Microbial Processes and Interactions Laboratory, Terra Teaching and Research Center, Gembloux Agro-Bio Tech, University of Liège, Gembloux, Belgium.
Ecology and Biodiversity, Department of Biology, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.
ISME J. 2023 Feb;17(2):263-275. doi: 10.1038/s41396-022-01337-1. Epub 2022 Nov 10.
Bacillus velezensis is considered as model species for plant-associated bacilli providing benefits to its host such as protection against phytopathogens. This is mainly due to the potential to secrete a wide range of secondary metabolites with specific and complementary bioactivities. This metabolite arsenal has been quite well defined genetically and chemically but much remains to be explored regarding how it is expressed under natural conditions and notably how it can be modulated upon interspecies interactions in the competitive rhizosphere niche. Here, we show that B. velezensis can mobilize a substantial part of its metabolome upon the perception of Pseudomonas, as a soil-dwelling competitor. This metabolite response reflects a multimodal defensive strategy as it includes polyketides and the bacteriocin amylocyclicin, with broad antibiotic activity, as well as surfactin lipopeptides, contributing to biofilm formation and enhanced motility. Furthermore, we identified the secondary Pseudomonas siderophore pyochelin as an info-chemical, which triggers this response via a mechanism independent of iron stress. We hypothesize that B. velezensis relies on such chelator sensing to accurately identify competitors, illustrating a new facet of siderophore-mediated interactions beyond the concept of competition for iron and siderophore piracy. This phenomenon may thus represent a new component of the microbial conversations driving the behavior of members of the rhizosphere community.
解淀粉芽胞杆菌被认为是与植物相关的芽胞杆菌的模式种,它为宿主提供益处,例如抵御植物病原体。这主要是由于其能够分泌广泛的具有特定和互补生物活性的次生代谢物。这种代谢物武器库在遗传和化学上已经得到了很好的定义,但对于它在自然条件下是如何表达的,特别是在竞争根际生态位的种间相互作用中是如何被调节的,还有很多需要探索。在这里,我们表明,解淀粉芽胞杆菌可以在感知到土壤竞争者假单胞菌时动员其代谢组的很大一部分。这种代谢物反应反映了一种多模式防御策略,因为它包括具有广泛抗生素活性的聚酮类化合物和细菌素氨酰环菌素,以及表面活性剂脂肽,有助于生物膜形成和增强运动性。此外,我们还鉴定出了次级假单胞菌铁载体焦脱镁叶绿酸作为一种信息化学物质,它通过一种独立于铁胁迫的机制触发这种反应。我们假设,解淀粉芽胞杆菌依赖于这种螯合剂感应来准确识别竞争者,这说明了铁载体介导的相互作用的一个新方面,超越了竞争铁和铁载体劫持的概念。这种现象可能代表了驱动根际群落成员行为的微生物对话的一个新组成部分。