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Genetic Diversity Linkage Disequilibrium and Population Structure of Bulgarian Bread Wheat Assessed by Genome-Wide Distributed SNP Markers: From Old Germplasm to Semi-Dwarf Cultivars

机译:基因组分布式SNP标记评估保加利亚面包小麦的遗传多样性联系不平衡和人口结构:从旧种质到半矮种品种

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摘要

Genetic diversity and population structure are key resources for breeding purposes and genetic studies of important agronomic traits in crops. In this study, we described SNP-based genetic diversity, linkage disequilibrium and population structure in a panel of 179 bread wheat advanced cultivars and old accessions from Bulgaria, using an optimized wheat 25K Infinium iSelect array. Out of 19,019 polymorphic SNPs, 17,968 had a known chromosome position on the A (41%), B (42%) and D (11%) genome, and 6% were not assigned to any chromosome. Homoeologous group 4, in particular chromosome 4D, was the least polymorphic. In the total population, the Nei’s gene diversity was within the range 0.1–0.5, and the polymorphism information content ranged from 0.1 to 0.4. Significant differences between the old and modern collections were revealed with respect to the linkage disequilibrium (LD): the average values for LD (r2), the percentage of the locus pairs in LD and the LD decay were 0.64, 16% and 3.3 for the old germplasm, and 0.43, 30% and 4.1 for the modern releases, respectively. Structure and k-means clustering algorithm divided the panel into three groups. The old accessions formed a distinct subpopulation. The cluster analysis further distinguished the modern releases according to the geographic region and genealogy. Gene exchange was evidenced mainly between the subpopulations of contemporary cultivars. The achieved understanding of the genetic diversity and structure of the Bulgarian wheat population and distinctiveness of the old germplasm could be of interest for breeders developing cultivars with improved characteristics. The obtained knowledge about SNP informativeness and the LD estimation are worthwhile for selecting markers and for considering the composition of a population in association mapping studies of traits of interest.
机译:遗传多样性和人口结构是作物中重要农艺性状的育种目的和遗传研究的关键资源。在这项研究中,我们描述了SNP的遗传多样性,使用优化的小麦25K Infinium InElect阵列,在179个面包小麦先进品种和旧的加入中进行了基于SNP的遗传多样性,连锁不平衡和人口结构。在19,019个多态SnP中,17,968具有已知的A(41%),B(42%)和D(11%)基因组的染色体位置,并且6%未分配给任何染色体。同种型组4,特别是染色体4D,是最常态的。在总人口中,NEI的基因多样性在0.1-0.5的范围内,多态性信息含量范围为0.1至0.4。关于连锁不平衡(LD)揭示了旧和现代收集之间的显着差异:LD(R2)的平均值,LD中的轨迹对的百分比为0.64,16%和3.3现代版本的旧种质和0.43,30%和4.1。结构和k均值聚类算法将面板分成三组。旧的牧区形成了不同的亚贫困。根据地理区域和家谱,集群分析进一步区分了现代版本。基因交易所主要在当代品种的亚群之间证明。实现了对保加利亚小麦人口的遗传多样性和结构的理解,旧种质的独特性可能对育种者发育具有改善特征的育种者感兴趣。获得关于SNP信息性和LD估计的知识对于选择标记是值得选择的,并考虑在关联映射研究中的群体的组成。

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