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Identification of Heterosis-Associated Stable QTLs for Ear-Weight-Related Traits in an Elite Maize Hybrid Zhengdan 958 by Design III

机译:通过设计III鉴定优质玉米杂交种郑单958中与穗重相关的杂种优势相关稳定QTL

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摘要

Heterosis plays a decisive role in maize production worldwide, but its genetic basis remains unclear. In this study, we explored heterosis for ear-weight (EW)-related traits using a North Carolina Experiment III design (Design III) population derived from the elite maize hybrid Zhengdan 958. Quantitative trait loci (QTL) analysis was conducted based on phenotypic data collected from five environments using a high-density linkage map that consisted of 905 single nucleotide polymorphisms (SNP). A total of 38 environmentally stable QTLs were detected, and the numbers for the Z1 and Z2 populations were 18 and 20, respectively. All environmentally stable QTLs for Z2 were characterized by the overdominance effect (OD), which indicated that overdominance was one of the most important contributors to the heterosis of EW-related traits. Consistent with the significant positive correlations between EW-related traits, 9 genomic regions with overlapped QTLs for different traits were found and were located on chromosomes 1 (1), 3 (2), 4 (3), 7 (1), 8 (1), and 9 (1). Compared to previous reports, we found that the genomic regions for heterosis were not always congruent between different hybrids, which suggested that the combination of heterotic loci in different hybrids was genotype-dependent. Collectively, these data provided further evidence that the potential utilization of QTLs for heterosis may be feasible by pyramiding if we treat the QTLs as inherited units.
机译:杂种优势在全球玉米生产中起着决定性作用,但其遗传基础仍不清楚。在这项研究中,我们使用来自优良玉米杂交种郑单958的北卡罗莱纳州实验III设计(设计III)种群探索了与体重(EW)相关的杂种优势。基于表型进行了数量性状位点(QTL)分析使用由905个单核苷酸多态性(SNP)组成的高密度连锁图谱从五个环境中收集的数据。总共检测到38个环境稳定的QTL,Z1和Z2种群的数量分别为18和20。 Z2的所有环境稳定QTL均具有超支效应(OD),这表明超支是EW相关性状杂种优势最重要的因素之一。与EW相关性状之间的显着正相关相一致,发现9个具有不同性状QTL重叠的基因组区域,它们位于染色体1(1),3(2),4(3),7(1),8( 1)和9(1)。与以前的报道相比,我们发现杂种优势的基因组区域并不总是一致的,这表明不同杂种优势基因座的组合是基因型依赖性的。总体而言,这些数据提供了进一步的证据,如果我们将QTL视为遗传单位,则通过金字塔化将QTL用于杂种优势的可能性是可行的。

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