Leaf rust caused by Puccinia hordei G. Otth is an important disease of barley (Hordeum vulgare L.) in many regions of the world. Yield losses up to 32% have been reported in susceptible cultivars. The Rph5 gene confers resistance to the most prevalent races (8 and 30) of barley leaf rust in the USA. Therefore, the molecular mapping of Rph5 is of great interest. The objectives of this study were to map Rph5 and identify closely linked molecular markers. Genetic studies were performed by analysis of 93 and 91 [F.sub.2] plants derived from the crosses `Bowman' (rph5) x `Magnif 102' (Rph5) and `Moore' (rph5) x Virginia 92-42-46 (Rph5), respectively. Bulk segregent analysis (BSA) using amplified fragment length polymorphism (AFLP), restriction f...
A doubled haploid (DH) barley (Hordeum vulgare L.) population of 334 lines (ND24260 × Flagship) geno...
A dihaploid mapping population comprising 65 lines was developed between barley parent varieties Tal...
Isolation of disease resistance genes in barley was hampered by the large genome size, but has becom...
Leaf rust caused by Puccinia hordei is an important disease of barley (Hordeum vulgare) in many regi...
A resistance gene (Rph22) to barley leaf rust caused by Puccinia hordei was introgressed from the no...
Barley line Q21861 possesses an incompletely dominant gene (RphQ) for resistance to leaf rust caused...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
Key message: The quantitative barley leaf rust resistance gene, Rph26, was fine mapped within a H. b...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
KEY MESSAGE: A new gene Rph28 conferring resistance to barley leaf rust was discovered and fine-mapp...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
Six doubled haploid barley populations (Alexis × Sloop, Chebec × Harrington, Arapiles × Franklin, Pa...
Isolation of disease resistance genes in barley was hampered by the large genome size, but has becom...
Partial resistance quantitative trait loci (QTLs) Rphq11 and rphq16 against Puccinia hordei isolate ...
A doubled haploid (DH) barley (Hordeum vulgare L.) population of 334 lines (ND24260 × Flagship) geno...
A dihaploid mapping population comprising 65 lines was developed between barley parent varieties Tal...
Isolation of disease resistance genes in barley was hampered by the large genome size, but has becom...
Leaf rust caused by Puccinia hordei is an important disease of barley (Hordeum vulgare) in many regi...
A resistance gene (Rph22) to barley leaf rust caused by Puccinia hordei was introgressed from the no...
Barley line Q21861 possesses an incompletely dominant gene (RphQ) for resistance to leaf rust caused...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
Key message: The quantitative barley leaf rust resistance gene, Rph26, was fine mapped within a H. b...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
KEY MESSAGE: A new gene Rph28 conferring resistance to barley leaf rust was discovered and fine-mapp...
Barley leaf rust (BLR), caused by Puccinia hordei, is best controlled through genetic resistance. An...
Six doubled haploid barley populations (Alexis × Sloop, Chebec × Harrington, Arapiles × Franklin, Pa...
Isolation of disease resistance genes in barley was hampered by the large genome size, but has becom...
Partial resistance quantitative trait loci (QTLs) Rphq11 and rphq16 against Puccinia hordei isolate ...
A doubled haploid (DH) barley (Hordeum vulgare L.) population of 334 lines (ND24260 × Flagship) geno...
A dihaploid mapping population comprising 65 lines was developed between barley parent varieties Tal...
Isolation of disease resistance genes in barley was hampered by the large genome size, but has becom...