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Evolution and spread of azole-insensitive Zymoseptoria tritici field isolates in the UK

BART A. FRAAIJE, Sarah L. Atkins, Jialun Luo, P. Diez De La Fuente, Nichola J. Hawkins

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Abstract

Azole fungicides have been used for more than three decades in the UK to control Septoria leaf blotch caused by the fungus Zymoseptoria tritici. Research has shown that the efficacy of some azoles (e.g. tebuconazole and triadimenol) can be compromised by the evolution and spread of insensitive strains carrying combinations of amino acid alterations (amino acid substitutions and a deletion) in the target protein sterol 14α-demethylase (CYP51). A stepwise accumulation of mutations has been observed since the early 1990s. Since 2012, CYP51 variants harbouring up to nine amino acid alterations can be found in the least sensitive strains. In addition, a 120 bp insertion in the CYP51 promoter linked with CYP51 overexpression has been found since 2009 in some strains representing two different CYP51 variants. In vitro fungicide sensitivity testing of different CYP51 variants (> 60) shows significant shifts in azole efficacy for all compounds tested (i.e.epoxiconazole, prothioconazole, prochloraz and tebuconazole). Here wepresent the genotype-to-phenotype relationships for these strains and discuss the practical implications

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What this paper is about

Azole fungicides have been used for more than three decades in the UK to control Septoria leaf blotch caused by the fungus Zymoseptoria tritici. Research has shown that the efficacy of some azoles (e.g. tebuconazole and triadimenol) can be compromised by the evolution and spread of insensitive strains carrying combinations of amino acid alterations (amino acid substitutions and a deletion) in the target protein sterol 14α-demethylase (CYP51). A stepwise accumulation of mutations has been observed since the early 1990s. Since 2012, CYP51 variants harbouring up to nine amino acid alterations can be found in the least sensitive strains. In addition, a 120 bp insertion in the CYP51 promoter linked with CYP51 overexpression has been found since 2009 in some strains representing two different CYP51 variants. In vitro fungicide sensitivity testing of different CYP51 variants (> 60) shows significant shifts in azole efficacy for all compounds tested (i.e.epoxiconazole, prothioconazole, prochloraz and tebuconazole). Here wepresent the genotype-to-phenotype relationships for these strains and discuss the practical implications

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Available abstract

Azole fungicides have been used for more than three decades in the UK to control Septoria leaf blotch caused by the fungus Zymoseptoria tritici. Research has shown that the efficacy of some azoles (e.g. tebuconazole and triadimenol) can be compromised by the evolution and spread of insensitive strains carrying combinations of amino acid alterations (amino acid substitutions and a deletion) in the target protein sterol 14α-demethylase (CYP51). A stepwise accumulation of mutations has been observed since the early 1990s. Since 2012, CYP51 variants harbouring up to nine amino acid alterations can be found in the least sensitive strains. In addition, a 120 bp insertion in the CYP51 promoter linked with CYP51 overexpression has been found since 2009 in some strains representing two different CYP51 variants. In vitro fungicide sensitivity testing of different CYP51 variants (> 60) shows significant shifts in azole efficacy for all compounds tested (i.e.epoxiconazole, prothioconazole, prochloraz and tebuconazole). Here wepresent the genotype-to-phenotype relationships for these strains and discuss the practical implications

Key concepts: Tebuconazole, Septoria, Mycosphaerella graminicola, Azole, Fungicide, Biology, Genotype, Amino acid

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Evolution and spread of azole-insensitive Zymoseptoria tritici field isolates in the UK — Research Paper | ScholarLens