4.3 Article

Genetic diversity and population structure analysis of synthetic and bread wheat accessions in Western Siberia

期刊

JOURNAL OF APPLIED GENETICS
卷 60, 期 3-4, 页码 283-289

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s13353-019-00514-x

关键词

Genotyping-by-sequencing; SNP markers; Genomic diversity; Population differentiation; Analysis of molecular variance; Triticum aestivum

资金

  1. Russian Science Foundation [16-16-10005]
  2. CRP WHEAT
  3. Ministry of Food, Agriculture and Livestock of Turkey
  4. Bill and Melinda Gates Foundation
  5. UK Department for International Development [OPP1133199]
  6. Russian Science Foundation [19-16-13002] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

Recurrent selection and intercrossing between best of the best parents in each generation of breeding cycle resulted in a narrower genetic diversity in elite wheat (Triticum aestivum L.) germplasm. Therefore, we investigated diverse source of 143 synthetic and bread wheat accessions for identifying potentially rich genetic resources for improving the genetic diversity in wheat. This study identified 47,526 genotyping-by-sequencing-derived SNP markers that were nearly evenly distributed across three genomes of wheat. The population structure analysis identified three distinct clusters (Japan synthetics, CIMMYT synthetics, and bread wheat) of wheat genotypes on the basis of type and geographical origin of wheat accessions. Population differentiation using analysis of molecular variance indicated 21% of the total genetic variance among subgroups and the remainder within subgroups. This study also identified that the Japan synthetic group was the most divergent group compared with other subgroups. The genetic diversity comparisons between synthetic and bread wheat lines showed that the gene diversity of synthetic wheat was 33% higher than bread wheat accessions, indicating the potential use of these lines for broadening the genetic diversity of modern wheat cultivars. The results from this study will be helpful in further understanding genomic features of wheat and facilitate their use in wheat breeding programs.

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