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Low-level predation by lytic phage phiIPLA-RODI promotes biofilm formation and triggers the stringent response in Staphylococcus aureus

机译:裂解噬菌体phiIPLA-RODI的低水平捕食促进生物膜形成并触发金黄色葡萄球菌的严格反应

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摘要

An important lesson from the war on pathogenic bacteria has been the need to understand the physiological responses and evolution of natural microbial communities. Bacterial populations in the environment are generally forming biofilms subject to some level of phage predation. These multicellular communities are notoriously resistant to antimicrobials and, consequently, very difficult to eradicate. This has sparked the search for new therapeutic alternatives, including phage therapy. This study demonstrates that S. aureus biofilms formed in the presence of a non-lethal dose of phage phiIPLA-RODI exhibit a unique physiological state that could potentially benefit both the host and the predator. Thus, biofilms formed under phage pressure are thicker and have a greater DNA content. Also, the virus-infected biofilm displayed major transcriptional differences compared to an untreated control. Significantly, RNA-seq data revealed activation of the stringent response, which could slow down the advance of the bacteriophage within the biofilm. The end result would be an equilibrium that would help bacterial cells to withstand environmental challenges, while maintaining a reservoir of sensitive bacterial cells available to the phage upon reactivation of the dormant carrier population.
机译:关于致病细菌战争的一个重要教训是,需要了解自然微生物群落的生理反应和进化。环境中的细菌种群通常会形成生物膜,并受到某种程度的噬菌体捕食。众所周知,这些多细胞群落对抗菌素具有抗性,因此很难根除。这激发了寻找新的替代疗法的选择,包括噬菌体疗法。这项研究表明,在非致死性噬菌体phiIPLA-RODI的存在下形成的金黄色葡萄球菌生物膜表现出独特的生理状态,可能使宿主和捕食者都受益。因此,在噬菌体压力下形成的生物膜更厚并且具有更大的DNA含量。而且,与未处理的对照相比,病毒感染的生物膜显示出主要的转录差异。重要的是,RNA-seq数据显示出严格反应的激活,这可能会减慢生物膜内噬菌体的发展。最终结果将是一个平衡,该平衡将帮助细菌细胞抵抗环境挑战,同时在休眠载体群体重新激活后保持噬菌体可利用的敏感细菌细胞库。

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