首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Prediction of single-cross hybrid performance in maize using haplotype blocks associated with QTL for grain yield
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Prediction of single-cross hybrid performance in maize using haplotype blocks associated with QTL for grain yield

机译:使用与QTL相关的单倍型模块预测玉米单交杂种表现

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Marker-based prediction of hybrid performance facilitates the identification of untested single-cross hybrids with superior yield performance. Our objectives were to (1) determine the haplotype block structure of experimental germplasm from a hybrid maize breeding program, (2) develop models for hybrid performance prediction based on haplotype blocks, and (3) compare hybrid performance prediction based on haplotype blocks with other approaches, based on single AFLP markers or general combining ability (GCA), under a validation scenario relevant for practical breeding. In total, 270 hybrids were evaluated for grain yield in four Dent x Flint factorial mating experiments. Their parental inbred lines were genotyped with 20 AFLP primer-enzyme combinations. Adjacent marker loci were combined into haplotype blocks. Hybrid performance was predicted on basis of single marker loci and haplotype blocks. Prediction based on variable haplotype block length resulted in an improved prediction of hybrid performance compared with the use of single AFLP markers. Estimates of prediction efficiency (R-2) ranged from 0.305 to 0.889 for marker-based prediction and from 0.465 to 0.898 for GCA-based prediction. For inter-group hybrids with predominance of general over specific combining ability, the hybrid prediction from GCA effects was efficient in identifying promising hybrids. Considering the advantage of haplotype block approaches over single marker approaches for the prediction of inter-group hybrids, we see a high potential to substantially improve the efficiency of hybrid breeding programs.
机译:基于标记的杂交表现预测有助于鉴定未经测试的单杂交种,并具有优异的产量表现。我们的目标是(1)通过玉米杂交育种计划确定实验种质的单倍型结构,(2)开发基于单倍型模块的杂交性能预测模型,以及(3)将基于单倍型模块的杂交性能预测与其他在与实际育种相关的验证方案下,基于单个AFLP标记或一般结合能力(GCA)的方法。在四个Dent x Flint因子交配实验中,总共评估了270个杂种的籽粒产量。他们的亲本近交系用20种AFLP引物-酶组合进行基因分型。将相邻的标记基因座组合成单倍型。基于单个标记基因座和单倍型模块预测了杂交表现。与使用单个AFLP标记相比,基于可变单倍型基因组长度的预测可提高对杂交表现的预测。对于基于标记的预测,预测效率(R-2)的估计值范围为0.305至0.889,对于基于GCA的预测,估计效率的估计值范围为0.465至0.898。对于总体上优于特定组合能力的群体间杂种,从GCA效应进行的杂种预测可有效地鉴定出有前途的杂种。考虑到单体型方法比单标记方法在组间杂种预测方面的优势,我们看到了大幅提高杂种育种程序效率的巨大潜力。

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