A rare single nucleotide variant inPm5econfers powdery mildew resistance in common wheat
文献类型: 外文期刊
第一作者: Xie, Jingzhong
作者: Xie, Jingzhong;Guo, Guanghao;Wu, Qiuhong;Lu, Ping;Chen, Yongxing;Dong, Lingli;Li, Miaomiao;Zhang, Huaizhi;Zhang, Panpan;Zhu, Keyu;Li, Beibei;Liu, Zhiyong;Guo, Guanghao;Zhang, Huaizhi;Zhang, Panpan;Zhu, Keyu;Li, Beibei;Liu, Zhiyong;Wang, Yong;Hu, Tiezhu;Wang, Lili;Zhang, Yan;Li, Jingting;Qiu, Dan;Li, Yahui;Li, Hongjie;Deal, Karin R.;Luo, Ming-Cheng;Huo, Naxin;Gu, Yong Qiang;Liu, Sanzhen
作者机构:
关键词: Blumeria graminisf; sp; tritici; BSR-Seq; gain of function; landrace; natural variation; Triticum aestivum
期刊名称:NEW PHYTOLOGIST ( 影响因子:10.151; 五年影响因子:10.475 )
ISSN: 0028-646X
年卷期: 2020 年 228 卷 3 期
页码:
收录情况: SCI
摘要: Powdery mildew poses severe threats to wheat production. The most sustainable way to control this disease is through planting resistant cultivars. We report the map-based cloning of the powdery mildew resistance allelePm5efrom a Chinese wheat landrace. We applied a two-step bulked segregant RNA sequencing (BSR-Seq) approach in developing tightly linked or co-segregating markers toPm5e. The first BSR-Seq used phenotypically contrasting bulks of recombinant inbred lines (RILs) to identifyPm5e-linked markers. The second BSR-Seq utilized bulks of genetic recombinants screened from a fine-mapping population to precisely quantify the associated genomic variation in the mapping interval, and identified thePm5ecandidate genes. The function ofPm5ewas validated by transgenic assay, loss-of-function mutants and haplotype association analysis.Pm5eencodes a nucleotide-binding domain leucine-rich-repeat-containing (NLR) protein. A rare nonsynonymous single nucleotide variant (SNV) within the C-terminal leucine rich repeat (LRR) domain is responsible for the gain of powdery mildew resistance function ofPm5e, an allele endemic to wheat landraces of Shaanxi province of China. Results from this study demonstrate the value of landraces in discovering useful genes for modern wheat breeding. The key SNV associated with powdery mildew resistance will be useful for marker-assisted selection ofPm5ein wheat breeding programs.
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