叶绿体与病原体界面之间的膜接触位点是植物局灶性免疫反应的基础

Enoch Lok Him Yuen, Zachary Savage, Vojtěch Pražák, Zhongyuan Liu, Vanda Adamkova, Freddie King, Cristina Vuolo, Tarhan Ibrahim, Yijun Wang, Saskia Jenkins, Yuanyang Zhou, Yasin Tumtas, Jessica Lee Erickson, Jennifer Prautsch, Andrada I Balmez, Johannes Stuttmann, Cian Duggan, Francesco Rivetti, Camilla Molinari, David C A Gaboriau, Philip Carella, Xiaohong Zhuang, Martin Schattat, Tolga O Bozkurt
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引用次数: 0

摘要

细胞器之间的通讯是建立有效的先天免疫反应所必需的。细胞器运输到病原体渗透部位及其在宿主膜周围的组装,描绘了植物与病原体的界面,这是有充分文献记载的。然而,细胞器是否与这些专门的界面相关联,以及这一过程在多大程度上有助于免疫,仍然未知。在这里,我们发现了与防御相关的膜接触位点(MCS),包括叶绿体和围绕在吸器周围的疫霉菌(Phytophthora infestans)的吸器外膜(EHM)之间的膜系结复合体。该复合物的组装涉及叶绿体外包膜蛋白叶绿体异常定位1 (CHUP1)及其质膜相关伙伴肌动蛋白基叶绿体运动1 (KAC1)的激酶样蛋白之间的关联。我们的生化分析显示CHUP1和KAC1相互作用,感染细胞生物学分析显示它们在叶绿体接触EHM的病灶中共同积累。CHUP1或KAC1基因缺失可减少吸器周围胼胝质的局灶性沉积,而不影响其他核心免疫过程。我们的研究结果表明,叶绿体- ehm附着复合体促进了植物的局点免疫,揭示了关键成分及其在病原体界面防御物质沉积中的潜在作用。这些结果促进了我们对细胞器介导免疫的理解,并强调了MCS在植物与病原体相互作用中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Membrane contact sites between chloroplasts and the pathogen interface underpin plant focal immune responses
Communication between cellular organelles is essential for mounting effective innate immune responses. The transport of organelles to pathogen penetration sites and their assembly around the host membrane, which delineates the plant-pathogen interface, are well-documented. However, whether organelles associate with these specialized interfaces, and the extent to which this process contributes to immunity, remain unknown. Here, we discovered defense-related membrane contact sites (MCS) comprising a membrane tethering complex between chloroplasts and the extrahaustorial membrane (EHM) surrounding the haustorium of the pathogen Phytophthora infestans in Nicotiana benthamiana. The assembly of this complex involves association between the chloroplast outer envelope protein CHLOROPLAST UNUSUAL POSITIONING 1 (CHUP1) and its plasma membrane-associated partner KINESIN-LIKE PROTEIN FOR ACTIN-BASED CHLOROPLAST MOVEMENT 1 (KAC1). Our biochemical assays revealed that CHUP1 and KAC1 interact, and infection cell biology assays demonstrated their co-accumulation in foci where chloroplasts contact the EHM. Genetic depletion of CHUP1 or KAC1 reduces the focal deposition of callose around the haustorium without affecting other core immune processes. Our findings suggest that the chloroplast-EHM attachment complex promotes plant focal immunity, revealing key components and their potential roles in the deposition of defense materials at the pathogen interface. These results advance our understanding of organelle-mediated immunity and highlight the significance of MCS in plant-pathogen interactions.
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