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QTL Analysis for Resistance to Blast Disease in U.S. Weedy Rice

机译:美国杂草稻对稻瘟病抗性的QTL分析

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Understanding the genetic architecture of adaptation is of great importance in evolutionary biology. U.S. weedy rice is well adapted to the local conditions in U.S. rice fields. Rice blast disease is one of the most destructive diseases of cultivated rice worldwide. However, information about resistance to blast in weedy rice is limited. Here, we evaluated the disease reactions of 60 U.S. weedy rice accessions with 14 blast races, and investigated the quantitative trait loci (QTL) associated with blast resistance in two major ecotypes of U.S. weedy rice. Our results revealed that U.S. weedy rice exhibited a broad resistance spectrum. Using genotyping by sequencing, we identified 28 resistance QTL in two U.S. weedy rice ecotypes. The resistance QTL with relatively large and small effects suggest that U.S. weedy rice groups have adapted to blast disease using two methods, both major resistance (R) genes and QTL. Three genomic loci shared by some of the resistance QTL indicated that these loci may contribute to no-race-specific resistance in weedy rice. Comparing with known blast disease R genes, we found that the R genes at these resistance QTL are novel, suggesting that U.S. weedy rice is a potential source of novel blast R genes for resistant breeding.
机译:了解适应的遗传结构在进化生物学中非常重要。美国杂草稻非常适合美国稻田的当地条件。稻瘟病是全世界栽培稻中最具破坏性的疾病之一。但是,有关杂草稻瘟病抗性的信息有限。在这里,我们评估了60种美国杂草稻种与14种稻瘟病的病害反应,并研究了美国两种主要生态型稻草中与稻瘟病抗性相关的定量性状位点(QTL)。我们的结果表明,美国杂草稻表现出广泛的抗性谱。通过测序进行基因分型,我们在两种美国杂草水稻生态型中鉴定出28个抗性QTL。具有相对较大和较小影响的抗性QTL表明,美国杂草稻群体已经使用两种方法适应了稻瘟病,主要抗性(R)基因和QTL均如此。一些抗性QTL共有3个基因组位点,表明这些基因座可能有助于杂草稻的无种族特异性抗性。与已知的稻瘟病R基因相比,我们发现这些抗性QTL处的R基因是新的,这表明美国杂草稻是用于抗性育种的新型稻瘟R基因的潜在来源。

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