Ahmad Muhammad, Varela Alonso Alicia, Koletti Antigoni E, Assimopoulou Andreana N, Declerck Stéphane, Schneider Carolin, Molin Eva M
Center for Health & Bioresources, AIT Austrian Institute of Technology GmbH, Tulln, Austria.
Department of Botany and Biodiversity Research, University of Vienna, Vienna, Austria.
Front Microbiol. 2022 Aug 22;13:978021. doi: 10.3389/fmicb.2022.978021. eCollection 2022.
Plants are colonized by a wide range of bacteria, several of which are known to confer benefits to their hosts such as enhancing plant growth and the biosynthesis of secondary metabolites (SMs). Recently, it has been shown that sp. strain R-73072 enhances the production of alkannin/shikonin, SMs of pharmaceutical and ecological importance. However, the mechanisms by which this bacterial strain increases these SMs in plants are not yet understood. To gain insight into these mechanisms, we analyzed the molecular responses of , an alkannin/shikonin producing member of Boraginaceae, to inoculation with R-73072 in a gnotobiotic system using comparative transcriptomics and targeted metabolite profiling of root samples. We found that R-73072 modulated the expression of 1,328 genes, of which the majority appeared to be involved in plant defense and SMs biosynthesis including alkannin/shikonin derivatives. Importantly, bacterial inoculation induced the expression of genes that predominately participate in jasmonate and ethylene biosynthesis and signaling, suggesting an important role of these phytohormones in R-73072-mediated alkannin/shikonin biosynthesis. A detached leaf bioassay further showed that R-73072 confers systemic protection against Finally, R-73072-mediated coregulation of genes involved in plant defense and the enhanced production of alkannin/shikonin esters further suggest that these SMs could be important components of the plant defense machinery in alkannin/shikonin producing species.
植物会被多种细菌定殖,其中一些已知能为宿主带来益处,比如促进植物生长和次生代谢产物(SMs)的生物合成。最近研究表明,sp. 菌株R - 73072能提高紫朱草素/紫草素的产量,紫朱草素/紫草素是具有药学和生态学重要性的次生代谢产物。然而,该细菌菌株增加植物中这些次生代谢产物的机制尚不清楚。为深入了解这些机制,我们在无菌系统中,使用比较转录组学和根样本的靶向代谢物分析,分析了紫草科中一种能产生紫朱草素/紫草素的植物对接种R - 73072的分子反应。我们发现R - 73072调节了1328个基因的表达,其中大多数基因似乎参与植物防御和次生代谢产物生物合成,包括紫朱草素/紫草素衍生物。重要的是,细菌接种诱导了主要参与茉莉酸和乙烯生物合成及信号传导的基因表达,表明这些植物激素在R - 73072介导的紫朱草素/紫草素生物合成中起重要作用。离体叶片生物测定进一步表明,R - 73072能赋予对……的系统保护。最后,R - 73072介导的参与植物防御的基因共调节以及紫朱草素/紫草素酯产量的增加进一步表明,这些次生代谢产物可能是产生紫朱草素/紫草素的植物物种中植物防御机制的重要组成部分。