Assessment of the cytochrome B substitution G143A in the Algerian population of Mycosphaerella graminicola.
Nora Allioui, Ali Siah, Louhichi Brinis, Ph Reignault, Patrice Halama
Abstract
Nora Allioui, Ali Siah, Louhichi Brinis, Ph Reignault, Patrice Halama
Abstract
Mycosphoerella graminicola (anamorph: Zymoseptoria tritici), causal agent of Septoria tritici blotch, is currently one of the most damaging diseases on both bread and durum wheat crops worldwide. Since wheat resistance against this pathogen is always partial at various extents in most cultivars, disease control relies mainly on the use of fungicides. However, management of fungicide applications is necessary in order to avoid the emergence and widespread of fungicide resistant genotypes within populations of the pathogen. In the present study, we investigated for the first time the resistance of M. graminicola toward strobilurin fungicides in Algeria. This was performed by identifying the G143A substitution of the cytochrome b encoding sequence (which confers resistance to strobilurins) in a collection of 120 single-conidial isolates. These isolates have been sampled during the 2012 growing season from five distinct geographical locations (Guelma, Annaba, Constantine, Skikda and Oran). We used a PCR-based mismatch mutation assay allowing the amplification of either G143 (sensitive) or A143 (resistant) allele in each isolate. This study should give valuable information regarding the management of strobilurin use in order to control in a durable manner M. graminicola epidemics in Algeria.
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Mycosphoerella graminicola (anamorph: Zymoseptoria tritici), causal agent of Septoria tritici blotch, is currently one of the most damaging diseases on both bread and durum wheat crops worldwide. Since wheat resistance against this pathogen is always partial at various extents in most cultivars, disease control relies mainly on the use of fungicides. However, management of fungicide applications is necessary in order to avoid the emergence and widespread of fungicide resistant genotypes within populations of the pathogen. In the present study, we investigated for the first time the resistance of M. graminicola toward strobilurin fungicides in Algeria. This was performed by identifying the G143A substitution of the cytochrome b encoding sequence (which confers resistance to strobilurins) in a collection of 120 single-conidial isolates. These isolates have been sampled during the 2012 growing season from five distinct geographical locations (Guelma, Annaba, Constantine, Skikda and Oran). We used a PCR-based mismatch mutation assay allowing the amplification of either G143 (sensitive) or A143 (resistant) allele in each isolate. This study should give valuable information regarding the management of strobilurin use in order to control in a durable manner M. graminicola epidemics in Algeria.
Key concepts: Mycosphaerella graminicola, Strobilurin, Fungicide, Septoria, Graminicola, Biology, Population, Pathogen