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Fine-mapping and validation of the major quantitative trait locus QFlANG-4B for flag leaf angle in wheat.

Wenjia ZhangXinyi ChenKai YangSiyuan ChangXue ZhangMingde LiuLongfei WuMingming XinZhaorong HuJie LiuHuiru PengZhongfu NiQixin SunYingyin YaoJinkun Du
Published in: TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik (2024)
plants carrying different heterozygous segments for the QFLANG-4B region. We obtained eight recombinant types for QFLANG-4B, narrowing its location down to a 5.3-Mb region. This region contained 76 predicted genes, 7 of which we considered to be likely candidate genes for QFLANG-4B. Marker and phenotypic analyses of individual plants from the secondary mapping populations and their progeny revealed that the FLANG of the ND3331 allele is significantly higher than that of the Zang1817 allele in multiple environments. These results not only provide a basis for the map-based cloning of QFLANG-4B, but also indicate that QFLANG-4B has great potential for marker-assisted selection in wheat breeding programs designed to improve plant architecture and yield.
Keyphrases
  • high resolution
  • high density
  • genome wide
  • public health
  • air pollution
  • gene expression
  • mass spectrometry
  • single cell
  • dna methylation
  • risk assessment
  • human health