首页> 外文期刊>Genome >Exploring the potential and limitations of genotyping-by-sequencing for SNP discovery and genotyping in tetraploid potato
【24h】

Exploring the potential and limitations of genotyping-by-sequencing for SNP discovery and genotyping in tetraploid potato

机译:四倍体马铃薯探讨逐序列测序基因分型和基因分型的潜在和限制

获取原文
获取原文并翻译 | 示例
           

摘要

Genotyping-by-sequencing (GBS) potentially offers a cost-effective alternative for SNP discovery and genotyping. Here, we report the exploration of GBS in tetraploid potato. Both ApeKI and PstI/MspI enzymes were used for library preparation on eight diverse potato genotypes. ApeKI yielded more markers than PstI/MspI but provided a lower read coverage per marker, resulting in more missing data and limiting effective genotyping to the tetraploid mode. We then assessed the accuracy of these SNPs by comparison with SolCAP data (5824 data points in diploid mode and 3243 data points in tetraploid mode) and found the match rates between genotype calls was 90.4% and 81.3%, respectively. Imputation of missing data did not prove very accurate because of incomplete haplotype discovery, suggesting caution in setting the allowance for missing data. To further assess the quality of GBS-derived data, a genome-wide association analysis was performed for flower color on 318 clones (with ApeKI). A strong association signal on chromosome 2 was obtained with the most significant SNP located in the middle of the dihydroflavonol 4-reductase (DFR) gene. We conclude that an appropriate choice of enzyme for GBS library preparation makes it possible to obtain high-quality SNPs in potato and will be helpful for marker-assisted genomics.
机译:基因分型逐序列(GBS)可能为SNP发现和基因分型提供了成本效益的替代方案。在这里,我们举报了GBS在四倍体马铃薯中的探索。 APEKI和PSTI / MSPI酶均用于八种不同的马铃薯基因型上的图书馆制剂。 APEKI产生的标记比PSTI / MSPI更多,但每次标记提供较低的读取覆盖率,导致更缺少的数据并限制与四倍体模式的有效基因分型。然后,我们通过与溶胶数据进行比较来评估这些SNP的准确性(二倍体模式中的5824个数据点和四倍体模式中的3243个数据点),发现基因型呼叫之间的比率分别为90.4%和81.3%。由于单倍型发现不完整的单倍型发现,缺失数据的归属并未证明非常准确,这表明在为缺少数据的允许性方面提出警告。为了进一步评估GBS衍生数据的质量,在318个克隆(用APEKI)上对花色进行基因组 - 宽关联分析。染色体2上的强缔合信号用位于二氢烷醇4-还原酶(DFR)基因的中间的最重要的SNP获得。 We conclude that an appropriate choice of enzyme for GBS library preparation makes it possible to obtain high-quality SNPs in potato and will be helpful for marker-assisted genomics.

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