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首页> 外文期刊>Plant Disease >Induced Rice Resistance to Blast Varies as a Function of Magnaporthe grisea Avirulence Genes
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Induced Rice Resistance to Blast Varies as a Function of Magnaporthe grisea Avirulence Genes

机译:稻瘟病抗性随稻瘟病菌无毒力基因的变化而变化

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Incompatibility reactions between rice and the blast fungus Magnaporthe grisea produce various degrees of lesions, from large brown flecks to small, nearly invisible lesions. We previously identified four avirulence genes (AvrPia, AvrPii, AvrPit, and Avr-Hattan3) in M. grisea isolates by genetic analysis of progeny from crosses between isolates with differing pathogenicity. Using progeny known to contain a specific avirulence gene, we demonstrated that the type of resistance lesion produced in rice by an avirulent isolate and the degree of leaf blast suppression by preinoculation with that isolate were determined by the combination of avirulence and resistance genes in the isolate and the cultivar. The degree of leaf blast suppression by preinoculation with an avirulent isolate increased with larger resistance lesions. When two genes were involved in an isolate's avirulence, lesions appeared that resembled those expected for the gene that produced the smaller lesion. The degree of leaf blast suppression by the isolate with two avirulence genes was comparable with that induced by the isolate with the avirulence gene that produced the smaller effect. The ability of specific resistance gene combinations that effectively suppress blast disease is discussed for each avirulence gene.
机译:水稻和稻瘟病菌稻瘟病菌之间的不相容反应会产生各种程度的损害,从大的褐色斑点到几乎看不见的小损害。我们之前通过对具有不同致病性的分离株的杂交后代进行了遗传分析,从而在稻瘟病菌分离株中鉴定了四个无毒力基因(AvrPia,AvrPii,AvrPit和Avr-Hattan3)。使用已知包含特定无毒力基因的后代,我们证明了无毒分离物在水稻中产生的抗性病害类型以及通过预先接种该分离物而抑制稻瘟病的程度取决于分离物中无毒力和抗性基因的组合和品种。通过用无毒菌株进行预接种抑制叶瘟的程度随较大的抗性病害而增加。当两个基因与分离株的无毒力有关时,出现的病变与产生较小病变的基因的预期相似。具有两个无毒力基因的分离株对叶瘟的抑制程度与产生较小效应的无毒力基因的分离株诱导的相当。针对每种无毒力基因,讨论了特异性抗性基因组合有效抑制胚芽病的能力。

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