4.5 Article

Frequent intra- and inter-species introgression shapes the landscape of genetic variation in bread wheat

期刊

GENOME BIOLOGY
卷 20, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s13059-019-1744-x

关键词

Bread wheat; Genetic diversity; Haplotype; Introgression; Selection

资金

  1. Fundamental Research Funds for the Central Universities of Northwest A&F University (NWAFU)
  2. State's Key Project of Research and Development Program of China [2016YFD0100302, 2016YFD0101004]
  3. National Natural Science Foundation of China [31822052]
  4. National Thousand Youth Talents Plan

向作者/读者索取更多资源

BackgroundBread wheat is one of the most important and broadly studied crops. However, due to the complexity of its genome and incomplete genome collection of wild populations, the bread wheat genome landscape and domestication history remain elusive.ResultsBy investigating the whole-genome resequencing data of 93 accessions from worldwide populations of bread wheat and its diploid and tetraploid progenitors, together with 90 published exome-capture data, we find that the B subgenome has more variations than A and D subgenomes, including SNPs and deletions. Population genetics analyses support a monophyletic origin of domesticated wheat from wild emmer in northern Levant, with substantial introgressed genomic fragments from southern Levant. Southern Levant contributes more than 676Mb in AB subgenomes and enriched in the pericentromeric regions. The AB subgenome introgression happens at the early stage of wheat speciation and partially contributes to their greater genetic diversity. Furthermore, we detect massive alien introgressions that originated from distant species through natural and artificial hybridizations, resulting in the reintroduction of similar to 709Mb and similar to 1577Mb sequences into bread wheat landraces and varieties, respectively. A large fraction of these intra- and inter-introgression fragments are associated with quantitative trait loci of important traits, and selection events are also identified.ConclusionWe reveal the significance of multiple introgressions from distant wild populations and alien species in shaping the genetic components of bread wheat, and provide important resources and new perspectives for future wheat breeding.

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