4.7 Article

Quantitative traits loci mapping and molecular marker development for total glutenin and glutenin fraction contents in wheat

期刊

BMC PLANT BIOLOGY
卷 21, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12870-021-03221-0

关键词

Glutenin content; High- and low-molecular-weight glutenin subunits; End-use quality; QTL mapping; KASP marker; Wheat

资金

  1. National Key Research and Development Program of China [2017YFD0100704]
  2. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany's Excellence Strategy [EXC 2070 - 390732324]
  3. Scientific and Technological Research Project of Henan Province [202102110027]
  4. Scientific and Technological Innovation Project of Henan Academy of Agricultural Sciences [2020CX01]
  5. Outstanding youth fund of Henan Academy of Agricultural Sciences [2021JQ04]

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This study identified novel genetic loci related to glutenin and its seven fractions in wheat, including a new genetic locus for glutenin traits. Additionally, developed KASP markers can assist in selecting wheat varieties with high glutenin fraction content and in identifying individuals at early developmental stages without mature plant phenotyping. The results and markers described in this study can help breeders efficiently select wheat lines with favorable glutenin properties and develop elite lines with high glutenin subunit contents.
Background 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. Results 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. Conclusions 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.

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