Isolation and identification of Sulfobacillus sp. strains and their application in pyrite bioleaching
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Supported by the Open Fund of State Key Laboratory of Comprehensive Utilization of Low-Grade Refractory Gold Ores[ZJKY2011( B)KFJJ001]and by the National Programs for High Technology Research and Development of China (2012AA061501)

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    Abstract:

    Abstract:[Objective]The work aimed to isolate and culture the acidophilic and moderately thermophilic microorganisms for leaching the sulfide ore.[Methods]We enriched and incubated iron- or sulfur-oxidizing strains from muddy water of acuric hot spring utilizing ferrous irons or elemental sulfur as substrates. Then,we identified the strains by their morphological,physiological,biochemical properties and phylogenetic positions,and estimated their bioleaching potential according to their oxidation rate of pyrite.[Results]Two acidophilic,aerobic and facultative heterotrophic bacterial strains,Costa C and Costa E,were isolated from the samples of sulfuric hot springs of Costa Rica. Cells of the two strains were gram-positive,spore-forming and rod-shaped [(0.4-0.6)μm×(2.5-4.0)μm and (0.4-0.7)μm×(2.4-4.9)μm,respectively].Strain Costa C grew at a temperature range of 30℃ -55℃ and a pH range of 1.2-5.0,optimally at 50oC and 2.8.Strain Costa E grew at a temperature range of 30℃-55℃ and at a pH range of 1.4-5.0, optimally at 40oC and 2.8. Two strains could autotrophically grow on inorganic substrates such as ferrous irons,element sulfur and K2 S4O6 and also could utilize organic substrates like yeast extract for heterotrophic growth.Phylogenetic analysis based on 16S rRNA gene sequences alignment demonstrated that the highest similarity between strain Costa C,Costa E and other species of the genus Sulfobacillus was above 99%.[Conclusion]Based on morphological,physiological and biochemical analysis,Costa C and Costa E can be affiliated to the genus Sulfobacillus,for which the names Sulfobacillus sp. strain Costa C and Sulfobacillus sp. strain Costa E were proposed. Both strains could oxidize pyrite,and the oxidation rates arrived 63.0 mg/L·d and 56.8 mg/L·d,respectively.

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Tangjian Peng, Shuiping Zhong, Chaoran Chen, Cheng Peng, Chengying Jiang. Isolation and identification of Sulfobacillus sp. strains and their application in pyrite bioleaching. [J]. Acta Microbiologica Sinica, 2013, 53(12): 1318-1325

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History
  • Received:April 23,2013
  • Revised:June 13,2013
  • Adopted:
  • Online: December 02,2013
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