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Isolation and Manipulation of Quantitative Trait Loci for Disease Resistance in Rice Using a Candidate Gene Approach

机译:利用候选基因方法分离和操纵水稻抗病性状的数量性状

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Bacterial blight caused by Xanthomonas oryzae pv. oryzae and fungal blast caused by Magnaporthe grisea result in heavy production losses in rice, a main staple food for approximately 50% of the world's population. Application of host resistance to these pathogens is the most economical and environment-friendly approach to solve this problem. Quantitative trait loci (QTLs) controlling quantitative resistance are valuable sources for broad-spectrum and durable disease resistance. Although large numbersof QTLs for bacterial blight and blast resistance have been identified, these sources have not been used effectively in rice improvement because of the complex genetic control of quantitative resistance and because the genes underlying resistance QTLs are unknown. To isolate disease resistance QTLs, we established a candidate gene strategy that integrates linkage map, expression profile, and functional complementation analyses. This strategy has proven to be applicable for identifying the genes underlying minor resistance QTLs in rice-Xoo and rice-M. grisea systems and it may also help to shed light on disease resistance QTLs of other cereals. Our results also suggest that a single minor QTL can be used in rice improvement by modulating the expressionof the gene underlying the QTL. Pyramiding two or three minor QTL genes, whose expression can be managed and that function in different defense signal transduction pathways, may allow the breeding of rice cultivars that are highly resistant to bacterialblight and blast.
机译:水稻黄单胞菌引起的细菌性疫病。稻瘟病菌引起的稻米和真菌爆炸导致稻米的大量生产损失,稻米是世界约50%人口的主要主食。对这些病原体施加宿主抗性是解决该问题的最经济,最环保的方法。控制定量抗性的定量性状位点(QTL)是广谱和持久性抗病性的宝贵来源。尽管已鉴定出大量的白叶枯病和稻瘟病抗性QTL,但由于定量抗性的复杂遗传控制以及抗性QTL的潜在基因尚不清楚,因此这些来源尚未有效用于水稻改良。为了分离抗病性QTL,我们建立了一个候选基因策略,该策略整合了连锁图谱,表达谱和功能互补分析。事实证明,该策略可用于鉴定水稻Xoo和水稻M中次要抗性QTL的基因。稻瘟病系统,它也可能有助于阐明其他谷物的抗病性QTL。我们的结果还表明,可以通过调节QTL潜在基因的表达来将单个次要QTL用于水稻改良。金字塔化两个或三个较小的QTL基因,可以控制其表达并在不同的防御信号转导途径中起作用,可以育种对白叶枯病和稻瘟病具有高度抗性的水稻品种。

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