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Fluorescence Correlation Spectroscopy To Study Diffusion and Reaction of Bacteriophages inside Biofilms

机译:荧光相关光谱研究生物膜内噬菌体的扩散和反应

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In the natural environment, most of the phages that target bacteria are thought to exist in biofilm ecosystems. The purpose of this study was to gain a clearer understanding of the reactivity of these viral particles when they come into contact with bacteria embedded in biofilms. Experimentally, we quantified lactococcal c2 phage diffusion and reaction through model biofilms using in situ fluorescence correlation spectroscopy with two-photon excitation. Correlation curves for fluorescently labeled c2 phage in nonreacting Stenotrophomonas maltophilia biofilms indicated that extracellular polymeric substances did not provide significant resistance to phage penetration and diffusion, even though penetration and diffusion were sometimes restricted because of the noncontractile tail of the viral particle. Fluctuations in the fluorescence intensity of the labeled phage were detected throughout the thickness of biofilms formed by c2-sensitive and c2-resistant strains of Lactococcus lactis but could never be correlated with time, revealing that the phage was immobile. This finding confirmed that recognition binding receptors for the viral particles were present on the resistant bacterial cell wall. Taken together, our results suggest that biofilms may act as “active” phage reservoirs that can entrap and amplify viral particles and protect them from harsh environments.
机译:在自然环境中,大多数针对细菌的噬菌体被认为存在于生物膜生态系统中。这项研究的目的是为了更清楚地了解这些病毒颗粒与嵌入生物膜中的细菌接触时的反应性。在实验上,我们通过使用双光子激发的原位荧光相关光谱,通过模型生物膜量化了乳球菌c2噬菌体的扩散和反应。未反应的嗜麦芽窄食单胞菌生物膜中荧光标记的c2噬菌体的相关曲线表明,胞外聚合物对噬菌体的渗透和扩散没有明显的抵抗力,尽管由于病毒颗粒的非收缩尾部有时会限制渗透和扩散。在由乳酸乳球菌的c2敏感和c2抵抗力菌株形成的生物膜的整个厚度上都检测到标记的噬菌体的荧光强度有波动,但从未与时间相关,表明该噬菌体是固定的。这一发现证实了在抗性细菌细胞壁上存在病毒颗粒的识别结合受体。综上所述,我们的结果表明,生物膜可以充当“活性”噬菌体库,可以捕获和扩增病毒颗粒并保护它们免受恶劣环境的侵害。

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