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Internalization of Flax Rust Avirulence Proteins into Flax and Tobacco Cells Can Occur in the Absence of the Pathogen

机译:病原菌的缺失会导致亚麻锈病无毒蛋白内化到亚麻和烟草细胞中

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摘要

Translocation of pathogen effector proteins into the host cell cytoplasm is a key determinant for the pathogenicity of many bacterial and oomycete plant pathogens. A number of secreted fungal avirulence (Avr) proteins are also inferred to be delivered into host cells, based on their intracellular recognition by host resistance proteins, including those of flax rust (Melampsora lini). Here, we show by immunolocalization that the flax rust AvrM protein is secreted from haustoria during infection and accumulates in the haustorial wall. Five days after inoculation, the AvrM protein was also detected within the cytoplasm of a proportion of plant cells containing haustoria, confirming its delivery into host cells during infection. Transient expression of secreted AvrL567 and AvrM proteins fused to cerulean fluorescent protein in tobacco (Nicotiana tabacum) and flax cells resulted in intracellular accumulation of the fusion proteins. The rust Avr protein signal peptides were functional in plants and efficiently directed fused cerulean into the secretory pathway. Thus, these secreted effectors are internalized into the plant cell cytosol in the absence of the pathogen, suggesting that they do not require a pathogen-encoded transport mechanism. Uptake of these proteins is dependent on signals in their N-terminal regions, but the primary sequence features of these uptake regions are not conserved between different rust effectors.
机译:病原体效应蛋白转运到宿主细胞质中是许多细菌和卵菌植物病原体致病性的关键决定因素。基于宿主抗性蛋白在细胞内的识别,包括亚麻锈病(Melampsora lini),它们也被推断出许多分泌的真菌无毒蛋白(Avr)被递送到宿主细胞中。在这里,我们通过免疫定位显示了亚麻锈病AvrM蛋白在感染过程中是从haustoria分泌出来的,并在haustry壁中积累。接种五天后,在一部分含有haustoria的植物细胞的细胞质中也检测到了AvrM蛋白,证实了其在感染过程中已传递到宿主细胞中。融合了天蓝色荧光蛋白的分泌型AvrL567和AvrM蛋白在烟草和亚麻细胞中的瞬时表达导致融合蛋白在细胞内的积累。锈Avr蛋白信号肽在植物中具有功能,并能有效地将融合的蔚蓝引导至分泌途径。因此,在没有病原体的情况下,这些分泌的效应子被内化到植物细胞的胞质溶胶中,表明它们不需要病原体编码的转运机制。这些蛋白质的摄取取决于其N端区域中的信号,但是这些摄取区域的主要序列特征在不同的防锈效应子之间并不保守。

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