Identification of septoria nodorum blotch susceptibility genes in hard winter wheat

Abstract Key message Characterized and unknown septoria nodorum blotch sensitivity/resistance genes were identified in contemporary US hard winter wheat. Abstract The necrotrophic fungus Parastagonospora nodorum is the causal agent of septoria nodorum blotch (SNB) of wheat. To determine the prevalence of SNB sensitivity genes in a contemporary US hard winter wheat (HWW), we evaluated a panel of 619 breeding lines and cultivars against five P. nodorum isolates and five necrotrophic effectors (NEs), SnToxA, SnTox1, SnTox3, SnTox267, and SnTox5, and genotyped the panel using genotyping-by-sequencing (GBS) markers and diagnostic kompetetive allele-specific PCR (KASP) markers for the sensitivity genes Tsn1-B1 , Snn1-B1 , and Snn3-B1/B2 . GBS analysis identified 34,357 GBS-single-nucleotide polymorphism (SNP) markers . Evaluations against P. nodorum isolates showed that 40–67% of the genotypes were susceptible in the panel. Toxin infiltration assays showed that 54%, 2%, 37%, 13%, and 15% of the genotypes were sensitive to SnToxA, SnTox1, SnTox3, SnTox267, and SnTox5, respectively. Diagnostic KASP markers for Tsn1-B1 , Snn1-B1 , and Snn3-B1/B2 showed prediction accuracies of 98%, 75%, and 92% for the corresponding effectors SnToxA, SnTox1, and SnTox3, respectively. Genome-wide association studies (GWAS) not only confirmed the presence of the previously characterized sensitivity genes Tsn1-B1 , Snn1-B1 , Snn2 , Snn3-B1/B2 , and Snn5-B1 , but also identified new loci to be associated with responses to P. nodorum isolates and NEs. Of these, Qsnb.osu-2AS on chromosome 2AS was associated with responses to all five isolates. KASP markers linked to Snn5-B1 , Snn2 , and Qsnb.osu-2AS were developed for potential use in marker-assisted selection. These findings should guide breeding for SNB resistance in hard winter wheat.

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Publication Details

Journal
Theoretical and Applied Genetics
Published
2026-09-15
DOI
https://doi.org/10.1007/s00122-026-05359-7
Primary Topic
Wheat and Barley Genetics and Pathology
Type
article
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article

Identification of septoria nodorum blotch susceptibility genes in hard winter wheat

Meriem Aoun, Amy Bernado, Danielle J. Holmes, Rajat Sharma et al.
Theoretical and Applied Genetics
Wheat and Barley Genetics and Pathology
article

Identification of septoria nodorum blotch susceptibility genes in hard winter wheat

Meriem Aoun, Amy Bernado, Danielle J. Holmes, Rajat Sharma, Anju Maan Ara, Brett F. Carver, Paul St. Amand, Timothy L. Friesen, Guihua Bai
article en

Abstract

Abstract Key message Characterized and unknown septoria nodorum blotch sensitivity/resistance genes were identified in contemporary US hard winter wheat. Abstract The necrotrophic fungus Parastagonospora nodorum is the causal agent of septoria nodorum blotch (SNB) of wheat. To determine the prevalence of SNB sensitivity genes in a contemporary US hard winter wheat (HWW), we evaluated a panel of 619 breeding lines and cultivars against five P. nodorum isolates and five necrotrophic effectors (NEs), SnToxA, SnTox1, SnTox3, SnTox267, and SnTox5, and genotyped the panel using genotyping-by-sequencing (GBS) markers and diagnostic kompetetive allele-specific PCR (KASP) markers for the sensitivity genes Tsn1-B1 , Snn1-B1 , and Snn3-B1/B2 . GBS analysis identified 34,357 GBS-single-nucleotide polymorphism (SNP) markers . Evaluations against P. nodorum isolates showed that 40–67% of the genotypes were susceptible in the panel. Toxin infiltration assays showed that 54%, 2%, 37%, 13%, and 15% of the genotypes were sensitive to SnToxA, SnTox1, SnTox3, SnTox267, and SnTox5, respectively. Diagnostic KASP markers for Tsn1-B1 , Snn1-B1 , and Snn3-B1/B2 showed prediction accuracies of 98%, 75%, and 92% for the corresponding effectors SnToxA, SnTox1, and SnTox3, respectively. Genome-wide association studies (GWAS) not only confirmed the presence of the previously characterized sensitivity genes Tsn1-B1 , Snn1-B1 , Snn2 , Snn3-B1/B2 , and Snn5-B1 , but also identified new loci to be associated with responses to P. nodorum isolates and NEs. Of these, Qsnb.osu-2AS on chromosome 2AS was associated with responses to all five isolates. KASP markers linked to Snn5-B1 , Snn2 , and Qsnb.osu-2AS were developed for potential use in marker-assisted selection. These findings should guide breeding for SNB resistance in hard winter wheat.

Theoretical and Applied GeneticsVol. 139(10)
Oklahoma State University (US), Kansas State University (US), Center for Grain and Animal Health Research (US), Edward T. Schafer Agricultural Research Center (US)
Life in Land
Openalex Percentile: Top 13%
Wheat and Barley Genetics and Pathology
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