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Attachment and Detachment of Living Microorganisms Using a Potential-Controlled Electrode

机译:使用电位控制电极附着和分离活微生物

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摘要

We developed an electrical modulation method for attachment and detachment of microorganisms. Living microorganisms suspended in non-nutritive media such as PBS(−) and artificial seawater were attracted by and selectively attached to indium tin oxide (ITO)/glass electrode regions to which a negative potential was applied. The microorganisms suspended in LB medium and glucose solution were not attracted to the ITO electrode. Dead microorganisms were not attracted to the ITO electrode. The living microorganisms were retrieved after detachment from the ITO electrode by application of a high-frequency triangular wave potential. When we applied this method to separate microorganisms from deep-sea sediment, bacteria belonging to 19 phyla and 23 classes were collected without undesirable high molecular weight contaminants such as humic acids. At the phylum and class level, respectively, 95 and 87 % of the phylotypes among electrically retrieved bacteria were common to the gene clones from the direct sediment DNA extraction. This technique is a novel useful method to prepare bacterial cells in a single population or a community for metagenomic analyses.
机译:我们开发了一种用于微生物附着和分离的电调制方法。悬浮在非营养性介质(如PBS(-)和人造海水)中的活微生物被吸附有负电的氧化铟锡(ITO)/玻璃电极区域吸引并选择性地附着在其上。悬浮在LB培养基和葡萄糖溶液中的微生物没有被吸引到ITO电极上。死去的微生物没有被吸引到ITO电极上。通过施加高频三角波电势,从ITO电极上脱离后,回收了活的微生物。当我们采用这种方法从深海沉积物中分离出微生物时,收集到的细菌属于19类和23类,没有有害的高分子量污染物,例如腐殖酸。在门类和分类级别上,电回收细菌中的系统型分别有95%和87%是直接沉积物DNA提取的基因克隆所共有的。这项技术是一种新颖有用的方法,可在单个种群或群落中制备细菌细胞进行宏基因组分析。

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