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首页> 外文期刊>BMC Plant Biology >Quantitative traits loci mapping and molecular marker development for total glutenin and glutenin fraction contents in wheat
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Quantitative traits loci mapping and molecular marker development for total glutenin and glutenin fraction contents in wheat

机译:小麦谷蛋白和谷蛋白分数含量的定量性状基因座测绘和分子标记发育

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摘要

Glutenin contents and compositions are crucial factors influencing the end-use quality of wheat. Although the composition of glutenin fractions is well known, there has been relatively little research on the genetic basis of glutenin fractions in wheat. To elucidate the genetic basis for the contents of glutenin and its fractions, a population comprising 196 recombinant inbred lines (RILs) was constructed from two parents, Luozhen No.1 and Zhengyumai 9987, which differ regarding their total glutenin and its fraction contents (except for the By fraction). Forty-one additive Quantitative Trait Loci (QTL) were detected in four environments over two years. These QTL explained 1.3% - 53.4% of the phenotypic variation in the examined traits. Forty-three pairs of epistatic QTL (E-QTL) were detected in the RIL population across four environments. The QTL controlling the content of total glutenin and its seven fractions were detected in clusters. Seven clusters enriched with QTL for more than three traits were identified, including a QTL cluster 6AS-3, which was revealed as a novel genetic locus for glutenin and related traits. Kompetitive Allele-Specific PCR (KASP) markers developed from the main QTL cluster 1DL-2 and the previously developed KASP marker for the QTL cluster 6AS-3 were validated as significantly associated with the target traits in the RIL population and in natural varieties. This study identified novel genetic loci related to glutenin and its seven fractions. Additionally, the developed KASP markers may be useful for the marker-assisted selection of varieties with high glutenin fraction content and for identifying individuals in the early developmental stages without the need for phenotyping mature plants. On the basis of the results of this study and the KASP markers described herein, breeders will be able to efficiently select wheat lines with favorable glutenin properties and develop elite lines with high glutenin subunit contents.
机译:谷蛋白含量和组合物是影响小麦最终用品的重要因素。虽然谷蛋白级分的组成是众所周知的,但对小麦谷蛋白级分的遗传基础进行了相对较少的研究。为了阐明谷蛋白含量及其级分的遗传基础,该群体包含196种重组近亲(RILS)的群体由两个父母,鲁氏No.1和正义9987构建,这对其总谷蛋白及其馏分含量不同(除外)对于分数)。在两年以上的四种环境中检测到四十一点的添加性定量性状基因座(QTL)。这些QTL在检查的特征中解释了1.3% - 53.4%的表型变异。在四个环境中,在RIL群体中检测到四十三对外观QTL(E-QTL)。在簇中检测控制总谷蛋白总谷蛋白含量及其七个部分的QTL。鉴定了七种以上特征的七颗粒,包括QTL簇6AS-3,其被揭示为谷蛋白和相关性状的新型遗传基因座。从主QTL簇1DL-2和先前显影的QTL簇6A-3开发的特异性PCR(KASP)标记验证了与RIL种群和天然品种的目标性状显着相关。本研究确定了与谷蛋白相关的新型遗传基因座及其七种级分。另外,发育的kasp标记物可用于标记辅助选择具有高谷蛋白级分含量的品种,并用于鉴定早期发育阶段中的个体而不需要表型成熟植物。在本研究的结果和本文所述的kasp标记的基础上,育种者将能够有效地选择具有有利谷蛋白性质的小麦线,并用高谷蛋白亚基含量开发精英线。

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