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首页> 外文期刊>Molecular Breeding >Development of an allele-mining set in rice using a heuristic algorithm and SSR genotype data with least redundancy for the post-genomic era
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Development of an allele-mining set in rice using a heuristic algorithm and SSR genotype data with least redundancy for the post-genomic era

机译:利用启发式算法和SSR基因型数据在水稻中开发等位基因挖掘集,以减少后基因组时代的重复

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摘要

The allelic diversity of a collection of 4046 rice accessions was assessed using 15 neutral SSR markers distributed throughout the genome. A total of 482 alleles were detected; the average allelic richness was 32.1 alleles per locus. Using a heuristic approach, an allele-mining set was successfully developed on the basis of SSR marker data. 162 accessions of the allele-mining set, accounting for about 4.0% of the entire collection, captured all of the alleles (482) retained in the entire collection, which showed 100% coverage of alleles with minimum redundancy. As a result of validation of this heuristic approach using another 14 SSR markers associated with starch, 70% of the total alleles and 83% of the restricted alleles (allele frequency > 0.05%) were captured in this allele-mining set. The results showed that the heuristic approach meets the condition as an allele-mining set even when applied to another specific set of markers related to starch synthesis in the same entire and allele-mining set. The newly developed methodology for developing allele-mining sets can be used in other crop species. By retaining all alleles of the entire collection, this allele-mining set will be useful for future studies on introducing unused useful alleles into elite rice varieties by breeders in the post-genomic era.
机译:使用分布在整个基因组中的15个中性SSR标记评估了4046个水稻种质的等位基因多样性。总共检测到482个等位基因;平均等位基因丰富度为每个基因座32.1个等位基因。使用启发式方法,在SSR标记数据的基础上成功开发了等位基因挖掘集。等位基因挖掘集的162个部分(约占整个集合的4.0%)捕获了整个集合中保留的所有等位基因(482个),显示出100%的等位基因覆盖率最小。通过使用与淀粉相关的另外14个SSR标记验证这种启发式方法的结果,在该等位基因挖掘集中捕获了70%的等位基因和83%的受限等位基因(等位基因频率> 0.05%)。结果表明,即使在相同的整个等位基因挖掘集中将其应用于与淀粉合成相关的另一组特定标记,该启发式方法也符合作为等位基因挖掘集合的条件。用于开发等位基因挖掘集的新开发方法可以用于其他作物物种。通过保留整个集合中的所有等位基因,该等位基因挖掘集将对后基因组时代育种者将未使用的有用等位基因引入优良水稻品种的未来研究有用。

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