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Nanoscale visualization and characterization of Myxococcus xanthus cells with atomic force microscopy

机译:用原子力显微镜对黄色葡萄球菌的纳米级可视化和表征

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摘要

Multicellular microbial communities are the predominant form of existence for microorganisms in nature. As one of the most primitive social organisms, Myxococcus xanthus has been an ideal model bacterium for studying intercellular interaction and multicellular organization. Through previous genetic and EM studies, various extracellular appendages and matrix components have been found to be involved in the social behavior of M. xanthus, but none of them was directly visualized and analyzed under native conditions. Here, we used atomic force microscopy (AFM) imaging and in vivo force spectroscopy to characterize these cellular structures under native conditions. AFM imaging revealed morphological details on the extracellular ultrastructures at an unprecedented resolution, and in vivo force spectroscopy of live cells in fluid allowed us to nanomechanically characterize extracellular polymeric substances. The findings provide the basis for AFM as a useful tool for investigating microbial-surface ultrastructures and nanomechanical properties under native conditions.
机译:多细胞微生物群落是自然界微生物的主要存在形式。作为最原始的社会有机体之一,黄色粘球菌一直是研究细胞间相互作用和多细胞组织的理想模式细菌。通过以前的遗传和EM研究,已发现各种细胞外附属物和基质成分都参与了X. xanthus的社会行为,但是在自然条件下都没有直接观察和分析它们。在这里,我们使用原子力显微镜(AFM)成像和体内力谱来表征在自然条件下的这些细胞结构。原子力显微镜成像以前所未有的分辨率揭示了细胞外超微结构的形态学细节,流体中活细胞的体内力谱使我们能够对细胞外聚合物质进行纳米力学表征。这些发现为原子力显微镜作为研究自然环境下微生物表面超微结构和纳米机械性能的有用工具提供了基础。

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