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Dissection of broad-spectrum resistance of the Thai rice variety Jao Hom Nin conferred by two resistance genes against rice blast

机译:两种抗稻瘟病赋予泰国稻品种Jao HOM NIN的广谱抗性的解剖

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BackgroundRice ( Oryza sativa ) is one of the most important food crops in the world. Rice blast, caused by the fungal pathogen Magnaporthe oryzae , is one of the most destructive rice diseases worldwide. To effectively cope with this problem, the use of rice blast resistance varieties through innovative breeding programs is the best strategy to date. The Thai rice variety Jao Hom Nin (JHN) showed broad-spectrum resistance against Thai rice blast isolates. Two QTLs for blast resistance in JHN were reported on chromosome 1 ( QTL1 ) and 11 ( QTL11 ). ResultsMonogenic lines of QTL1 (QTL1-C) and QTL11 (QTL11-C) in the CO39 genetic background were generated. Cluster analysis based on the disease reaction pattern of QTL1-C and QTL11-C, together with IRBLs, showed that those two monogenic lines were clustered with IRBLsh-S ( Pish ) and IRBL7-M ( Pi7 ), respectively. Moreover, sequence analysis revealed that Pish and Pi7 were embedded within the QTL1 and QTL11 delimited genomic intervals, respectively. This study thus concluded that QTL1 and QTL11 could encode alleles of Pish and Pi7 , designated as Pish-J and Pi7-J , respectively. To validate this hypothesis, the genomic regions of Pish-J and Pi7-J were cloned and sequenced. Protein sequence comparison revealed that Pish-J and Pi7-J were identical to Pish and Pi7, respectively. The holistic disease spectrum of JHN was found to be exactly attributed to the additive ones of both QTL1-C and QTL11-C. ConclusionJHN showed broad spectrum resistance against Thai and Philippine rice blast isolates. As this study demonstrated, the combination of two resistance genes, Pish-J and Pi7-J , in JHN, with each controlling broad-spectrum resistance to rice blast disease, explains the high level of resistance. Thus, the combination of Pish and Pi7 can provide a practical scheme for breeding durable resistance in rice against rice blast disease.
机译:Backgroundrice(Oryza sativa)是世界上最重要的粮食作物之一。由真菌病原体Magnaporthe oryzae引起的稻瘟病是全球最具破坏性的水稻疾病之一。为了有效应对这个问题,通过创新的育种计划使用稻瘟病抗性品种是迄今为止最好的策略。泰国米品种Jao Hom nin(JHN)显示出抗稻稻瘟病分离株的广谱抗性。在染色体1(QTL1)和11(QTL11)上报道了JHN中的两个抗抗抗抗抗涡斑QTL。生成了CO39遗传背景中QTL1(QTL1-C)和QTL11(QTL11-C)的效果致细胞。基于QTL1-C和QT111-C的疾病反应模式的聚类分析与IRBLS一起表明,这些两条单一的线分别与IRBLSH-S(PISH)和IRBL7-M(PI7)聚集。此外,序列分析显示,PIRH和PI7分别嵌入QTL1和QTL11界定的基因组间隔内。因此,该研究得出结论,QTL1和QTL11可以分别编码PIRH和PI7的等位基因,分别指定为PISH-J和PI7-J。为了验证这一假设,克隆和测序Pish-J和PI7-J的基因组区域。蛋白质序列比较显示PISH-J和PI7-J分别与PISH和PI7相同。发现JHN的整体疾病谱归因于QTL1-C和QTL11-C中的添加剂。结论JHN展示了泰国和菲律宾稻瘟病分离株的广泛耐谱。如本研究所示,在JHN中,两个抗性基因,PISH-J和PI7-J的组合,每种控制耐水稻爆炸疾病的广谱耐药性都解释了高水平的抗性。因此,PISH和PI7的组合可以提供一种实用的方案,可以在稻瘟病患者中培育耐用耐药性的实用方案。

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