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Morphological analysis of young and old pellicles of Salmonella Typhimurium

机译:鼠伤寒沙门氏菌幼小和老皮的形态学分析

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摘要

A wide variety of microorganisms are able to form biofilms at the interface between air and liquid (pellicles). In this study changes during the maturation of the pellicle of Salmonella Typhimurium were analysed and the role of cellulose in the pellicle structure and morphology evaluated. The morphology of both sides of the pellicle was characterised using atomic force microscopy and scanning electron microscopy. Overall, there was a marked difference in the morphology of the water-facing (WF) and air-facing (AF) biofilm surfaces. While the AF side appeared to be uniform, and extensively covered with an exocellular coating, cells in the WF side were distributed into clusters and were less covered. However, the similarity in size and shape of single cells from both sides of the pellicle may indicate that the bacterial cells across the pellicle have a similar physiological status. During maturation, porous structures with multiple cracks and channels were created in the pellicle, leading to disintegration. By comparison with the structure of pellicles of a cellulose-deficient mutant, it was demonstrated that the observed disintegration of mature pellicles probably occurred in part by self-hydrolysis of components of the matrix.
机译:各种各样的微生物能够在空气和液体(薄膜)之间的界面上形成生物膜。在这项研究中,分析了鼠伤寒沙门氏菌防护膜成熟过程中的变化,并评估了纤维素在防护膜结构和形态中的作用。使用原子力显微镜和扫描电子显微镜来表征防护膜两侧的形态。总体而言,面向水(WF)和面向空气(AF)的生物膜表面的形态存在显着差异。尽管AF侧看上去很均匀,并被细胞外涂层广泛覆盖,但WF侧的细胞却散布成簇,覆盖较少。然而,来自防护膜两侧的单个细胞的大小和形状的相似性可能表明跨防护膜的细菌细胞具有相似的生理状态。在成熟期间,在防护膜中形成具有多个裂纹和通道的多孔结构,从而导致崩解。通过与缺乏纤维素的突变体的防护膜的结构比较,证明了观察到的防护膜的分解可能部分是由于基质成分的自水解引起的。

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