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探索由该物种复合体的核心3型效应子利用的番茄根蛋白网络。

Exploring the Tomato Root Protein Network Exploited by Core Type 3 Effectors from the Species Complex.

作者信息

De Ryck Joren, Jonckheere Veronique, De Paepe Brigitte, De Keyser Annick, Peeters Nemo, Van Vaerenbergh Johan, Debode Jane, Van Damme Petra, Goormachtig Sofie

机构信息

Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Ghent, Belgium.

Center for Plant Systems Biology, VIB, 9052 Ghent, Belgium.

出版信息

J Proteome Res. 2025 Feb 7;24(2):696-709. doi: 10.1021/acs.jproteome.4c00757. Epub 2025 Jan 9.

Abstract

Proteomics has become a powerful approach for the identification and characterization of type III effectors (T3Es). Members of the species complex (RSSC) deploy T3Es to manipulate host cells and to promote root infection of, among others, a wide range of solanaceous plants such as tomato, potato, and tobacco. Here, we used TurboID-mediated proximity labeling (PL) in tomato hairy root cultures to explore the proxeomes of the core RSSC T3Es RipU, RipD, and RipB. The RipU proxeome was enriched for multiple protein kinases, suggesting a potential impact on the two branches of the plant immune surveillance system, being the membrane-localized PAMP-triggered immunity (PTI) and the RIN4-dependent effector-triggered immunity (ETI) complexes. In agreement, a transcriptomics analysis in tomato revealed the potential involvement of RipU in modulating reactive oxygen species (ROS) signaling. The proxeome of RipB was putatively enriched for mitochondrial and chloroplast proteins and that of RipD for proteins potentially involved in the endomembrane system. Together, our results demonstrate that TurboID-PL in tomato hairy roots represents a promising tool to study T3E targets and functioning and that it can unravel potential host processes that can be hijacked by the bacterial pathogen.

摘要

蛋白质组学已成为鉴定和表征III型效应子(T3E)的强大方法。物种复合体(RSSC)的成员利用T3E来操纵宿主细胞,并促进对多种茄科植物(如番茄、马铃薯和烟草)等的根部感染。在这里,我们在番茄毛状根培养物中使用TurboID介导的邻近标记(PL)来探索核心RSSC T3E RipU、RipD和RipB的邻近蛋白质组。RipU邻近蛋白质组富含多种蛋白激酶,这表明它可能对植物免疫监测系统的两个分支产生影响,即膜定位的模式触发免疫(PTI)和RIN4依赖性效应子触发免疫(ETI)复合体。与此一致,番茄中的转录组学分析揭示了RipU可能参与调节活性氧(ROS)信号传导。RipB的邻近蛋白质组推测富含线粒体和叶绿体蛋白,而RipD的邻近蛋白质组富含可能参与内膜系统的蛋白。总之,我们的结果表明,番茄毛状根中的TurboID-PL是研究T3E靶点和功能的一个有前途的工具,并且它可以揭示可能被细菌病原体劫持的潜在宿主过程。

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