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A haplotype-resolved pangenome of the barley wild relative Hordeum bulbosum

  • Jia Wu Feng
  • , Hélène Pidon
  • , Maria Cuacos
  • , Thomas Lux
  • , Axel Himmelbach
  • , Reza Haghi
  • , Jörg Fuchs
  • , Georg Haberer
  • , Yi Tzu Kuo
  • , Yu Guo
  • , Murukarthick Jayakodi
  • , Helena Toegelová
  • , Dörte Harpke
  • , Manuela Knauft
  • , Anne Fiebig
  • , Maren Maruschewski
  • , Moshe Ronen
  • , Amir Sharon
  • , Hana Šimková
  • , Klaus F.X. Mayer
  • Manuel Spannagl, Jochen Kumlehn, Stefan Heckmann, Andreas Houben, Frank R. Blattner, Nils Stein, Martin Mascher
  • Leibniz Institute of Plant Genetics and Crop Plant Research
  • Julius Kühn-Institut (JKI), Federal Research Centre for Cultivated Plants, Institute for Breeding Research on Horticultural Crops
  • Université de Montpellier
  • Helmholtz Zentrum München German Research Center for Environmental Health
  • Texas A&M AgriLife Research
  • Texas A and M University
  • Tel Aviv University
  • Institute of Experimental Botany of the Academy of Sciences of the Czech Republic
  • Murdoch University
  • Martin Luther University Halle-Wittenberg
  • German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

14 Zitate (Scopus)

Abstract

Wild plants can contribute valuable genes to their domesticated relatives1. Fertility barriers and a lack of genomic resources have hindered the effective use of crop–wild introgressions. Decades of research into barley’s closest wild relative, Hordeum bulbosum, a grass native to the Mediterranean basin and Western Asia, have yet to manifest themselves in the release of a cultivar bearing alien genes2. Here we construct a pangenome of bulbous barley comprising 10 phased genome sequence assemblies amounting to 32 distinct haplotypes. Autotetraploid cytotypes, among which the donors of resistance-conferring introgressions are found, arose at least twice, and are connected among each other and to diploid forms through gene flow. The differential amplification of transposable elements after barley and H. bulbosum diverged from each other is responsible for genome size differences between them. We illustrate the translational value of our resource by mapping non-host resistance to a viral pathogen to a structurally diverse multigene cluster that has been implicated in diverse immune responses in wheat and barley.

OriginalspracheEnglisch
Seiten (von - bis)429-438
Seitenumfang10
FachzeitschriftNature
Jahrgang645
Ausgabenummer8080
DOIs
PublikationsstatusVeröffentlicht - 11 Sept. 2025

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Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 2 – Kein Hunger
    SDG 2 – Kein Hunger

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