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Co-option of a default secretory pathway for plant immune responses

机译:为植物免疫反应选择默认的分泌途径

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Cell-autonomous immunity is widespread in plant-fungus interactions and terminates fungal pathogenesis either at the cell surface or after pathogen entry. Although post-invasive resistance responses typically coincide with a self-contained cell death of plant cells undergoing attack by parasites, these cells survive pre-invasive defence. Mutational analysis in Arabidopsis identified PEN1 syntaxin as one component of two pre-invasive resistance pathways against ascomycete powdery mildew fungi. Here we show that plasma-membrane-resident PEN1 promiscuously forms SDS-resistant soluble N-ethylmaleimide sensitive factor attachment protein receptor (SNARE) complexes together with the SNAP33 adaptor and a subset of vesicle-associated membrane proteins (VAMPs). PENl-dependent disease resistance acts in vivo mainly through two functionally redundant VAMP72 subfamily members, VAMP721 and VAMP722. Unexpectedly, the same two VAMP proteins also operate redundantly in a default secretory pathway, suggesting dual functions in separate biological processes owing to evolutionary co-option of the default pathway for plant immunity. The disease resistance function of the secretory PEN1-SNAP33-VAMP721/722 complex and the pathogen-induced subcellular dynamics of its components are mechanistically reminiscent of immunological synapse formation in vertebrates, enabling execution of immune responses through focal secretion.
机译:细胞自主免疫广泛存在于植物-真菌相互作用中,并在细胞表面或病原体进入后终止真菌发病机理。尽管入侵后的抗性反应通常与遭受寄生虫侵袭的植物细胞的自足细胞死亡相吻合,但这些细胞在入侵前的防御中仍能生存。拟南芥中的突变分析确定PEN1语法素是针对子囊白粉病真菌的两个入侵前抗性途径的一个组成部分。在这里,我们显示血浆膜驻留PEN1混杂地形成SDS抗性的可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合物以及SNAP33衔接子和囊泡相关膜蛋白(VAMPs)的子集。 PEN1依赖性疾病抗性主要通过两个功能上冗余的VAMP72亚家族成员VAMP721和VAMP722在体内起作用。出乎意料的是,相同的两个VAMP蛋白在默认的分泌途径中也冗余运行,这表明由于植物免疫默认途径的进化共同选择,在单独的生物过程中具有双重功能。分泌型PEN1-SNAP33-VAMP721 / 722复合物的抗病功能及其病原体诱导的亚细胞动力学机制使人联想到脊椎动物中免疫突触的形成,从而可以通过局部分泌进行免疫反应。

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