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Microbe-independent entry of oomycete RxLR effectors and fungal RxLR-Like effectors into plant and animal cells is specific and reproducible

机译:卵菌RxLR效应子和真菌RxLR样效应子的微生物非依赖性进入植物和动物细胞是特异性且可重现的

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摘要

A wide diversity of pathogens and mutualists of plant and animal hosts, including oomycetes and fungi, produce effector proteins that enter the cytoplasm of host cells. A major question has been whether or not entry by these effectors can occur independently of the microbe or requires machinery provided by the microbe. Numerous publications have documented that oomycete RxLR effectors and fungal RxLR-like effectors can enter plant and animal cells independent of the microbe. A recent reexamination of whether the RxLR domain of oomycete RxLR effectors is sufficient for microbe-independent entry into host cells concluded that the RxLR domains of Phytophthora infestans Avr3a and of P. sojae Avr1b alone are NOT sufficient to enable microbe-independent entry of proteins into host and nonhost plant and animal cells. Here, we present new, more detailed data that unambiguously demonstrate that the RxLR domain of Avr1b does show efficient and specific entry into soybean root cells and also into wheat leaf cells, at levels well above background nonspecific entry. We also summarize host cell entry experiments with a wide diversity of oomycete and fungal effectors with RxLR or RxLR-like motifs that have been independently carried out by the seven different labs that coauthored this letter. Finally we discuss possible technical reasons why specific cell entry may have been not detected by Wawra et al. (2013).
机译:动植物宿主(包括卵菌和真菌)的病原体和共生体种类繁多,它们产生的效应蛋白进入宿主细胞的细胞质。一个主要的问题是这些效应器的进入是否可以独立于微生物发生,还是需要由微生物提供的机械。许多出版物已证明卵菌体RxLR效应子和真菌RxLR样效应子可以独立于微生物进入植物和动物细胞。最近对卵菌的RxLR效应子的RxLR结构域是否足以独立于微生物进入宿主细胞的结论是,仅疫霉疫霉Avr3a和大豆疫霉Avr1b的RxLR结构域不足以使微生物独立的蛋白进入宿主细胞宿主和非宿主植物和动物细胞。在这里,我们提供了新的,更详细的数据,这些数据明确地表明,Avr1b的RxLR结构域确实有效且特异性地进入了大豆根细胞以及小麦叶片细胞,且其水平远高于背景非特异性进入。我们还总结了宿主细胞进入实验,该实验是由拥有这封信的七个不同实验室独立进行的具有RxLR或RxLR样基序的多种卵菌和真菌效应子组成的。最后,我们讨论了Wawra等人可能未检测到特定细胞进入的可能的技术原因。 (2013)。

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