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Fluorite Dissolution by a Phosphate-Solubilizing Bacterium Isolated from Groundwater of Xianghuangqi County, Inner Mongolia, China

机译:萤石溶解通过咸光县的地下水,中国内蒙古仙曲地下水分离的磷酸溶解的细菌溶解

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摘要

Xianghuangqi County of Inner Mongolia is a typical high-fluoride area in China. Present work discussed a possible role of phosphate-solubilizing bacteria (PSBs) in the formation of high-fluoride groundwater in this area. An indigenous PSB was isolated from the local groundwater. Analysis of 16S rDNA sequence indicates that the bacterium belongs to the Pseudomonas genus. This bacterium caused acidification of the culture media under phosphate-limited conditions. HPLC analysis detected several metabolites that are likely to acidify the cultural media. Fluorite dissolution experiment with this bacterium in minimum medium containing 2 mg/L, 20 mg/L, and 200 mg/L glucose showed that the initial concentration of glucose has a large effect on pH of the culture medium and the fluorite dissolution rate. The pH of bacterial cell-free medium remained constant throughout the experiment. Introduction of the PSB caused an initial decrease in pH, followed by an increase. The measured pH minima were 4.8, 5.8, and 6.0 for culture media amended with 200 mg/L, 20 mg/L, and 2 mg/L glucose, respectively. A slow increase of the fluoride concentration in bacterial cell-free medium was observed, and inoculation of the PSB increased the rate of fluoride release causing the concentration of fluoride in bacterial-inoculated medium to markedly exceed that found in control medium. The highest fluorite dissolution rate was observed in culture medium amended with 200 mg/L glucose, while the rates observed in culture medium amended with 20 mg/L and 2 mg/L glucose were comparable. Given the ubiquity of PSBs in natural environment, these findings show PSBs could be important contributors to fluoride mobilization in high fluoride area.
机译:内蒙古仙曲奇县是中国典型的高氟化物区。目前的工作讨论了磷酸盐溶解细菌(PSB)在该区域中形成高氟化物地下水的可能作用。从局部地下水中分离了土着PSB。 16S rDNA序列的分析表明细菌属于假单胞菌属。这种细菌在磷酸盐有限的条件下引起培养基的酸化。 HPLC分析检测了几种可能酸化文化媒体的代谢物。萤石溶解试验在含有2mg / L,20mg / L和200mg / L葡萄糖的最小培养基中的这种细菌显示,葡萄糖的初始浓度对培养基和氟溶解速率的pH有很大影响。在整个实验过程中,细菌无细胞培养基的pH仍然是恒定的。 PSB的引入导致pH的初始降低,然后增加。测量的pHIMIMA为4.8,5.8和6.0,用于培养培养基,分别用200mg / L,20mg / L和2mg / L葡萄糖修正。观察到细菌细胞培养基中的氟化物浓度的缓慢增加,并且接种PSB增加了氟化物释放速率,从而使细菌接种培养基中的氟化物浓度显着超过对照培养基中发现的氟化物。在用200mg / L葡萄糖的培养基中观察到最高的氟溶解速率,而用20mg / L和2mg / L葡萄糖在培养基中观察到的速率相当。鉴于自然环境中的PSB浮息,这些发现显示PSB可能是氟化氟在高氟化物区域中的重要贡献者。

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