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Showing 1–7 of 7 results
Advanced filters: Author: Mehran Patpour Clear advanced filters
  • Analysis of 46 newly sequenced or re-sequenced Tausch’s goatgrass (Aegilops tauschii) accessions establishes the origin of the bread wheat (Triticum aestivum) D genome from genetically and geographically discrete Ae. tauschii subpopulations.

    • Emile Cavalet-Giorsa
    • Andrea González-Muñoz
    • Simon G. Krattinger
    ResearchOpen Access
    Nature
    Volume: 633, P: 848-855
  • The tall wheat grass-derived stem rust resistance genes Sr26 and Sr61 are among a few ones that are effective to all current dominant races of stem rust, including Ug99. Here, the authors show that the two genes are present in a small non-recombinogenic segment but encode two unrelated NLR proteins.

    • Jianping Zhang
    • Timothy C. Hewitt
    • Evans S. Lagudah
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-8
  • Aegilops sharonensis is a wild diploid relative of wheat. Here, the authors assemble the genome of Ae. sharonensis and use the assembly as an aid to clone the Ae. sharonensis-derived stem rust resistance gene Sr62 in the allohexaploid genome of wheat.

    • Guotai Yu
    • Oadi Matny
    • Brande B. H. Wulff
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-13
  • The resistance gene Sr43, which was crossed into bread wheat from the wild grass Thinopyrum elongatum, encodes an unusual protein kinase fusion protein that confers wheat stem rust resistance.

    • Guotai Yu
    • Oadi Matny
    • Brande B. H. Wulff
    ResearchOpen Access
    Nature Genetics
    Volume: 55, P: 921-926
  • Clare Lewis et al. report the first identification in nearly 60 years of a cultivated wheat plant infected with the fungal pathogen Puccinia graminis f.sp. tritici (wheat stem rust) in the United Kingdom. They find that only 20% of UK wheat varieties are resistant to this strain and urge growers to resume resistance breeding programs.

    • Clare M. Lewis
    • Antoine Persoons
    • Diane G. O. Saunders
    ResearchOpen Access
    Communications Biology
    Volume: 1, P: 1-9