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Conserved C-terminal motifs required for avirulence and suppression of cell death by Phytophthora sojae effector Avr1b

机译:大豆疫霉菌效应子Avr1b无毒和抑制细胞死亡所需的保守C端基序

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摘要

The sequenced genomes of oomycete plant pathogens contain large superfamilies of effector proteins containing the protein translocation motif RXLR-dEER. However, the contributions of these effectors to pathogenicity remain poorly understood. Here, we show that the Phytophthora sojae effector protein Avr1b can contribute positively to virulence and can suppress programmed cell death (PCD) triggered by the mouse BAX protein in yeast, soybean (Glycine max), and Nicotiana benthamiana cells. We identify three conserved motifs (K, W, and Y) in the C terminus of the Avr1b protein and show that mutations in the conserved residues of the W and Y motifs reduce or abolish the ability of Avr1b to suppress PCD and also abolish the avirulence interaction of Avr1b with the Rps1b resistance gene in soybean. W and Y motifs are present in at least half of the identified oomycete RXLR-dEER effector candidates, and we show that three of these candidates also suppress PCD in soybean. Together, these results indicate that the W and Y motifs are critical for the interaction of Avr1b with host plant target proteins and support the hypothesis that these motifs are critical for the functions of the very large number of predicted oomycete effectors that contain them.
机译:卵菌植物病原体的测序基因组包含效应蛋白的大超家族,所述效应蛋白包含蛋白易位基序RXLR-dEER。然而,这些效应子对致病性的贡献仍然知之甚少。在这里,我们显示大豆疫霉效应蛋白Avr1b可以对毒力产生积极贡献,并且可以抑制小鼠BAX蛋白在酵母,大豆(Glycine max)和本氏烟草中触发的程序性细胞死亡(PCD)。我们在Avr1b蛋白的C末端确定了三个保守的基序(K,W和Y),并显示出W和Y基序的保守残基中的突变降低或消除了Avr1b抑制PCD的能力,也消除了无毒力大豆Avr1b与Rps1b抗性基因的相互作用在确定的卵菌RXLR-dEER效应子候选物中,至少有一半存在W和Y基序,并且我们显示出这些候选物中的三个也抑制了大豆中的PCD。总之,这些结果表明,W和Y基序对于Avr1b与宿主植物靶蛋白的相互作用至关重要,并支持以下假设:这些基序对于包含它们的大量预测卵菌效应子的功能至关重要。

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