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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption of copper on Pseudomonas aureofaciens: Protective role of surface exopolysaccharides
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Adsorption of copper on Pseudomonas aureofaciens: Protective role of surface exopolysaccharides

机译:铜在金黄色假单胞菌上的吸附:表面胞外多糖的保护作用

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Adsorption of copper on exopolysaccharide (EPS)-rich and (EPS)-poor soil rhizospheric Pseudomonas aureofaciens cells was studied as a function of pH and copper concentration at different exposure time in order to assess the effect of cell exopolysaccharides on parameters of adsorption equilibria. The surface properties of bacteria were investigated as a function of pH and ionic strength using potentiometric acid-base titration and electrophoresis that permitted the assessment of the excess surface proton concentration and zeta-potential of the cells, respectively. For adsorption experiments, wide range of Cu concentration was investigated (0.1-375μM) in order to probe both weak and strong binding sites at the surface. Experimental results were successively fitted using a Linear Programming Model approach. The groups with pK_a of 4.2-4.8 and from 5.2 to 7.2, tentatively assigned as carboxylates and phosphoryl respectively, are the most abundant at the surface and thus essentially contribute to the metal binding. The presence of exopolysaccharides on the surface decreases the amount of copper adsorbed on the bacterial cell wall apparently via screening the underlining functional groups of the cell wall. At the same time, dissolved EPS substances do not contribute to Cu binding in aqueous solution. Results of this study allow quantification of the role played by the surface EPS matrix as a protective barrier for metal adsorption on bacterial cell walls.
机译:研究了在不同暴露时间,富含胞外多糖(EPS)和贫(EPS)的土壤根际土壤铜绿假单胞菌细胞对铜的吸附随pH和铜浓度的变化,以评估细胞胞外多糖对吸附平衡参数的影响。使用电位酸碱滴定法和电泳法分别研究了细菌的表面特性与pH和离子强度的关系,从而分别评估了细胞的过量表面质子浓度和ζ电势。对于吸附实验,研究了宽范围的Cu浓度(0.1-375μM),以探测表面上的弱结合位点和强结合位点。使用线性规划模型方法相继拟合了实验结果。暂定分别指定为羧酸盐和磷酰基的pK_a为4.2-4.8和5.2至7.2的基团在表面上最丰富,因此基本上有助于金属结合。通过筛选细胞壁下划线的官能团,表面上胞外多糖的存在明显减少了细菌细胞壁上吸附的铜量。同时,溶解的EPS物质不会有助于水溶液中的Cu结合。这项研究的结果可以量化表面EPS基质作为细菌细胞壁上金属吸附的保护性屏障所起的作用。

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