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Analysis of Magnaporthe oryzae Genome Reveals a Fungal Effector Which Is Able to Induce Resistance Response in Transgenic Rice Line Containing Resistance Gene Pi54

机译:稻瘟病菌基因组的分析揭示了一种真菌效应子该效应子能够诱导包含抗性基因Pi54的转基因水稻品系的抗性响应

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摘要

Rice blast caused by Magnaporthe oryzae is one of the most important diseases of rice. Pi54, a rice gene that imparts resistance to M. oryzae isolates prevalent in India, was already cloned but its avirulent counterpart in the pathogen was not known. After decoding the whole genome of an avirulent isolate of M. oryzae, we predicted 11440 protein coding genes and then identified four candidate effector proteins which are exclusively expressed in the infectious structure, appresoria. In silico protein modeling followed by interaction analysis between Pi54 protein model and selected four candidate effector proteins models revealed that Mo-01947_9 protein model encoded by a gene located at chromosome 4 of M. oryzae, interacted best at the Leucine Rich Repeat domain of Pi54 protein model. Yeast-two-hybrid analysis showed that Mo-01947_9 protein physically interacts with Pi54 protein. Nicotiana benthamiana leaf infiltration assay confirmed induction of hypersensitive response in the presence of Pi54 gene in a heterologous system. Genetic complementation test also proved that Mo-01947_9 protein induces avirulence response in the pathogen in presence of Pi54 gene. Here, we report identification and cloning of a new fungal effector gene which interacts with blast resistance gene Pi54 in rice.
机译:稻瘟病菌引起的稻瘟病是水稻最重要的疾病之一。已经克隆了水稻基因Pi54,该基因对印度流行的米曲霉菌株具有抗性,但是尚不清楚其在病原体中的无毒对应物。在对米曲霉无毒分离株的整个基因组进行解码后,我们预测了11440个蛋白质编码基因,然后鉴定了四个仅在感染性结构Appresoria中表达的候选效应蛋白。在计算机模拟蛋白质模型中,然后通过对Pi54蛋白模型与选定的四个候选效应蛋白模型之间的相互作用进行分析,发现由位于米曲霉第4号染色体上的基因编码的Mo-01947_9蛋白模型在Pi54蛋白的亮氨酸富集重复结构域中相互作用最佳模型。酵母二杂交分析表明,Mo-01947_9蛋白与Pi54蛋白发生物理相互作用。烟草本氏烟草叶浸润测定法证实在异源系统中存在Pi54基因时会引起过敏反应。遗传互补试验还证明,在存在Pi54基因的情况下,Mo-01947_9蛋白在病原体中诱导了无毒力反应。在这里,我们报告鉴定和克隆与水稻抗稻瘟病基因Pi54相互作用的新的真菌效应基因。

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