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  Harnessing landrace diversity empowers wheat breeding

Cheng, S., Feng, C., Wingen, L., Cheng, H., Riche, A., Jiang, M., et al. (2024). Harnessing landrace diversity empowers wheat breeding. Nature, Epub ahead. doi:10.1038/s41586-024-07682-9.

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Cheng, S, Author
Feng, C, Author
Wingen, LU, Author
Cheng, H, Author
Riche, AB, Author
Jiang, M, Author
Leverington-Waite, M, Author
Huang, Z, Author
Collier, S, Author
Orford, S, Author
Wang, X, Author
Awal, R, Author
Barker, G, Author
O'Hara , T, Author
Lister, C, Author
Siluveru, A, Author
Quiroz-Chávez, J, Author
Ramírez-González, RH, Author
Bryant, R, Author
Berry, S, Author
Bansal, U, AuthorBariana, HS, AuthorBennett, MJ, AuthorBicego, B, AuthorBilham, L, AuthorBrown, JKM, AuthorBurridge, A, AuthorBurt, C, AuthorBuurman, M, AuthorCastle, M, AuthorChartrain, L, AuthorChen, B, AuthorDenbel, W, AuthorElkot, AF, AuthorFenwick , P, AuthorFeuerhelm, D, AuthorFoulkes, J, AuthorGaju, O, AuthorGauley, A, AuthorGaurav, K, AuthorHafeez, AN, AuthorHan, R, AuthorHorler, R, AuthorHou, J, AuthorIqbal, MS, AuthorKerton, M, AuthorKondic-Spica, A, AuthorKowalski, A, AuthorLage, J, AuthorLi, X, AuthorLiu, H, AuthorLiu, S, AuthorLovegrove, A, AuthorMa, L, AuthorMumford, C, AuthorParmar, S, AuthorPhilp, C, AuthorPlayford, D, AuthorPrzewieslik-Allen , AM, AuthorSarfraz, Z, AuthorSchafer, D, AuthorShewry, PR, AuthorShi, Y, AuthorSlafer, G, AuthorSong, B, AuthorSong, B, AuthorSteele, D, AuthorSteuernagel , B, AuthorTailby, P, AuthorTyrrell, S, AuthorWaheed, A, AuthorWamalwa, MN, AuthorWang, X, AuthorWei, Y, AuthorWinfield, M, AuthorWu, S, AuthorWu, Y, AuthorWulff, BBH, AuthorXian, W1, Author                 Xu, Y, AuthorXu, Y, AuthorYuan, Q, AuthorZhang, X, AuthorEdwards, KJ, AuthorDixon, L, AuthorNicholson, P, AuthorChayut, N, AuthorHawkesford , MJ, AuthorUauy, C, AuthorSanders, D, AuthorHuang, S, AuthorGriffiths, S, Author more..
Affiliations:
1Department Molecular Biology, Max Planck Institute for Biology Tübingen, Max Planck Society, ou_3371687              

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 Abstract: Harnessing genetic diversity in major staple crops through the development of new breeding capabilities is essential to ensure food security1. Here we examined the genetic and phenotypic diversity of the A.E. Watkins landrace collection2 of bread wheat (Triticum aestivum), a major global cereal, through whole-genome re-sequencing (827 Watkins landraces and 208 modern cultivars) and in-depth field evaluation spanning a decade. We discovered that modern cultivars are derived from just two of the seven ancestral groups of wheat and maintain very long-range haplotype integrity. The remaining five groups represent untapped genetic sources, providing access to landrace-specific alleles and haplotypes for breeding. Linkage disequilibrium (LD) based haplotypes and association genetics analyses link Watkins genomes to the thousands of high-resolution quantitative trait loci (QTL), and significant marker-trait associations identified. Using these structured germplasm, genotyping and informatics resources, we revealed many Watkins-unique beneficial haplotypes that can confer superior traits in modern wheat. Furthermore, we assessed the phenotypic effects of 44,338 Watkins-unique haplotypes, introgressed from 143 prioritised QTL in the context of modern cultivars, bridging the gap between landrace diversity and current breeding. This study establishes a framework for systematically utilising genetic diversity in crop improvement to achieve sustainable food security.

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 Dates: 2024-06
 Publication Status: Published online
 Pages: -
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 Rev. Type: -
 Identifiers: DOI: 10.1038/s41586-024-07682-9
PMID: 38885696
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Title: Nature
  Abbreviation : Nature
Source Genre: Journal
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Publ. Info: London : Nature Publishing Group
Pages: - Volume / Issue: Epub ahead Sequence Number: - Start / End Page: - Identifier: ISSN: 0028-0836
CoNE: https://pure.mpg.de/cone/journals/resource/954925427238