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Examination of Lipopolysaccharide (O-Antigen) Populations of Thiobacillus ferrooxidans from Two Mine Tailings

机译:检查两个矿山尾矿中氧化亚铁硫杆菌的脂多糖(O-抗原)种群

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Net acid-generating capacities of 39.74 kg of H2SO4 per ton (ca. 0.05 kg/kg) (pH 2.68) for the Lemoine copper mine tailings (closed ca. 8 years ago; located 40 km west of Chibougamau, Quebec, Canada) and 16.07 kg of H2SO4 per ton (ca. 0.02 kg/kg) (pH 3.01) for the Copper Rand tailings (in current use and 50 km distant [east] from those of Lemoine) demonstrate that these sulfide tailings can support populations of acidophilic thiobacilli. Oxidized regions in both tailings environments were readily visible, were extremely acidic (Lemoine, pH 2.36; Copper Rand, pH 3.07), and provided natural isolates for our study. A 10% (wt/vol) oxalic acid treatment, which solubilizes both ferric sulfate and ferric hydroxide precipitates (B. Ramsay, J. Ramsay, M. deTremblay, and C. Chavarie, Geomicrobiol. J. 6:171-177, 1988), enabled the recovery of intact bacterial cells from the tailings material and from liquid synthetic medium for lipopolysaccharide analysis. No viable cells could be cultured after this oxalic acid treatment. Sodium dodecyl sulfate-polyacrylamide gel electro-phoretic profiles of lipopolysaccharides extracted from the Lemoine tailings were complex, indicating a heterogeneous population of Thiobacillus ferrooxidans. Six T. ferrooxidans subspecies as identified by lipopolysaccharide analysis (i.e., lipopolysaccharide chemotypes) were eventually isolated from a total of 112 cultures from the Lemoine tailings. Using the same isolate and lipopolysaccharide typing techniques, we identified only a single lipopolysaccharide chemotype from 20 cultures of T. ferrooxidans isolated from the Copper Rand tailings. This homogeneity of lipopolysaccharide chemotype was much different from what was found for the older Lemoine tailings and may reflect a progressive lipopolysaccharide heterogeneity of Thiobacillus isolates as tailings leach and age.
机译:Lemoine铜矿尾矿(约8年前关闭;位于加拿大魁北克省Chibougamau以西40公里处)的净产酸能力为每吨39.74 kg H2SO4(约0.05 kg / kg)(pH 2.68)和铜质尾矿(目前使用和距Lemoine尾矿[向东] 50公里(向东))每吨16.07千克H2SO4(约0.02千克/千克)(pH 3.01)表明,这些硫化物尾矿可以支持嗜酸性硫杆菌。在两个尾矿环境中的氧化区域均清晰可见,呈酸性(Lemoine,pH 2.36; Randine,pH 3.07),并为我们的研究提供了天然分离物。 10%(wt / vol)草酸处理,可溶解硫酸铁和氢氧化铁沉淀物(B. Ramsay,J。Ramsay,M。deTremblay和C. Chavarie,Geomicrobiol。J. 6:171-177, (1988),使得能够从尾矿和液体合成培养基中回收完整的细菌细胞用于脂多糖分析。草酸处理后无法培养活细胞。从Lemoine尾矿提取的脂多糖的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳图谱很复杂,表明氧化亚铁硫杆菌属的异质群体。最终从来自Lemoine尾矿的总共112种培养物中分离出了通过脂多糖分析确定的6种亚铁氧化亚种(即脂多糖化学型)。使用相同的分离物和脂多糖分型技术,我们从铜兰特尾矿中分离出的20种T.ferrooxidans培养物中仅鉴定了一种脂多糖化学型。脂多糖化学型的这种同质性与较老的Lemoine尾矿发现的有很大不同,并且可能反映出随着尾矿浸出和年龄的增加,硫杆菌分离株的脂多糖异质性不断提高。

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