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Effect of surfactants on the biofilm of Rhodococcus erythropolis, a potent degrader of aromatic pollutants

机译:表面活性剂对红球红球菌(一种有效降解芳香族污染物的生物膜)的影响

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Bioremediation processes based on biofilms are usually very effective. The presence of(bio)surfactants in such processes can increase bioavailability of hydrophobic pollutants in aqueous phase. However, surfactants can affect the biofilm as well as individual microbial cells in different ways. Biosurfactants produced by a microbial population can be involved in the final structure of biofilm. An external application of synthetic surfactants or 'foreign' biosurfactants often results in partial or complete destruction of the biofilm and their high concentrations also have a toxic effect on microbial cells. Finding a suitable surfactant and its concentration, which would minimize the negative effects mentioned above, would allow to construct effective bioremediation processes using the benefits of both the biofilm and the surfactant. In this context, G ~+ bacterium Rhodococcus erythropolis, which has a wide potential for biodegradation of aromatic compounds, was studied. High surface hydrophobicity of its cells, given mainly by the presence of mycolic acids in the cell envelopes, allows formation of stable biofilms. Three synthetic surfactants(Spolapon AOS 146, Novanik 0633A, Tween 80) and rhamnolipid isolated from Pseudomonas aeruginosa were used. Changes in initial adhesion and biofilm formation caused by the surfactants were monitored in a flow cell equipped with hydrophilic/hydrophobic carriers and analyzed by image analysis.
机译:基于生物膜的生物修复过程通常非常有效。在这种过程中,(生物)表面活性剂的存在可以增加水相中疏水性污染物的生物利用度。然而,表面活性剂可以不同方式影响生物膜以及单个微生物细胞。由微生物种群产生的生物表面活性剂可参与生物膜的最终结构。外部使用合成表面活性剂或“外来”生物表面活性剂通常会导致部分或完全破坏生物膜,并且它们的高浓度也对微生物细胞具有毒性作用。寻找合适的表面活性剂及其浓度,将上述负面影响减至最小,这将允许利用生物膜和表面活性剂两者的益处来构建有效的生物修复工艺。在这种情况下,研究了具有广泛的芳香化合物生物降解潜力的G +细菌红球菌。其细胞的高表面疏水性(主要是由于细胞包膜中存在霉菌酸所致)可形成稳定的生物膜。使用了三种合成表面活性剂(Spolapon AOS 146,Novanik 0633A,Tween 80)和从铜绿假单胞菌中分离出的鼠李糖脂。在装有亲水/疏水载体的流通池中监测由表面活性剂引起的初始粘附力和生物膜形成的变化,并通过图像分析进行分析。

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