Department of Fundamental Microbiology, University of Lausanne, Lausanne, Switzerland.
Plant Pathology, Institute of Integrative Biology, Swiss Federal Institute of Technology (ETH) Zurich, Zurich, Switzerland.
ISME J. 2022 Jul;16(7):1683-1693. doi: 10.1038/s41396-022-01217-8. Epub 2022 Mar 10.
Environmental pseudomonads colonize various niches including insect and plant environments. When invading these environments, bacteria are confronted with the resident microbiota. To oppose with closely related strains, they rely on narrow-spectrum weaponry such as tailocins, i.e., phage tail-like particles. Little is known about the receptors for these tailocins especially among phylogenetically closely related species. Here, we studied the interaction between an R-tailocin from Pseudomonas protegens CHA0 and a targeted kin, Pseudomonas protegens Pf-5. Using genome-wide transposon insertion sequencing, we identified that lipopolysaccharides are involved in the sensitivity of Pf-5 towards the tailocin of CHA0. By generating Pf-5 lipopolysaccharide mutants and exposing them to extracted tailocin, we specified the two O-antigenic polysaccharides (O-PS) targeted by the tailocin. We affirmed the role of these O-PS through competition assays in vitro as well as in insects. Further, we demonstrate that O-PS are double-edge swords that are responsible for the sensitivity of P. protegens towards tailocins and phages produced by their kin, but shield bacteria from the immune system of the insect. Our results shed light on the trade-off that bacteria are confronted with, where specific O-PS decorations can both be of benefit or disadvantage depending on the host environment and its bacterial inhabitants.
环境假单胞菌定植于各种生境,包括昆虫和植物环境。当它们侵入这些环境时,会面临驻留的微生物群落。为了对抗亲缘关系密切的菌株,它们依赖于窄谱武器,如尾菌素,即噬菌体尾状颗粒。然而,对于这些尾菌素的受体,特别是在亲缘关系密切的物种中,人们知之甚少。在这里,我们研究了来自假单胞菌保护菌 CHA0 的 R 尾菌素与目标亲缘种假单胞菌保护菌 Pf-5 之间的相互作用。通过全基因组转座子插入测序,我们发现脂多糖参与了 Pf-5 对 CHA0 尾菌素的敏感性。通过生成 Pf-5 脂多糖突变体并将其暴露于提取的尾菌素中,我们确定了尾菌素靶向的两种 O-抗原多糖(O-PS)。我们通过体外竞争实验以及在昆虫体内实验证实了这些 O-PS 的作用。此外,我们证明 O-PS 是双刃剑,它们使假单胞菌保护菌对其亲缘种产生的尾菌素和噬菌体敏感,但使细菌免受昆虫免疫系统的攻击。我们的研究结果揭示了细菌面临的权衡,即特定的 O-PS 修饰可能因其宿主环境及其细菌居民的不同而具有益处或劣势。