal of Plant Pathology | 2018

Reduced efficacy of fluazinam against Phytophthora infestans in the Netherlands

H.T.A.M. Schepers; G.J.T. Kessel; F. Lucca; M.G. Förch; G. B. M. van den Bosch; C. G. Topper; A. Evenhuis

Phytophthora infestans is the causal organism of potato late blight, the most important disease in potato, the second most important arable crop in Europe. The P. infestans population in Europe is well known for its sudden changes in composition. Currently it is composed of a wide variety of genotypes, some of which are dominant clonal lines while others are rare or even unique to a year or location. Fungicides play a crucial role in the integrated control of late blight. Since its introduction in the Netherlands in 1992, fluazinam has been used in late blight control strategies in ware and starch potatoes. It has a broad spectrum of activity and is effective against a range of diseases including potato late blight. Fluazinam interrupts the pathogen cell’s energy production process by an uncoupling effect on oxidative phosphorylation. It is considered to have a low resistance risk. Until recently, reduced efficacy against fluazinam was not detected in P. infestans surveys in Europe. In this paper we present the finding of a new clonal lineage (EU_33_A2) of P. infestans in the Netherlands and the reduced efficacy of fluazinam to control one of the EU_33_A2 isolates in field experiments carried out in 2011 and 2015 under high disease pressure. The potential effects of this finding on practical late blight control strategies are discussed.


Representation | 2007

Monitoring virulence and mating type of Phytophthora infestants in the Netherlands in 2004 and 2005

H.M.G. van Raaij; A. Evenhuis; G.B.M. van den Bosch; M.G. Förch; H.G. Spits; G.J.T. Kessel; W.G. Flier


African Journal of Ecology | 2009

Fungicide evaluation to rate efficacy to control leaf late blight for the Euroblight Table 2006 – 2009

H.T.A.M. Schepers; R. Bain; H. Hausladen; B.J. Nielsen; H.G. Spits; W. van den Berg; A. Evenhuis


European Journal of Plant Pathology | 2018

Risks for infection of strawberry plants with an aerosolized inoculum of Xanthomonas fragariae

J.M. van der Wolf; A. Evenhuis; P. Kastelein; M.C. Krijger; V. Z. Funke; W. van den Berg; A. F. Moene


Eppo Bulletin | 2018

Spread of Xanthomonas fragariae in strawberry fields by machinery

P. Kastelein; A. Evenhuis; P.S. van der Zouwen; M.C. Krijger; J.M. van der Wolf


Groenten en Fruit. Algemeen | 2017

Xanthomonas fragariae verspreidt gemakkelijk

J.M. van der Wolf; P. Kastelein; A. Evenhuis


Archive | 2016

Effect of adjuvant and spray volume on mancozeb residue on potato and onion leaves and on Phythophthora infestans in potato and Peronospora destructor in onion

H. de Putter; H.T.A.M. Schepers; C.G. Topper; A. Evenhuis


Vollegrondsgroente.net | 2015

Xanthomonas geen beletsel voor CATT

A. Evenhuis; P. Kastelein; G. van Kruistum; J.A. Verschoor; J.M. van der Wolf


Archive | 2015

EUBerry – verhoging van duurzaamheid en consumptie kleinfruit : samenvatting activiteiten DLO Wageningen UR : PT Eindrapport EUBerry 2011-2014

G. van Kruistum; A. Evenhuis; M.J. Groot; P.F.M.M. Roelofs; S.J. Sijtsema; K.L. Zimmermann

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G.J.T. Kessel

Wageningen University and Research Centre

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P. Kastelein

Wageningen University and Research Centre

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H.T.A.M. Schepers

Wageningen University and Research Centre

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J.M. van der Wolf

Wageningen University and Research Centre

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M.G. Förch

Wageningen University and Research Centre

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M.C. Krijger

Wageningen University and Research Centre

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E. Jacobsen

Wageningen University and Research Centre

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T.A.J. van der Lee

Wageningen University and Research Centre

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A. F. Moene

Wageningen University and Research Centre

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A.P. Everaarts

Wageningen University and Research Centre

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