首页> 外文期刊>Microbial Ecology: An International Journal >Combining in situ reverse transcriptase polymerase chain reaction, optical microscopy, and X-ray photoelectron spectroscopy to investigate mineral surface-associated microbial activities
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Combining in situ reverse transcriptase polymerase chain reaction, optical microscopy, and X-ray photoelectron spectroscopy to investigate mineral surface-associated microbial activities

机译:结合原位逆转录酶聚合酶链反应,光学显微镜和X射线光电子能谱研究矿物表面相关的微生物活性

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A study was undertaken to investigate expression of a gene encoding a c-type cytochrome in cells of the dissimilatory metal reducing bacterium (DMRB) Geobacter sulfurreducens during association with poorly crystalline and crystalline solid-phase Fe(III)-oxides. The gene encoding OmcC (outer membrane c-type cytochrome) was used as a target for PCR-based molecular detection and visualization of omcC gene expression by individual cells and aggregates of cells of G. sulfurreducens associated with ferrihydrite and hematite mineral particles. Expression of omcC was demonstrated in individual bacterial cells associated with these Fe-oxide surfaces by in situ RT-PCR (IS-RT PCR) and epifluorescence microscopy. Epifluorescence microscopy also permitted visualization of total DAPI-stained cells in the same field of view to assess the fraction of the cell population expressing omcC. By combining reflected differential interference contrast (DIC) microscopy and epifluorescence microscopy, it was possible to determine the spatial relationship between cells expressing omcC and the mineral surface. Introduction of the fluorescently labeled lectin concanavalin A revealed extracellular polymeric substances (EPS) extending between aggregations of bacterial cells and the mineral surface. The results indicate that EPS mediates an association between cells of G. sulfurreducens and ferrihydrite particles, but that direct cell contact with the mineral surface is not required for expression of omcC. XPS analysis revealed forms of reduced Fe associated with areas of the mineral surface where EPS-mediated bacterial associations occurred. The results demonstrate that by combining molecular biology, reflectance microscopy, and XPS, chemical transformations at a mineral surface can be related to the expression of specific genes by individual bacterial cells and cell aggregates associated with the mineral surface. The approach should be useful in establishing involvement of specific gene products in a wide variety of surface chemical processes.
机译:进行了一项研究,以研究异化金属还原细菌(DMRB)地球细菌硫还原菌在与不良结晶和结晶固相Fe(III)-氧化物缔合期间在细胞中编码c型细胞色素的基因的表达。编码OmcC的基因(外膜c型细胞色素)被用作基于PCR的分子检测和可视化与三水铁矿和赤铁矿矿物颗粒相关的G.硫还原菌的单个细胞和细胞聚集体omcC基因表达的靶标。通过原位RT-PCR(IS-RT PCR)和落射荧光显微镜观察证明了与这些Fe氧化物表面相关的单个细菌细胞中omcC的表达。落射荧光显微镜还可以在同一视野中观察总DAPI染色的细胞,以评估表达omcC的细胞群体的比例。通过结合反射差分干涉对比(DIC)显微镜和落射荧光显微镜,可以确定表达omcC的细胞与矿物表面之间的空间关系。荧光标记的凝集素伴刀豆球蛋白A的引入揭示了在细菌细胞聚集和矿物质表面之间延伸的细胞外聚合物质(EPS)。结果表明,EPS介导了G.sulfreducens细胞和水铁矿颗粒之间的缔合,但是omcC的表达不需要细胞与矿物表面直接接触。 XPS分析显示,Fe还原形式与矿物表面发生EPS介导的细菌缔合的区域有关。结果表明,通过结合分子生物学,反射显微镜和XPS,矿物质表面的化学转化可能与单个细菌细胞和与矿物质表面相关的细胞聚集体特定基因的表达有关。该方法在建立特定基因产物参与多种表面化学过程中应该是有用的。

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