...
首页> 外文期刊>BMC Genomics >Genomic analysis of Spanish wheat landraces reveals their variability and potential for breeding
【24h】

Genomic analysis of Spanish wheat landraces reveals their variability and potential for breeding

机译:西班牙小麦地体的基因组分析揭示了它们的繁殖率和潜力

获取原文
   

获取外文期刊封面封底 >>

       

摘要

One of the main goals of the plant breeding in the twenty-first century is the development of crop cultivars that can maintain current yields in unfavorable environments. Landraces that have been grown under varying local conditions include genetic diversity that will be essential to achieve this objective. The Center of Plant Genetic Resources of the Spanish Institute for Agriculture Research maintains a broad collection of wheat landraces. These accessions, which are locally adapted to diverse eco-climatic conditions, represent highly valuable materials for breeding. However, their efficient use requires an exhaustive genetic characterization. The overall aim of this study was to assess the diversity and population structure of a selected set of 380 Spanish landraces and 52 reference varieties of bread and durum wheat by high-throughput genotyping. The DArTseq GBS approach generated 10?K SNPs and 40?K high-quality DArT markers, which were located against the currently available bread and durum wheat reference genomes. The markers with known locations were distributed across all chromosomes with relatively well-balanced genome-wide coverage. The genetic analysis showed that the Spanish wheat landraces were clustered in different groups, thus representing genetic pools providing a range of allelic variation. The subspecies had a major impact on the population structure of the durum wheat landraces, with three distinct clusters that corresponded to subsp. durum, turgidum and dicoccon being identified. The population structure of bread wheat landraces was mainly biased by geographic origin. The results showed broader genetic diversity in the landraces compared to a reference set that included commercial varieties, and higher divergence between the landraces and the reference set in durum wheat than in bread wheat. The analyses revealed genomic regions whose patterns of variation were markedly different in the landraces and reference varieties, indicating loci that have been under selection during crop improvement, which could help to target breeding efforts. The results obtained from this work will provide a basis for future genome-wide association studies.
机译:二十一世纪植物育种的主要目标之一是作物品种的发展,可以维持当前产量的不利环境。在不同的当地条件下成长的地位包括遗传多样性,这对于实现这一目标至关重要。西班牙农业研究所的植物遗传资源中心维持了广泛的小麦地体积。这些含义在本地适应各种生态气候条件,代表了对繁殖的高价值材料。然而,它们有效的使用需要详尽的遗传表征。本研究的整体目标是通过高通量基因分型来评估所选380种西班牙样片和52个参考品种面包和杜兰姆小麦的多样性和人口结构。 Dartseq GBS方法产生10?K SNP和40?K高质量的飞镖标记,其位于目前可用的面包和硬质小麦参考基因组。具有已知位置的标记分布在所有染色体上分布,具有相对良好平衡的基因组覆盖范围。遗传分析表明,西班牙小麦地体在不同的基团中聚集,从而代表了提供一系列等位基因变异的遗传池。亚种对杜兰姆小麦样板的人口结构产生了重大影响,其中三个与亚普相对应的三个不同的集群。杜伦姆,Turgidum和Dicoccon被识别。面包小麦样片的人口结构主要由地理来源偏向。结果表明,与包括商业品种的参考集相比,体重标签中的遗传多样性,以及在面包小麦中杜兰麦小麦之间的差异较高。分析揭示了体重体和参考品种的变异模式的基因组区域,表明在作物改善期间在选择的基因座,这有助于瞄准育种努力。从这项工作获得的结果将为未来的基因组 - 范围协会研究提供基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号