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Genome-wide association study and genomic prediction using parental and breeding populations of Japanese pear (Pyrus pyrifolia Nakai)

机译:利用日本梨(Pyrus pyrifolia Nakai)的亲本和育种种群进行全基因组关联研究和基因组预测

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摘要

Breeding of fruit trees is hindered by their large size and long juvenile period. Genome-wide association study (GWAS) and genomic selection (GS) are promising methods for circumventing this hindrance, but preparing new large datasets for these methods may not always be practical. Here, we evaluated the potential of breeding populations evaluated routinely in breeding programs for GWAS and GS. We used a pear parental population of 86 varieties and breeding populations of 765 trees from 16 full-sib families, which were phenotyped for 18 traits and genotyped for 1,506 single nucleotide polymorphisms (SNPs). The power of GWAS and accuracy of genomic prediction were improved when we combined data from the breeding populations and the parental population. The accuracy of genomic prediction was improved further when full-sib data of the target family were available. The results suggest that phenotype data collected in breeding programs can be beneficial for GWAS and GS when they are combined with genome-wide marker data. The potential of GWAS and GS will be further extended if we can build a system for routine collection of the phenotype and marker genotype data for breeding populations.
机译:果树的大小和幼年期长,阻碍了果树的育种。全基因组关联研究(GWAS)和基因组选择(GS)是规避这一障碍的有前途的方法,但是为这些方法准备新的大型数据集可能并不总是可行的。在这里,我们评估了在GWAS和GS育种计划中常规评估的育种种群的潜力。我们使用了梨亲本种群的86个变种和来自16个全同胞家族的765棵树的育种种群,对它们进行了18种性状的表型鉴定和对1,506个单核苷酸多态性(SNP)的基因分型。当我们结合育种种群和亲代种群的数据时,GWAS的功能和基因组预测的准确性得到了提高。当可获得目标家族的全同胞数据时,基因组预测的准确性将进一步提高。结果表明,与全基因组标记数据结合时,在育种计划中收集的表型数据可能对GWAS和GS有益。如果我们可以建立一个常规收集表型和标记基因型数据以供繁殖种群的系统,那么GWAS和GS的潜力将得到进一步扩展。

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