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鉴定一种从锈菌吸器转移至受感染植物细胞中的蛋白质。

Identification of a protein from rust fungi transferred from haustoria into infected plant cells.

作者信息

Kemen Eric, Kemen Ariane C, Rafiqi Maryam, Hempel Uta, Mendgen Kurt, Hahn Matthias, Voegele Ralf T

机构信息

Phytopathologie, Fachbereich Biologie, Universität Konstanz, Germany.

出版信息

Mol Plant Microbe Interact. 2005 Nov;18(11):1130-9. doi: 10.1094/MPMI-18-1130.

Abstract

The formation of haustoria is one of the hallmarks of the interaction of obligate biotrophic fungi with their host plants. In addition to their role in nutrient uptake, it is hypothesized that haustoria are actively involved in establishing and maintaining the biotrophic relationship. We have identified a 24.3-kDa protein that exhibited a very unusual allocation. Rust transferred protein 1 from Uromyces fabae (Uf-RTP1p) was not only detected in the host parasite interface, the extrahaustorial matrix, but also inside infected plant cells by immunofluorescence and electron microscopy. Uf-RTP1p does not exhibit any similarity to sequences currently listed in the public databases. However, we identified a homolog of Uf-RTP1p in the related rust fungus Uromyces striatus (Us-RTP1p). The localization of Uf-RTP1p and Us-RTP1p inside infected plant cells was confirmed, using four independently raised polyclonal antibodies. Depending on the developmental stage of haustoria, Uf-RTP1p was found in increasing amounts in host cells, including the host nucleus. Putative nuclear localization signals (NLS) were found in the predicted RTP1p sequences. However, functional efficiency could only be verified for the Uf-RTP1p NLS by means of green fluorescent protein fusions in transformed tobacco protoplasts. Western blot analysis indicated that Uf-RTP1p and Us-RTP1p most likely enter the host cell as N-glycosylated proteins. However, the mechanism by which they cross the extrahaustorial membrane and accumulate in the host cytoplasm is unknown. The localization of RTP1p suggests that it might play an important role in the maintenance of the biotrophic interaction.

摘要

吸器的形成是专性活体营养型真菌与寄主植物相互作用的标志之一。除了其在养分吸收中的作用外,据推测吸器还积极参与建立和维持活体营养关系。我们鉴定出一种24.3 kDa的蛋白质,其分布非常特殊。来自蚕豆单胞锈菌的锈菌转移蛋白1(Uf-RTP1p)不仅在寄主-寄生物界面、吸器外基质中被检测到,通过免疫荧光和电子显微镜还在受感染的植物细胞内被检测到。Uf-RTP1p与目前公共数据库中列出的序列没有任何相似性。然而,我们在相关的条锈菌中鉴定出了Uf-RTP1p的一个同源物(Us-RTP1p)。使用四种独立制备的多克隆抗体证实了Uf-RTP1p和Us-RTP1p在受感染植物细胞内的定位。根据吸器的发育阶段,在寄主细胞包括寄主细胞核中发现Uf-RTP1p的量在增加。在预测 的RTP1p序列中发现了假定的核定位信号(NLS)。然而,只有通过转化烟草原生质体中的绿色荧光蛋白融合才能验证Uf-RTP1p NLS的功能效率。蛋白质印迹分析表明,Uf-RTP和Us-RTP1p很可能以N-糖基化蛋白的形式进入寄主细胞。然而,它们穿过吸器外膜并在寄主细胞质中积累的机制尚不清楚。RTP1p的定位表明它可能在维持活体营养相互作用中起重要作用。

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