首页> 外文期刊>TAG Theoretical and Applied Genetics >Exploiting regulatory variation to identify genes underlying quantitative resistance to the wheat stem rust pathogen Puccinia graminis f. sp. tritici in barley
【24h】

Exploiting regulatory variation to identify genes underlying quantitative resistance to the wheat stem rust pathogen Puccinia graminis f. sp. tritici in barley

机译:利用调控变异鉴定对小麦茎锈病病原体Puccinia graminis f。 sp。大麦小麦

获取原文
获取原文并翻译 | 示例
           

摘要

We previously mapped mRNA transcript abundance traits (expression-QTL or eQTL) using the Barley1 Affymetrix array and ‘whole plant’ tissue from 139 progeny of the Steptoe × Morex (St/Mx) reference barley mapping population. Of the 22,840 probesets (genes) on the array, 15,987 reported transcript abundance signals that were suitable for eQTL analysis, and this revealed a genome-wide distribution of 23,738 significant eQTLs. Here we have explored the potential of using these mRNA abundance eQTL traits as surrogates for the identification of candidate genes underlying the interaction between barley and the wheat stem rust fungus Puccinia graminis f. sp. tritici. We re-analysed quantitative ‘resistance phenotype’ data collected on this population in 1990/1991 and identified six loci associated with barley’s reaction to stem rust. One of these coincided with the major stem rust resistance locus Rpg1, that we had previously positionally cloned using this population. Correlation analysis between phenotype values for rust infection and mRNA abundance values reported by the 22,840 GeneChip probe sets placed Rpg1, which is on the Barley1 GeneChip, in the top five candidate genes for the major QTL on chromosome 7H corresponding to the location of Rpg1. A second co-located with the rpg4/Rpg5 stem rust resistance locus that has been mapped in a different population and the remaining four were novel. Correlation analyses identified candidate genes for the rpg4/Rpg5 locus on chromosome 5H. By combining our data with additional published mRNA profiling data sets, we identify a putative sensory transduction histidine kinase as a strong candidate for a novel resistance locus on chromosome 2H and compile candidate gene lists for the other three loci.
机译:我们以前使用Barley1 Affymetrix阵列和来自Steptoe×Morex(St / Mx)参考大麦作图群体的139个后代的“全株”组织来绘制mRNA转录丰度性状(表达QTL或eQTL)。在阵列上的22840个探针集(基因)中,有15987个报告的转录物丰度信号适合eQTL分析,这揭示了23738个重要eQTL的全基因组分布。在这里,我们已经探索了使用这些mRNA丰度eQTL特性作为替代物来鉴定大麦与小麦锈病真菌Puccinia graminis f之间相互作用的候选基因的潜力。 sp。小麦。我们重新分析了1990/1991年从该种群中收集的定量“抗性表型”数据,并确定了与大麦对茎锈病反应相关的六个基因座。其中之一与主要的茎锈病抗性基因座Rpg1相符,我们先前已使用该种群进行了位置克隆。由22,840个GeneChip探针组报告的锈菌感染表型值与mRNA丰度值之间的相关性分析将Rpg1放置在Barley1 GeneChip上,位于7H染色体上主要QTL的前五个候选基因中,对应于Rpg1的位置。第二个与rpg4 / Rpg5茎锈病抗性基因座共处一地,该基因座已定位在不同的种群中,其余四个是新颖的。相关分析确定了5H染色体上rpg4 / Rpg5基因座的候选基因。通过将我们的数据与其他已发表的mRNA分析数据集相结合,我们确定了推定的感觉转导组氨酸激酶是2H染色体上新的耐药位点的强候选者,并为其他三个基因座编制了候选者基因列表。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号