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首页> 外文期刊>Molecular Plant-Microbe Interactions >Pi64, Encoding a Novel CC-NBS-LRR Protein, Confers Resistance to Leaf and Neck Blast in Rice
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Pi64, Encoding a Novel CC-NBS-LRR Protein, Confers Resistance to Leaf and Neck Blast in Rice

机译:Pi64,编码新型CC-NBS-LRR蛋白,赋予水稻抗叶和颈瘟的能力

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摘要

Rice blast caused by Magnaporthe oryzae poses a major threat to rice production worldwide. The utilization of host resistance (R) genes is considered to be the most effective and economic means to control rice blast. Here, we show that the japonica landrace Yangmaogu (YMG) displays a broader spectrum of resistance to blast isolates than other previously reported broad-spectrum resistant (BSR) cultivars. Genetic analysis suggested that YMG contains at least three major R genes. One gene, Pi64, which exhibits resistance to indica-sourced isolate CH43 and several other isolates, was mapped to a 43-kb interval on chromosome 1 of YMG. Two open reading frames (NBS-1 and NBS-2) encoding nucleotide-binding site and leucine-rich repeat proteins were short-listed as candidate genes for Pi64. Constructs containing each candidate gene were transformed into three susceptible japonica cultivars. Only transformants with NBS-2 conferred resistance to leaf and neck blast, validating the idea that NBS-2 represents the functional Pi64 gene. Pi64 is constitutively expressed at all development stages and in all tissues examined. Pi64 protein is localized in both the cytoplasm and nucleus. Furthermore, introgression of Pi64 into susceptible cultivars via gene transformation and marker-assisted selection conferred high-level and broad-spectrum leaf and neck blast resistance to indica-sourced isolates, demonstrating its potential utility in breeding BSR rice cultivars.
机译:由稻瘟病菌引起的稻瘟病对全球稻米生产构成重大威胁。宿主抗性(R)基因的利用被认为是控制稻瘟病最有效和最经济的手段。在这里,我们显示了粳稻地方品种扬茂谷(YMG)与以前报道的其他广谱抗性(BSR)品种相比,对稻瘟病菌的抗药性范围更广。遗传分析表明,YMG至少包含三个主要的R基因。一个基因Pi64对to源来源的分离株CH43和其他几个分离株表现出抗性,被定位到YMG染色体1的43-kb区间。编码核苷酸结合位点和富含亮氨酸的重复蛋白的两个开放阅读框(NBS-1和NBS-2)被选作Pi64的候选基因。将包含每个候选基因的构建体转化为三个易感粳稻品种。只有具有NBS-2的转化子才具有对叶和颈部胚芽的抗性,验证了NBS-2代表功能性Pi64基因的想法。 Pi64在所有发育阶段和所有组织中均组成性表达。 Pi64蛋白位于细胞质和细胞核中。此外,通过基因转化和标记辅助选择将Pi64渗入易感品种,赋予了in稻来源分离株高水平和广谱的叶颈瘟抗性,证明了其在育种BSR水稻品种中的潜在用途。

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