Department of Basic and Applied Biology, University of L'Aquila, 67010 L'Aquila, Italy.
Microsc Microanal. 2012 Aug;18(4):829-39. doi: 10.1017/S1431927612000426. Epub 2012 Jun 15.
This study highlights the role of specific outer bacterial structures, such as the glycocalix, in calcium carbonate crystallization in vitro. We describe the formation of calcite crystals by extracellular polymeric materials, such as exopolysaccharides (EPS) and capsular polysaccharides (CPS) isolated from Bacillus firmus and Nocardia calcarea. Organic matrices were isolated from calcifying bacteria grown on synthetic medium--in the presence or absence of calcium ions--and their effect on calcite precipitation was assessed. Scanning electron microscopy observations and energy dispersive X-ray spectrometry analysis showed that CPS and EPS fractions were involved in calcium carbonate precipitation, not only serving as nucleation sites but also through a direct role in crystal formation. The utilization of different synthetic media, with and without addition of calcium ions, influenced the biofilm production and protein profile of extracellular polymeric materials. Proteins of CPS fractions with a molecular mass between 25 and 70 kDa were overexpressed when calcium ions were present in the medium. This higher level of protein synthesis could be related to the active process of bioprecipitation.
这项研究强调了特定的细菌外部结构,如糖萼,在体外碳酸钙结晶中的作用。我们描述了由胞外聚合物材料(如从坚硬芽孢杆菌和矿化球菌中分离出的胞外多糖(EPS)和荚膜多糖(CPS))形成的方解石晶体。从在合成培养基中生长的钙化细菌中分离出有机基质 - 存在或不存在钙离子 - 并评估了它们对碳酸钙沉淀的影响。扫描电子显微镜观察和能谱分析表明,CPS 和 EPS 部分参与了碳酸钙沉淀,不仅作为成核位点,而且还通过直接参与晶体形成。使用不同的合成培养基,添加或不添加钙离子,影响了胞外聚合物的生物膜产生和蛋白质图谱。当培养基中存在钙离子时,分子量在 25 至 70 kDa 之间的 CPS 部分的蛋白质表达上调。这种更高水平的蛋白质合成可能与生物沉淀的活性过程有关。