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Role of Extracellular Polymeric Substances in the Surface Chemical Reactivity of Hymenobacter aerophilus, a Psychrotolerant Bacterium▿

机译:细胞外多聚物质在嗜水菌,一种抗精神病细菌▿的表面化学反应中的作用▿

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摘要

Bacterial surface layers, such as extracellular polymeric substances (EPS), are known to play an important role in metal sorption and biomineralization; however, there have been very few studies investigating how environmentally induced changes in EPS production affect the cell's surface chemistry and reactivity. Acid-base titrations, cadmium adsorption assays, and Fourier transform infrared spectroscopy (FT-IR) were used to characterize the surface reactivities of Hymenobacter aerophilus cells with intact EPS (WC) or stripped of EPS (SC) and purified EPS alone. Linear programming modeling of titration data showed SC to possess functional groups corresponding to phosphoryl (pKa ∼6.5), phosphoryl/amine (pKa ∼7.9), and amine/hydroxyl (pKa ∼9.9). EPS and WC both possess carboxyl groups (pKa ∼5.1 to 5.8) in addition to phosphoryl and amine groups. FT-IR confirmed the presence of polysaccharides and protein in purified EPS that can account for the additional carboxyl groups. An increased ligand density was observed for WC relative to that for SC, leading to an increase in the amount of Cd adsorbed (0.53 to 1.73 mmol/liter per g [dry weight] and 0.53 to 0.59 mmol/liter per g [dry weight], respectively). Overall, the presence of EPS corresponds to an increase in the number and type of functional groups on the surface of H. aerophilus that is reflected by increased metal adsorption relative to that for EPS-free cells.
机译:细菌表面层,例如细胞外聚合物质(EPS),在金属吸附和生物矿化中起着重要作用。然而,很少有研究调查环境引起的EPS产生的变化如何影响细胞的表面化学和反应性。酸碱滴定,镉吸附测定和傅立叶变换红外光谱(FT-IR)用于表征具有完整EPS(WC)或剥离EPS(SC)和单独纯化的EPS的嗜氧杆菌(Hymenobacter aerophilus)细胞的表面反应性。滴定数据的线性程序模型表明,SC具有相应的官能团,分别对应于磷酰基(pKa〜6.5),磷酰基/胺(pKa〜7.9)和胺/羟基(pKa〜9.9)。 EPS和WC除磷酰基和胺基外均具有羧基(pKa约为5.1至5.8)。 FT-IR证实纯化的EPS中存在多糖和蛋白质,这可以解释额外的羧基。相对于SC,WC的配体密度增加,导致Cd的吸附量增加(每克[干重] 0.53至1.73 mmol / L和每克[干重] 0.53至0.59 mmol / L)。 , 分别)。总的来说,EPS的存在对应于嗜氧嗜血杆菌表面上官能团的数量和类型的增加,这通过相对于不含EPS的细胞的金属吸附增加来反映。

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