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Population structure and linkage disequilibrium in diploid and tetraploid potato revealed by genome-wide high-density genotyping using the SolCAP SNP array

机译:通过使用SolCAP SNP阵列进行全基因组高密度基因分型,揭示了二倍体和四倍体马铃薯的种群结构和连锁不平衡

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摘要

Genome-wide association (GWA) mapping in potato requires high-density genotyping. With the Illumina SolCAP potato single-nucleotide polymorphism (SNP) array, a first tool for GWA mapping in potato became available. Thirty-six tetraploid varieties and eight diploid breeding clones were genotyped for 8303 SNPs using this array. The objectives of our study were to examine in this set of germplasm: (i) the degree of polymorphism of the SolCAP SNPs in European germplasm, (ii) the population structure, (iii) temporal trends of genetic diversity and (iv) the genome-wide extent of linkage disequilibrium (LD). Three-quarters of the SNPs were polymorphic. In the principal coordinate analysis, a clear separation of tetraploid from diploid genotypes was observed, whereas no distinct subgroups among the tetraploid varieties were detected. The nonlinear trendline of the LD measure r2 vs. the physical map distance decayed within 275bp to an r2 value of 0.10, indicating that theoretically, about 3 million equally distributed SNPs are required for GWA mapping in this diverse set of germplasm. As the LD decay changes with the population selected for GWA mapping, the number of required markers might be different in other germplasm.
机译:马铃薯中的全基因组关联(GWA)定位需要高密度基因分型。有了Illumina SolCAP马铃薯单核苷酸多态性(SNP)阵列,第一个用于GWA马铃薯中作图的工具就可以使用了。使用该阵列对36个四倍体变种和八个二倍体育种克隆进行了8303个SNP的基因分型。我们研究的目的是检查这套种质:(i)欧洲种质中SolCAP SNP的多态性程度,(ii)种群结构,(iii)遗传多样性的时间趋势和(iv)连锁不平衡(LD)的范围。四分之三的SNP是多态的。在主坐标分析中,观察到四倍体与二倍体基因型明确分离,而在四倍体变种中未检测到明显的亚组。 LD量度相对于物理图谱距离的非线性趋势线在275bp内衰减至r2值为0.10,这表明从理论上讲,在这组不同的种质中进行GWA定位需要约300万个均等分布的SNP。由于LD衰变随选择用于GWA作图的种群的变化而变化,在其他种质中所需标记的数量可能不同。

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