Wrede Christoph, Heller Christina, Reitner Joachim, Hoppert Michael
Institut für Mikrobiologie und Genetik der Universität Göttingen, Grisebachstr. 8, D-37077 Göttingen, Germany.
J Microbiol Methods. 2008 May;73(2):85-91. doi: 10.1016/j.mimet.2008.02.020. Epub 2008 Mar 4.
In several fields of cell biology, correlative microscopy is applied to compare the structure of objects at high resolution under the electron microscope with low resolution light microscopy images of the same sample. It is, however, difficult to prepare samples and marker systems that are applicable for both microscopic techniques for the same specimen at the same time. In our studies, we used microbial mats from Cold Seep communities for a simple and rapid correlative microscopy method. The mats consist of bacterial and archaeal microorganisms, coupling reverse methanogenesis to the reduction of sulfate. The reverse methanogenic pathway also generates carbonates that precipitate inside the mat and may be the main reason for the formation of a microbial reef. The mat shows highly differentiated aggregates of various organisms, tightly interconnected by extracellular polysaccharides. In order to investigate the role of EPS as adhesive mucilage for the biofilm and as a precipitation matrix for carbonate minerals, samples were embedded in a hydrophilic resin (Lowicryl K4 M). Sections were suitable for light as well as electron microscopy in combination with lectins, either labeled with a fluorescent marker or with colloidal gold. This allows lectin mapping at low resolution for light microscopy in direct comparison with a highly resolved electron microscopic image.
在细胞生物学的多个领域,相关显微镜技术被用于将电子显微镜下高分辨率的物体结构与同一标本的低分辨率光学显微镜图像进行比较。然而,很难同时为同一标本制备适用于这两种显微镜技术的样本和标记系统。在我们的研究中,我们使用来自冷泉群落中的微生物席来建立一种简单快速的相关显微镜方法。这些微生物席由细菌和古细菌微生物组成,将反向产甲烷作用与硫酸盐还原耦合起来。反向产甲烷途径还会产生碳酸盐,这些碳酸盐在微生物席内沉淀,这可能是形成微生物礁的主要原因。微生物席显示出各种生物高度分化的聚集体,由细胞外多糖紧密连接。为了研究胞外聚合物作为生物膜的粘性粘液和碳酸盐矿物的沉淀基质的作用,样本被嵌入亲水性树脂(低温包埋树脂K4M)中。切片适用于光学显微镜以及结合凝集素的电子显微镜,凝集素要么用荧光标记,要么用胶体金标记。这使得在低分辨率下进行凝集素映射以用于光学显微镜,并与高分辨率的电子显微镜图像直接比较成为可能。