首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Characterization of a major quantitative trait locus on the short arm of chromosome 4B for spike number per unit area in common wheat (Triticum aestivum L.)
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Characterization of a major quantitative trait locus on the short arm of chromosome 4B for spike number per unit area in common wheat (Triticum aestivum L.)

机译:常见小麦峰值染色体4B短臂上的主要定量性状轨迹的表征(Triticum aestivum L.)

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Key message An InDel marker closely linked with a major and stable quantitative trait locus (QTL) on chromosome 4BS, QSnpa.cau-4B, controlling spike number per unit area will benefit wheat yield improvement. Spike number per unit area (SNPA) is an essential yield-related trait, and analyzing its genetic basis is important for cultivar improvement in wheat (Triticum aestivum L.). In this study, we used the F-2 population derived from a cross between two wheat accessions displaying significant differences in SNPA to perform quantitative trait locus (QTL) analysis. Through bulked segregant analysis, a major and stable QTL that explained 18.11-82.11% of the phenotypic variation was identified on chromosome 4BS. The QTL interval was validated using F-4:5 and F-6:7 families and narrowed it to a 24.91-38.36 Mb region of chromosome 4BS according to the 'Chinese Spring' reference genome sequence. In this region, variations in 16 genes caused amino acid changes and three genes were present in only one parent. Among these, we annotated a gene orthologous to TB1 in maize (Zea mays), namely TraesCS4B01G042700, which carried a 44-bp deletion in its promoter in the higher-SNPA parent. An InDel marker based on the insertion/deletion polymorphism was designed and used to diagnose the allelic distribution within a natural population. The frequency of the 44-bp deletion allele associated with higher SNPA was relatively low (13.24%), implying that this favorable allele has not been widely utilized and could be valuable for wheat yield improvement. In summary, we identified a major and stable QTL for SNPA and developed a diagnostic marker for the more-spiked trait, which will be beneficial for molecular-assisted breeding in wheat.
机译:关键消息与染色体4BS上的主要且稳定的定量特质基因座(QTL)紧密相关的Indel标记,QSNPA.Cau-4B,控制每单位面积的尖峰号将有利于小麦产量改善。每单位面积(SNPA)的尖峰号是一种与产量相关的特性,并分析其遗传基础对小麦的种植(Triticum Aestivum L)很重要。在这项研究中,我们使用了来自两种小麦探索之间的横截面的F-2群,在SNPA中显示出显着差异以进行定量性状基因座(QTL)分析。通过膨胀的分析分析,在染色体4bs上鉴定了一个主要和稳定的QTL,其解释的18.11-82.11%的表型变异。使用F-4:5和F-6:7个家庭验证了QTL间隔,并根据“中国春季”参考基因组序列将其缩小到染色体4BS的24.91-38.36 MB区域。在该区域中,16个基因的变化导致氨基酸变化,仅在一个父母中存在三种基因。其中,我们向玉米(ZeA mays)中的TB1进行了向玉米(ZEA Mays)的基因,即TRAESK4B01G042700,其在其启动子中携带44bp缺失在高分子母母细胞中。基于插入/缺失多态性的吲哚标记设计并用于诊断天然群体内的等位基因分布。与较高的SNPA相关的44-BP缺失等位基因的频率相对较低(13.24%),这意味着这种有利的等位基因尚未被广泛利用,并且对于小麦产量改善可能是有价值的。总之,我们鉴定了SNPA的主要稳定QTL,并为更尖刺的特征开发了诊断标志物,这将有利于小麦的分子辅助繁殖。

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