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Harnessing Landrace Diversity Empowers Wheat Breeding for Climate Resilience

Authors
Shifeng Cheng,Cong Feng
Luzie U. Wingen,Hong Cheng,Andrew B. Riche,Mei Jiang,Michelle Leverington-Waite,Zejian Huang,Sarah Collier,Simon Orford,Xiaoming Wang,Rajani Awal,Gary Barker,Tom O'Hara,Clare Lister,Ajay Siluveru,Jesus Quiroz-Chavez,Ricardo H. Ramirez-Gonzalez,Ruth Bryant,Simon Berry,Urmil Bansal,Harbans S. Bariana,Malcolm J. Bennett,Breno Bicego,Lorelei Bilham,James K.M. Brown,Amanda Burridge,Chris Burt,Milika Buurman,March Castle,Laetitia Chartrain,Baizhi Chen,Worku Denbel,Ahmed F. Elkot,Paul Fenwick,David Feuerhelm,John Foulkes,Oorbessy Gaju,Adam Gauley,Kumar Gaurav,Amber N. Hafeez,Ruirui Han,Richard Horler,Junliang Hou,Muhammad S. Iqbal,Matthew Kerton,Ankica Kondic-Spica,Ania Kowalski,Jacob Lage,Xiaolong Li,Hongbing Liu,Shiyan Liu,Alison Lovegrove,Lingling Ma,Cathy Mumford,Saroj Parmar,Charlie Philp,Darryl Playford,Alexandra M. Przewieslik-Allen,Zareen Sarfraz,David Schafer,Peter R. Shewry,Yan Shi,Gustavo Slafer,Baoxing Song,Bo Song,David Steele,Burkhard Steuernagel,Phillip Tailby,Simon Tyrrell,Abdul Waheed,Mercy N. Wamalwa,Xingwei Wang,Yanping Wei,Mark Winfield,Shishi Wu,Yubing Wu,Brande B.H. Wulff,Wenfei Xian,Yawen Xu,Yunfeng Xu,Quan Yuan,Xin Zhang,Keith J. Edwards,Laura Dixon,Paul Nicholson,Noam Chayut,Malcolm J. Hawkesford,Cristobal Uauy,Dale Sanders,Sanwen Huang,Simon Griffiths,Malcolm Bennett,Ran Han,Hongbin Liu,David Stoppa,D. Steele,K. Edwards,Luzie Wingen,A. Riche,Michelle Leverington‐Waite,Tom O’Hara,Jesús Quiroz-Chávez,Ricardo Ramírez-González,Harbans Bariana,J. Brown,M. Buurman,Laëtitia Chartrain,Baifeng Chen,Ahmed Elkot,J. Foulkes,Amber Hafeez,Muhammad Iqbal,Ankica Kondić‐Špika,Jean‐Luc Lage,S. Parmar,C Philp,Denese Playford,Alexandra Przewieslik‐Allen,David Schäfer,Peter Shewry,Mercy Wamalwa,X Wang,Brande Wulff,X. Zhang,Keith Edwards,P. Nicholson,Malcolm Hawkesford
+126 authors
,Cristóbal Uauy
Published
Jan 1, 2023
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Abstract

Breeding crops resilient to climate change is urgently needed to help ensure food security. A key challenge is to harness genetic diversity to optimise adaptation, yield, stress resilience and nutrition. We examined the genetic and phenotypic diversity of the A.E. Watkins landrace collection 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, leaving five groups as previously untapped sources for breeding. This provides access to landrace-specific functional variations using structured germplasm, genotyping and informatics resources. Employing complementary genetic populations and approaches, we identified thousands of high-resolution quantitative trait loci (QTL) and significant marker-trait associations for major traits, revealing many Watkins-unique loci that can confer superior traits in modern wheat. Furthermore, we identified and functionally verified causative genes for climate-change adaptation, nutritional enhancement and resistance to wheat blast. Finally, 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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