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Genomic Selection in Wheat Breeding using Genotyping-by-Sequencing

机译:小麦基因组选育中的基因组测序

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Genomic selection (GS) uses genomewide molecular markers to predict breeding values and make selections of individuals or breeding lines prior to phenotyping. Here we show that genotyping-by-sequencing (GBS) can be used for de novo genotyping of breeding panels and to develop accurate GS models, even for the large, complex, and polyploid wheat (Triticum aestivum L.) genome. With GBS we discovered 41,371 single nucleotide polymorphisms (SNPs) in a set of 254 advanced breeding lines from CIMMYT’s semiarid wheat breeding program. Four different methods were evaluated for imputing missing marker scores in this set of unmapped markers, including random forest regression and a newly developed multivariate-normal expectation-maximization algorithm, which gave more accurate imputation than heterozygous or mean imputation at the marker level, although no significant differences were observed in the accuracy of genomic-estimated breeding values (GEBVs) among imputation methods. Genomic-estimated breeding value prediction accuracies with GBS were 0.28 to 0.45 for grain yield, an improvement of 0.1 to 0.2 over an established marker platform for wheat. Genotyping-by-sequencing combines marker discovery and genotyping of large populations, making it an excellent marker platform for breeding applications even in the absence of a reference genome sequence or previous polymorphism discovery. In addition, the flexibility and low cost of GBS make this an ideal approach for genomics-assisted breeding.
机译:基因组选择(GS)使用全基因组分子标记来预测育种价值,并在表型鉴定之前对个体或育种系进行选择。在这里,我们显示了通过测序进行基因分型(GBS)可以用于育种小组的从头基因分型并开发准确的GS模型,甚至适用于大型,复杂和多倍体小麦(Triticum aestivum L.)基因组。通过GBS,我们在CIMMYT半干旱小麦育种计划的254个高级育种系中发现了41,371个单核苷酸多态性(SNP)。评估了四种不同的方法来估算这组未映射标记中的缺失标记得分,包括随机森林回归和新开发的多元正态期望最大化算法,该算法比标记水平的杂合或均值插补更准确,尽管没有在估算方法之间,基因组估计育种值(GEBV)的准确性存在显着差异。 GBS的基因组估计育种价值预测精度为谷物单产为0.28至0.45,比已建立的小麦标记平台提高了0.1至0.2。通过测序进行基因分型将标记物发现和大种群的基因分型相结合,即使在没有参考基因组序列或先前的多态性发现的情况下,也使其成为育种应用的出色标记平台。此外,GBS的灵活性和低成本使其成为基因组辅助育种的理想方法。

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