<p>Flour color influences the quality of end-use products of common wheat (<i>Triticum aestivum</i> L.). To analyze the genetic basis of flour color, the flour brightness (FL*), red-green level (Fa*), yellow-blue level (Fb*), and whiteness (W) of 341 winter wheat materials grown during the 2019–2020 years and 2020–2021 years in Emin and Qitai were measured. A genome-wide association study was conducted using a wheat 40&#xa0;K breeding chip with the MLM model. The coefficient of variation and generalized heritability of wheat flour color traits ranged from 0.62% to 22.23% and 55.52% to 83.48%, respectively. There were strong correlations across the flour color traits. GWAS identified 20 significant and stable SNP markers distributed across 16 loci, including 1 for FL* located on chromosome 5D; 6 for Fa*, located on chromosomes 1&#xa0;A, 5&#xa0;A, 1B (2), 6B, and 4D; 6 for Fb*, located on chromosomes 2&#xa0;A (2), 4&#xa0;A, 4B, 6B, and 5D; and 3 for W, located on chromosomes 2&#xa0;A, 4&#xa0;A, and 5D. Two KASP markers were developed for Fa*, which exhibited good genotype and significant phenotypic differences among materials with different genotypes. Seven candidate genes that may affect flour color during grain development were screened, including <i>TraesCS5D02G01340.1</i>, <i>TraesCS5D02G013100</i>, and <i>TraesCS5D02G014300.1</i> on the 5D chromosome may simultaneously influence W, FL*, and Fa*, <i>TraesCS1B02G269100.1</i> and <i>TraesCS1B02G269500.1</i> on the 1B chromosome may impact Fa*, while <i>TraesCS4A02G307200</i> and <i>TraesCS6B02G034100.1</i> on the 4&#xa0;A and 6B chromosomes may affect Fb*.The results provide useful information to enhance the color quality of wheat flour in wheat.</p>

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Genome-wide association study and KASP marker development for flour color in winter wheat

  • Yousheng Tian,
  • Pengpeng Liu,
  • Xin Zhang,
  • Yichen Liu,
  • Dezhen Kong,
  • Yingbin Nie,
  • Hongjun Xu,
  • Xinnian Han,
  • Wei Sang,
  • Weihua Li

摘要

Flour color influences the quality of end-use products of common wheat (Triticum aestivum L.). To analyze the genetic basis of flour color, the flour brightness (FL*), red-green level (Fa*), yellow-blue level (Fb*), and whiteness (W) of 341 winter wheat materials grown during the 2019–2020 years and 2020–2021 years in Emin and Qitai were measured. A genome-wide association study was conducted using a wheat 40 K breeding chip with the MLM model. The coefficient of variation and generalized heritability of wheat flour color traits ranged from 0.62% to 22.23% and 55.52% to 83.48%, respectively. There were strong correlations across the flour color traits. GWAS identified 20 significant and stable SNP markers distributed across 16 loci, including 1 for FL* located on chromosome 5D; 6 for Fa*, located on chromosomes 1 A, 5 A, 1B (2), 6B, and 4D; 6 for Fb*, located on chromosomes 2 A (2), 4 A, 4B, 6B, and 5D; and 3 for W, located on chromosomes 2 A, 4 A, and 5D. Two KASP markers were developed for Fa*, which exhibited good genotype and significant phenotypic differences among materials with different genotypes. Seven candidate genes that may affect flour color during grain development were screened, including TraesCS5D02G01340.1, TraesCS5D02G013100, and TraesCS5D02G014300.1 on the 5D chromosome may simultaneously influence W, FL*, and Fa*, TraesCS1B02G269100.1 and TraesCS1B02G269500.1 on the 1B chromosome may impact Fa*, while TraesCS4A02G307200 and TraesCS6B02G034100.1 on the 4 A and 6B chromosomes may affect Fb*.The results provide useful information to enhance the color quality of wheat flour in wheat.