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Visualization of the Sorption of Nickel within Exopolymer Microdomains of Bacterial Microcolonies Using Confocal and Scanning Electron Microscopy

机译:共聚焦和扫描电子显微镜观察细菌微菌落的外聚合物微区中镍的吸附

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摘要

The sorption and distribution of nickel, a common metal contaminant in aquatic systems, were assessed in bacterial microcolonies using a combination of fluorescent staining with Newport Green and confocal laser scanning microscopy (CLSM) with confirmation by scanning electron microscopy (SEM) and X-ray microprobe analyses. CLSM with Newport Green, selected fluor-conjugated lectins, and DNA staining allowed for the discrimination of the microdomains present in the microcolony exopolymeric matrix and detection of bound nickel. This approach avoided the artefacts associated with drying and fixation required by analytical electron microscopy. The results obtained indicated that specific microcolonies within river biofilms sorbed nickel within limited microdomains present in the complex tripartite exopolymeric matrix surrounding bacterial cells. Sorption occurred such that nickel was concentrated within the exopolymeric matrix, but not directly associated with cells. These microdomains appeared to have neutral pH and be dominated by negatively charged residues favoring the sorption of nickel and other cations. These results also suggest an important role for specific community members in the sorption and concentration of metals in aquatic biofilm communities.
机译:结合了纽波特格林荧光染色和共聚焦激光扫描显微镜(CLSM)并通过扫描电子显微镜(SEM)和X射线确认,评估了细菌微菌落中镍(水生系统中常见金属污染物)的吸附和分布微量探针分析。 CLSM结合纽波特格林(Newport Green),选择的与荧光共轭的凝集素和DNA染色技术,可区分微菌落外聚基质中存在的微区并检测结合的镍。这种方法避免了与分析电子显微镜所需的干燥和固定相关的伪影。获得的结果表明,河流生物膜内的特定微菌落吸附了存在于细菌细胞周围的复杂的三方共聚基质中有限的微区中的镍。发生吸附,使得镍集中在外聚合基质中,但不与细胞直接缔合。这些微区似乎具有中性的pH值,并被带负电荷的残基所支配,有利于镍和其他阳离子的吸附。这些结果也暗示了特定群落成员在水生物膜群落中金属的吸附和浓度中的重要作用。

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