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High-density mapping of durable and broad-spectrum stripe rust resistance gene Yr30 in wheat.

Xiaoting WangMingjie XiangHuaizhou LiXiaoxiao LiKeqing MuShuo HuangYibo ZhangXiangrui ChengShuqing YangXunying YuanRavi P SinghSridhar BhavaniQingdong ZengJianhui WuZhensheng KangShengjie LiuDejun Han
Published in: TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik (2024)
plants in a Yaco"S"/Mingxian169 recombinant inbred line population. This interval corresponded to a 610-kb region in the International Wheat Genome Sequencing Consortium (IWGSC) RefSeq version 2.1 on chromosome arm 3BS harboring 30 high-confidence genes. Five genes were identified as candidate genes based on functional annotation, expression analysis by RNA-seq and sequence polymorphisms between cultivars with and without Yr30 based on resequencing. Haplotype analysis of the target region identified six haplotypes (YR30_h1-YR30_h6) in a panel of 1215 wheat accessions based on the 660K feature genotyping array. Lines with YR30_h6 displayed more resistance to stripe rust than the other five haplotypes. Near-isogenic lines (NILs) with Yr30 showed a 32.94% higher grain yield than susceptible counterparts when grown in a stripe rust nursery, whereas there was no difference in grain yield under rust-free conditions. These results lay a foundation for map-based cloning Yr30.
Keyphrases
  • high density
  • rna seq
  • genome wide
  • single cell
  • genome wide identification
  • high resolution
  • copy number
  • high throughput
  • machine learning
  • transcription factor