Institute for Applied Microbiology, University of Tennessee, 37923, Knoxville, Tennessee, USA.
Microb Ecol. 1990 May;19(3):269-78. doi: 10.1007/BF02017171.
Biofilm formation on metallic surfaces in marine and freshwater environments often precedes corrosion and other biofouling conditions. Attachment is mediated by such environmental factors as the presence of surface conditioning films, fluid dynamics, bulk-phase nutrient levels, and surface chemistry. In this study, we utilized a Fowler Cell Adhesion Measurement Module to demonstrate that the changes in cellular concentration and composition of a monoculture ofPseudomonas atlantica biofilms on stainless steel were a function of the applied shear force. At shear forces in the range of 3-10 dynes cm(-2) (1.0 liter min(-1)), attachment as measured by acridine orange direct microscopic counts was greatest at the higher shear forces.(14)C-Acetate uptake activity on the stainless steel surfaces increased with shear stress. Acetate incorporation ranged from 1×10(-5) to 19×10(-5) μmol cm(-2) between 0.15 and 30 dynes cm(-2) for 30 min uptake periods. On a per cell basis, however, activity decreased with shear, indicating a shift in metabolism. Fourier transform infrared spectroscopy revealed that protein and carbohydrate concentrations also increased with the applied shear. Increased biofilm C∶N ratios and total fatty acids were associated with the higher shear stresses. Neither radius of interaction nor biofilm age appeared to significantly influence the relationship between fluid shear and attachment and cellular composition ofP. atlantica biofilms in the range of 1-10 dynes cm(-2).
在海洋和淡水环境中,金属表面的生物膜形成通常先于腐蚀和其他生物污垢条件。附着是由环境因素介导的,如表面调理膜的存在、流体动力学、体相营养水平和表面化学。在这项研究中,我们利用福勒细胞粘附测量模块证明,在不锈钢上单一培养的假单胞菌属生物膜的细胞浓度和组成的变化是应用剪切力的函数。在 3-10 达因/平方厘米(1.0 升/分钟)的剪切力范围内,通过吖啶橙直接显微镜计数测量的附着在较高的剪切力下最大。(14)C-乙酸在不锈钢表面上的摄取活性随剪切应力增加。在 0.15 到 30 达因/平方厘米的 30 分钟摄取期间,乙酸的掺入范围从 1×10(-5)到 19×10(-5)μmol/cm(2)。然而,以每个细胞为基础,活性随剪切力降低,表明代谢发生了转变。傅里叶变换红外光谱显示,蛋白质和碳水化合物浓度也随施加的剪切力而增加。增加的生物膜 C∶N 比和总脂肪酸与较高的剪切应力有关。在 1-10 达因/平方厘米的范围内,相互作用半径和生物膜年龄似乎都没有显著影响流体剪切力与附着和单一培养的假单胞菌属生物膜的细胞组成之间的关系。