Dong Yan, Xu Dengan, Xu Xiaowan, Ren Yan, Gao Fengmei, Song Jie, Jia Aolin, Hao Yuanfeng, He Zhonghu, Xia Xianchun
Institute of Crop Sciences, National Wheat Improvement Center, Chinese Academy of Agricultural Sciences (CAAS), 12 Zhongguancun South Street, Beijing, 100081, China.
Shandong Provincial Key Laboratory of Dryland Farming Technology, College of Agronomy, Qingdao Agricultural University, Qingdao, 266109, Shandong, China.
Theor Appl Genet. 2022 Mar;135(3):1083-1099. doi: 10.1007/s00122-021-04019-2. Epub 2022 Jan 10.
A stable QTL QPm.caas-3BS for adult-plant resistance to powdery mildew was mapped in an interval of 431 kb, and candidate genes were predicted based on gene sequences and expression profiles. Powdery mildew is a devastating foliar disease occurring in most wheat-growing areas. Characterization and fine mapping of genes for powdery mildew resistance can benefit marker-assisted breeding. We previously identified a stable quantitative trait locus (QTL) QPm.caas-3BS for adult-plant resistance to powdery mildew in a recombinant inbred line population of Zhou8425B/Chinese Spring by phenotyping across four environments. Using 11 heterozygous recombinants and high-density molecular markers, QPm.caas-3BS was delimited in a physical interval of approximately 3.91 Mb. Based on re-sequenced data and expression profiles, three genes TraesCS3B02G014800, TraesCS3B02G016800 and TraesCS3B02G019900 were associated with the powdery mildew resistance locus. Three gene-specific kompetitive allele-specific PCR (KASP) markers were developed from these genes and validated in the Zhou8425B derivatives and Zhou8425B/Chinese Spring population in which the resistance gene was mapped to a 0.3 cM interval flanked by KASP14800 and snp_50465, corresponding to a 431 kb region at the distal end of chromosome 3BS. Within the interval, TraesCS3B02G014800 was the most likely candidate gene for QPm.caas-3BS, but TraesCS3B02G016300 and TraesCS3B02G016400 were less likely candidates based on gene annotations and sequence variation between the parents. These results not only offer high-throughput KASP markers for improvement of powdery mildew resistance but also pave the way to map-based cloning of the resistance gene.
一个稳定的成株期抗白粉病QTL QPm.caas - 3BS被定位在431 kb的区间内,并根据基因序列和表达谱预测了候选基因。白粉病是一种在大多数小麦种植区发生的毁灭性叶部病害。白粉病抗性基因的鉴定和精细定位有助于分子标记辅助育种。我们之前通过在四个环境中进行表型分析,在周8425B/中国春重组自交系群体中鉴定出一个稳定的成株期抗白粉病数量性状位点(QTL)QPm.caas - 3BS。利用11个杂合重组体和高密度分子标记,QPm.caas - 3BS被限定在大约3.91 Mb的物理区间内。基于重测序数据和表达谱,三个基因TraesCS3B02G014800、TraesCS3B02G016800和TraesCS3B02G019900与白粉病抗性位点相关。从这些基因开发了三个基因特异性竞争性等位基因特异性PCR(KASP)标记,并在周8425B衍生系和周8425B/中国春群体中进行了验证,在该群体中抗性基因被定位到一个0.3 cM的区间,两侧分别为KASP14800和snp_50465,对应于3BS染色体末端的一个431 kb区域。在该区间内,TraesCS3B02G014800最有可能是QPm.caas - 3BS的候选基因,但基于基因注释和双亲之间的序列变异,TraesCS3B02G016300和TraesCS3B02G016400作为候选基因的可能性较小。这些结果不仅为提高白粉病抗性提供了高通量KASP标记,也为抗性基因的图位克隆铺平了道路。