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The Rice Resistance Protein Pair RGA4/RGA5 Recognizes the Magnaporthe oryzae Effectors AVR-Pia and AVR1-CO39 by Direct Binding

机译:水稻抗性蛋白对RGA4 / RGA5通过直接结合识别稻瘟病菌效应子AVR-Pia和AVR1-CO39。

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摘要

Resistance (R) proteins recognize pathogen avirulence (Avr) proteins by direct or indirect binding and are multidomain proteins generally carrying a nucleotide binding () and a leucine-rich repeat () domain. Two - protein-coding genes from rice (Oryza sativa), RGA4 and RGA5, were found to be required for the recognition of the Magnaporthe oryzae effector AVR1-CO39. RGA4 and RGA5 also mediate recognition of the unrelated M. oryzae effector AVR-Pia, indicating that the corresponding R proteins possess dual recognition specificity. For RGA5, two alternative transcripts, RGA5-A and RGA5-B, were identified. Genetic analysis showed that only RGA5-A confers resistance, while RGA5-B is inactive. Yeast two-hybrid, coimmunoprecipitation, and fluorescence resonance energy transfer–fluorescence lifetime imaging experiments revealed direct binding of AVR-Pia and AVR1-CO39 to RGA5-A, providing evidence for the recognition of multiple Avr proteins by direct binding to a single R protein. Direct binding seems to be required for resistance as an inactive AVR-Pia allele did not bind RGA5-A. A small Avr interaction domain with homology to the Avr recognition domain in the rice R protein Pik-1 was identified in the C terminus of RGA5-A. This reveals a mode of Avr protein recognition through direct binding to a novel, non- interaction domain.
机译:抗性(R)蛋白通过直接或间接结合识别病原体无毒力(Avr)蛋白,是通常带有核苷酸结合()和富含亮氨酸的重复()结构域的多域蛋白。发现稻米(Oryza sativa)的两个蛋白质编码基因RGA4和RGA5对于识别稻瘟病菌效应子AVR1-CO39是必需的。 RGA4和RGA5还介导无关的米曲霉效应子AVR-Pia的识别,表明相应的R蛋白具有双重识别特异性。对于RGA5,鉴定了两个替代的转录本,即RGA5-A和RGA5-B。遗传分析表明,只有RGA5-A具有抗药性,而RGA5-B没有活性。酵母两杂交,共免疫沉淀和荧光共振能量转移-荧光寿命成像实验揭示了AVR-Pia和AVR1-CO39与RGA5-A的直接结合,为直接结合至单个R蛋白的多种Avr蛋白的识别提供了证据。抗性似乎需要直接结合,因为无活性的AVR-Pia等位基因不结合RGA5-A。在RGA5-A的C末端鉴定出一个与水稻R蛋白Pik-1中的Avr识别域同源的小Avr相互作用域。这揭示了通过与新的非相互作用域直接结合而识别Avr蛋白的方式。

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