Schultze-Lam S, Harauz G, Beveridge T J
Department of Microbiology, University of Guelph, Ontario, Canada.
J Bacteriol. 1992 Dec;174(24):7971-81. doi: 10.1128/jb.174.24.7971-7981.1992.
Cyanobacteria belonging to the Synechococcus group are ubiquitous inhabitants of diverse marine and freshwater environments. Through interactions with the soluble constituents of their aqueous habitats, they inevitably affect the chemistry of the waters they inhabit. Synechococcus strain GL24 was isolated from Fayetteville Green Lake, New York, where it has a demonstrated role in the formation of calcitic minerals. In order to understand the detailed interactions which lead to mineral formation by this organism, we have undertaken detailed ultrastructural studies of its cell surface and the initial events in mineral growth using a variety of electron microscopic and computer image enhancement techniques. Synechococcus strain GL24 has a hexagonally symmetrical S layer as its outermost cell surface component. The constituent protein(s) of this structure appears as a double band by sodium dodecyl sulfate-polyacrylamide gel electrophoresis with M(r)s of 104,000 and 109,000. We demonstrate that the S layer acts as a template for fine-grain gypsum and calcite formation by providing discrete, regularly arranged nucleation sites for the critical initial events in the mineralization process. To our knowledge, this is the first time that a bacterial S layer has been shown to have a role in mineral formation in a natural environment, and this report provides conclusive evidence for the specific involvement of bacterial surfaces in natural mineral formation processes.
属于聚球藻属的蓝细菌广泛存在于各种海洋和淡水环境中。通过与水体栖息地中的可溶性成分相互作用,它们不可避免地会影响其所处水体的化学性质。聚球藻GL24菌株是从纽约费耶特维尔绿湖分离出来的,在那里它在方解石矿物的形成中发挥了作用。为了了解导致该生物体形成矿物质的详细相互作用,我们使用了各种电子显微镜和计算机图像增强技术,对其细胞表面和矿物质生长的初始事件进行了详细的超微结构研究。聚球藻GL24菌株具有六边形对称的S层作为其最外层细胞表面成分。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,该结构的组成蛋白呈现为一条双带,分子量分别为104,000和109,000。我们证明,S层通过为矿化过程中的关键初始事件提供离散的、规则排列的成核位点,作为细粒石膏和方解石形成的模板。据我们所知,这是首次证明细菌S层在自然环境中的矿物质形成中发挥作用,本报告为细菌表面在自然矿物质形成过程中的具体参与提供了确凿证据。