<p>Wheat is the most widely cultivated crop in the world, with over 215 million hectares grown annually. The 10+ Wheat Genomes Project recently sequenced and assembled to chromosome-level the genomes of nine wheat cultivars, uncovering genetic diversity and selection within the pan-genome of wheat. Here, we provide a wheat pan-transcriptome with de novo annotation and differential expression analysis for these wheat cultivars across multiple tissues. Using the de novo annotations we identify cultivar-specific genes and define the core and dispensable genomes. Expression analysis across cultivars and tissues reveals conservation in expression between a large core set of homeologous genes, in addition to widespread changes in subgenome homeolog expression bias between cultivars and cultivar-specific expression profiles. We utilise both the newly constructed gene-based wheat pan-genome and pan-transcriptome, demonstrating variation in the prolamin superfamily and immune-reactive proteins across cultivars.</p>

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De novo annotation reveals transcriptomic complexity across the hexaploid wheat pan-genome

  • Benjamen White,
  • Thomas Lux,
  • Rachel Rusholme-Pilcher,
  • Angéla Juhász,
  • Gemy Kaithakottil,
  • Susan Duncan,
  • James Simmonds,
  • Hannah Rees,
  • Jonathan Wright,
  • Joshua Colmer,
  • Sabrina Ward,
  • Ryan Joynson,
  • Benedict Coombes,
  • Naomi Irish,
  • Suzanne Henderson,
  • Tom Barker,
  • Helen Chapman,
  • Leah Catchpole,
  • Karim Gharbi,
  • Utpal Bose,
  • Moeko Okada,
  • Hirokazu Handa,
  • Shuhei Nasuda,
  • Kentaro K. Shimizu,
  • Heidrun Gundlach,
  • Daniel Lang,
  • Guy Naamati,
  • Erik J. Legg,
  • Arvind K. Bharti,
  • Michelle L. Colgrave,
  • Wilfried Haerty,
  • Cristobal Uauy,
  • David Swarbreck,
  • Philippa Borrill,
  • Jesse A. Poland,
  • Simon G. Krattinger,
  • Nils Stein,
  • Klaus F. X. Mayer,
  • Curtis Pozniak,
  • Sean Walkowiak,
  • Valentyna Klymiuk,
  • Brook Byrns,
  • Kirby Nilsen,
  • Jennifer Ens,
  • Krystalee Wiebe,
  • Amidou N’Diaye,
  • Pierre J. Hucl,
  • Curtis J. Pozniak,
  • Bin Xiao Fu,
  • Liangliang Gao,
  • Emily Delorean,
  • Dal-Hoe Koo,
  • Allen K. Fritz,
  • Jesse Poland,
  • Cecile Monat,
  • Axel Himmelbach,
  • Anne Fiebig,
  • Sudharsan Padmarasu,
  • Uwe Scholz,
  • Martin Mascher,
  • Georg Haberer,
  • Mulualem T. Kassa,
  • Pierre Fobert,
  • Sateesh Kagale,
  • Jemima Brinton,
  • Ricardo H. Ramirez-Gonzalez,
  • Michael Bevan,
  • Neil McKenzie,
  • Burkhard Steuernagel,
  • Markus C. Kolodziej,
  • Simon G. Krattinger,
  • Beat Keller,
  • Thomas Wicker,
  • Dinushika Thambugala,
  • Curt A. McCartney,
  • Venkat Bandi,
  • Jorge Nunez Siri,
  • Carl Gutwin,
  • Catharine Aquino,
  • Masaomi Hatakeyama,
  • Dario Copetti,
  • Gwyneth Halstead-Nussloch,
  • Timothy Paape,
  • Rie Shimizu-Inatsugi,
  • Kentaro K. Shimizu,
  • Tomohiro Ban,
  • Kanako Kawaura,
  • Toshiaki Tameshige,
  • Hiroyuki Tsuji,
  • Luca Venturini,
  • Matthew Clark,
  • Bernardo Clavijo,
  • Christine Fosker,
  • Gonzalo Garcia Accinelli,
  • Darren Heavens,
  • Ksenia Krasileva,
  • Keith A. Gardner,
  • Nick Fradgley,
  • Lawrence Percival-Alwyn,
  • James Cockram,
  • Juan Gutierrez-Gonzalez,
  • Gary Muehlbauer,
  • Chu Shin Koh,
  • Andrew G. Sharpe,
  • Jasline Deek,
  • Alejandro C. Costamagna,
  • Hiroyuki Kanamori,
  • Fuminori Kobayashi,
  • Tsuyoshi Tanaka,
  • Jianzhong Wu,
  • Hirokazu Handa,
  • Tony Kuo,
  • Jun Sese,
  • Kazuki Murata,
  • Yusuke Nabeka,
  • Shuhei Nasuda,
  • Philomin Juliana,
  • Ravi Singh,
  • Hikmet Budak,
  • Ian Small,
  • Joanna Melonek,
  • Sylvie Cloutier,
  • Gabriel Keeble-Gagnère,
  • Josquin Tibbets,
  • Erik Legg,
  • Arvind Bharti,
  • Peter Langridge,
  • Ken Chalmers,
  • Assaf Distelfeld,
  • Manuel Spannagl,
  • Anthony Hall

摘要

Wheat is the most widely cultivated crop in the world, with over 215 million hectares grown annually. The 10+ Wheat Genomes Project recently sequenced and assembled to chromosome-level the genomes of nine wheat cultivars, uncovering genetic diversity and selection within the pan-genome of wheat. Here, we provide a wheat pan-transcriptome with de novo annotation and differential expression analysis for these wheat cultivars across multiple tissues. Using the de novo annotations we identify cultivar-specific genes and define the core and dispensable genomes. Expression analysis across cultivars and tissues reveals conservation in expression between a large core set of homeologous genes, in addition to widespread changes in subgenome homeolog expression bias between cultivars and cultivar-specific expression profiles. We utilise both the newly constructed gene-based wheat pan-genome and pan-transcriptome, demonstrating variation in the prolamin superfamily and immune-reactive proteins across cultivars.