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Novel Combination of Atomic Force Microscopy and Epifluorescence Microscopy for Visualization of Leaching Bacteria on Pyrite

机译:原子力显微镜和落射荧光显微镜的新型结合用于可视化黄铁矿上的浸出细菌

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摘要

Bioleaching of metal sulfides is an interfacial process comprising the interactions of attached bacterial cells and bacterial extracellular polymeric substances with the surface of a mineral sulfide. Such processes and the associated biofilms can be investigated at high spatial resolution using atomic force microscopy (AFM). Therefore, we visualized biofilms of the meso-acidophilic leaching bacterium Acidithiobacillus ferrooxidans strain A2 on the metal sulfide pyrite with a newly developed combination of AFM with epifluorescence microscopy (EFM). This novel system allowed the imaging of the same sample location with both instruments. The pyrite sample, as fixed on a shuttle stage, was transferred between AFM and EFM devices. By staining the bacterial DNA with a specific fluorescence dye, bacterial cells were labeled and could easily be distinguished from other topographic features occurring in the AFM image. AFM scanning in liquid caused deformation and detachment of cells, but scanning in air had no effect on cell integrity. In summary, we successfully demonstrate that the new microscopic system was applicable for visualizing bioleaching samples. Moreover, the combination of AFM and EFM in general seems to be a powerful tool for investigations of biofilms on opaque materials and will help to advance our knowledge of biological interfacial processes. In principle, the shuttle stage can be transferred to additional instruments, and combinations of AFM and EFM with other surface-analyzing devices can be proposed.
机译:金属硫化物的生物浸出是一个界面过程,包括附着的细菌细胞和细菌胞外聚合物与矿物硫化物表面的相互作用。可以使用原子力显微镜(AFM)在高空间分辨率下研究此类过程和相关的生物膜。因此,我们通过新开发的原子力显微镜与表面荧光显微镜(EFM)结合,在金属硫化物黄铁矿上可视化了中嗜酸性浸提细菌铁二酸嗜酸硫杆菌亚铁菌株A2的生物膜。这种新颖的系统允许使用两种仪器对相同样品位置进行成像。将固定在梭台上的黄铁矿样品在AFM和EFM设备之间转移。通过用特定的荧光染料将细菌DNA染色,可以标记细菌细胞,并且可以很容易地将其与AFM图像中出现的其他地形特征区分开。在液体中进行原子力显微镜扫描会导致细胞变形和脱落,但在空气中进行扫描不会影响细胞的完整性。总之,我们成功地证明了新的显微镜系统适用于可视化生物浸出样品。此外,AFM和EFM的组合通常似乎是研究不透明材料上生物膜的有力工具,并且将有助于增进我们对生物界面过程的了解。原则上,可以将穿梭台转移到其他仪器上,并且可以提出AFM和EFM与其他表面分析设备的组合。

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