Mackay Ian J, Bansept-Basler Pauline, Barber Toby, Bentley Alison R, Cockram James, Gosman Nick, Greenland Andy J, Horsnell Richard, Howells Rhian, O'Sullivan Donal M, Rose Gemma A, Howell Phil J
The John Bingham Laboratory, National Institute of Agricultural Botany (NIAB), Cambridge, CB3 0LE, United Kingdom
The John Bingham Laboratory, National Institute of Agricultural Botany (NIAB), Cambridge, CB3 0LE, United Kingdom.
G3 (Bethesda). 2014 Sep 18;4(9):1603-10. doi: 10.1534/g3.114.012963.
MAGIC populations represent one of a new generation of crop genetic mapping resources combining high genetic recombination and diversity. We describe the creation and validation of an eight-parent MAGIC population consisting of 1091 F7 lines of winter-sown wheat (Triticum aestivum L.). Analyses based on genotypes from a 90,000-single nucleotide polymorphism (SNP) array find the population to be well-suited as a platform for fine-mapping quantitative trait loci (QTL) and gene isolation. Patterns of linkage disequilibrium (LD) show the population to be highly recombined; genetic marker diversity among the founders was 74% of that captured in a larger set of 64 wheat varieties, and 54% of SNPs segregating among the 64 lines also segregated among the eight founder lines. In contrast, a commonly used reference bi-parental population had only 54% of the diversity of the 64 varieties with 27% of SNPs segregating. We demonstrate the potential of this MAGIC resource by identifying a highly diagnostic marker for the morphological character "awn presence/absence" and independently validate it in an association-mapping panel. These analyses show this large, diverse, and highly recombined MAGIC population to be a powerful resource for the genetic dissection of target traits in wheat, and it is well-placed to efficiently exploit ongoing advances in phenomics and genomics. Genetic marker and trait data, together with instructions for access to seed, are available at http://www.niab.com/MAGIC/.
多亲本高级世代互交群体(MAGIC群体)代表了新一代的作物遗传图谱资源,它结合了高遗传重组率和多样性。我们描述了一个由1091个冬小麦(Triticum aestivum L.)F7代株系组成的八亲本MAGIC群体的创建和验证过程。基于90,000个单核苷酸多态性(SNP)阵列的基因型分析发现,该群体非常适合作为精细定位数量性状基因座(QTL)和基因分离的平台。连锁不平衡(LD)模式表明该群体具有高度重组性;创始亲本之间的遗传标记多样性是在一组64个小麦品种中所捕获多样性的74%,并且在64个株系中分离的SNP中有54%也在八个创始亲本株系中分离。相比之下,一个常用的参考双亲群体仅具有64个品种多样性的54%,且只有27%的SNP发生分离。我们通过鉴定一个用于“芒的有无”这一形态特征的高度诊断性标记,展示了这种MAGIC资源的潜力,并在一个关联作图群体中对其进行了独立验证。这些分析表明,这个庞大、多样且高度重组的MAGIC群体是小麦目标性状遗传剖析的强大资源,并且非常适合有效地利用表型组学和基因组学方面正在取得的进展。遗传标记和性状数据以及种子获取说明可在http://www.niab.com/MAGIC/上获取。