Genome-wide association analyses of leaf rust resistance in cultivated emmer wheat
Key message Fifteen and eleven loci, with most loci being novel, were identified to associate with seedling and adult resistances, respectively, to the durum-specific races of leaf rust pathogen in cultivated emmer. Leaf rust, caused by Puccinia triticina ( Pt ), constantly threatens durum ( Triticu...
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Veröffentlicht in: | Theoretical and applied genetics 2023, Vol.136 (1), p.20-20, Article 20 |
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Sprache: | eng |
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Fifteen and eleven loci, with most loci being novel, were identified to associate with seedling and adult resistances, respectively, to the durum-specific races of leaf rust pathogen in cultivated emmer.
Leaf rust, caused by
Puccinia triticina
(
Pt
), constantly threatens durum (
Triticum turgidum
ssp.
durum
) and bread wheat (
Triticum aestivum
) production worldwide. A
Pt
race BBBQD detected in California in 2009 poses a potential threat to durum production in North America because resistance source to this race is rare in durum germplasm. To find new resistance sources, we assessed a panel of 180 cultivated emmer wheat (
Triticum turgidum
ssp.
dicoccum
) accessions for seedling resistance to BBBQD and for adult resistance to a mixture of durum-specific races BBBQJ, CCMSS, and MCDSS in the field, and genotyped the panel using genotype-by-sequencing (GBS) and the 9 K SNP (Single Nucleotide Polymorphism) Infinium array. The results showed 24 and nine accessions consistently exhibited seedling and adult resistance, respectively, with two accessions providing resistance at both stages. We performed genome-wide association studies using 46,383 GBS and 4,331 9 K SNP markers and identified 15 quantitative trait loci (QTL) for seedling resistance located mostly on chromosomes 2B and 6B, and 11 QTL for adult resistance on 2B, 3B and 6A. Of these QTL, one might be associated with leaf rust resistance (
Lr
) gene
Lr53
, and two with the QTL previously reported in durum or hexaploid wheat. The remaining QTL are potentially associated with new
Lr
genes. Further linkage analysis and gene cloning are necessary to identify the causal genes underlying these QTL. The emmer accessions with high levels of resistance will be useful for developing mapping populations and adapted durum germplasm and varieties with resistance to the durum-specific races. |
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ISSN: | 0040-5752 1432-2242 |
DOI: | 10.1007/s00122-023-04281-6 |