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Molecular genetic diversity and population structure of a selected core set in garlic and its relatives using novel SSR markers

机译:使用新型SSR标记的大蒜及其亲缘种选择核心组的分子遗传多样性和种群结构

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P>Garlic is widely consumed for its culinary and medical benefits. Six hundred and thirteen accessions of garlic and its relatives with diverse origin were evaluated for genetic diversity at eight recently novel simple sequence repeat loci in this study. A total of 113 alleles were detected, the average allelic richness was 14.1 alleles per locus. Using a heuristic approach, a core set of 95 accessions was successfully developed, which showed 100% coverage of alleles with minimum redundancy. The model-based structure analysis here revealed the presence of four subpopulations in the selected core set, which was basically consistent with clustering based on the genetic distance. The analysis of molecular variance based on this core set showed that between-population component of genetic variance is < 15.6% in contrast to 84.4% for the within population component. Overall F-ST value was 0.1560, indicating a moderate differentiation among the four groups. These results will provide an effective aid for future allele mining, association genetics, mapping and cloning gene(s), germplasm conservation, and improvement programs.
机译:P>大蒜因其烹饪和医学益处而被广泛食用。在这项研究中,评估了113个大蒜及其起源不同的亲戚的8个最近新的简单序列重复基因座的遗传多样性。总共检测到113个等位基因,平均等位基因丰富度为每个基因座14.1个等位基因。使用启发式方法,成功开发了95个种质的核心集,显示出100%的等位基因覆盖率且冗余度最小。这里基于模型的结构分析揭示了所选核心集中存在四个亚群,这与基于遗传距离的聚类基本一致。基于该核心集的分子变异分析表明,群体变异的种群间成分<15.6%,而内部种群成分的变异率为84.4%。总体F-ST值为0.1560,表明四组之间有中等差异。这些结果将为将来的等位基因挖掘,关联遗传学,定位和克隆基因,种质保护和改良计划提供有效的帮助。

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