De Ryck Joren, Van Damme Petra, Goormachtig Sofie
Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent, Belgium.
Center for Plant Systems Biology, VIB, Ghent, Belgium.
Front Microbiol. 2023 Feb 8;14:1113442. doi: 10.3389/fmicb.2023.1113442. eCollection 2023.
The type III secretion system (T3SS) is a well-studied pathogenicity determinant of many bacteria through which effectors (T3Es) are translocated into the host cell, where they exercise a wide range of functions to deceive the host cell's immunity and to establish a niche. Here we look at the different approaches that are used to functionally characterize a T3E. Such approaches include host localization studies, virulence screenings, biochemical activity assays, and large-scale omics, such as transcriptomics, interactomics, and metabolomics, among others. By means of the phytopathogenic species complex (RSSC) as a case study, the current advances of these methods will be explored, alongside the progress made in understanding effector biology. Data obtained by such complementary methods provide crucial information to comprehend the entire function of the effectome and will eventually lead to a better understanding of the phytopathogen, opening opportunities to tackle it.
III型分泌系统(T3SS)是许多细菌中经过充分研究的致病性决定因素,效应蛋白(T3Es)通过该系统被转运到宿主细胞中,在宿主细胞中发挥广泛功能以欺骗宿主细胞的免疫并建立生存空间。在这里,我们探讨用于对T3E进行功能表征的不同方法。这些方法包括宿主定位研究、毒力筛选、生化活性测定以及大规模组学,如转录组学、相互作用组学和代谢组学等。以植物致病物种复合体(RSSC)为例,将探索这些方法的当前进展以及在理解效应蛋白生物学方面取得的进展。通过这些互补方法获得的数据为理解效应蛋白组的整体功能提供了关键信息,并最终将有助于更好地理解植物病原体,为应对该病原体带来机会。