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Chemolithotrophic Bacteria in Copper Ores Leached at High Sulfuric Acid Concentration

机译:高硫酸浓度浸出铜矿石中的化营养细菌

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摘要

Extensive bacterial growth was observed when copper sulfide ores were leached with 0.6 N sulfuric acid. The bacterial population developed in this condition was examined by characterization of the spacer regions between the 16S and 23S rRNA genetic loci obtained after PCR amplification of the DNA extracted from the leached ore. The spacers observed had the sizes found in strains of "Leptospirillum ferrooxidans" and Thiobacillus thiooxidans, except for a larger one, approximately 560 bp long, that was not observed in any of the strains examined, including those of Thiobacillus ferrooxidans. The bacteria with this last spacer were selected after culturing in mineral and elemental sulfur media containing 0.7 N sulfuric acid. The spacer and the 16S ribosomal DNA of this isolate were sequenced and compared with those in species commonly found in bioleaching processes. Though the nucleotide sequence of the spacer showed an extensive heterologous region with T. thiooxidans, the sequence of its 16S rDNA gene indicated a close relationship (99.85%) with this species. These results indicate that a population comprised of bacterial strains closely related to T. thiooxidans and of another strain, possibly related to "L. ferrooxidans," can develop during leaching at high sulfuric acid concentration. Iron oxidation in this condition is attributable to "L. ferrooxidans" and not T. ferrooxidans, based on the presence of spacers with the "L. ferrooxidans" size range and the absence of spacers characteristic of T. ferrooxidans.
机译:当用0.6 N硫酸浸提硫化铜矿石时,观察到细菌大量繁殖。通过PCR扩增从浸出矿石中提取的DNA后获得的16S和23S rRNA遗传基因座之间的间隔区,可以检查在这种情况下发育的细菌种群。观察到的间隔物具有在“铁氧化细螺旋体”和硫代氧化硫杆菌中发现的大小,除了较大的大约560bp长的间隔物外,在任何所研究的菌株中都没有观察到,包括铁氧化硫杆菌。在含有0.7 N硫酸的矿物和元素硫培养基中培养后,选择具有最后一个间隔子的细菌。对该隔离株的间隔子和16S核糖体DNA进行了测序,并与生物浸提过程中常见的物种进行了比较。尽管间隔区的核苷酸序列显示与硫代氧化硫杆菌有广泛的异源区域,但其16S rDNA基因的序列与该物种有密切的关系(99.85%)。这些结果表明,在高硫酸浓度下的浸出过程中,可能形成由与硫代氧化硫紧密相关的细菌菌株和可能与“氧化亚铁氧化硫”相关的另一菌株组成的种群。基于存在具有“ L.ferrooxidans”尺寸范围的间隔物并且不存在T.ferrooxidans特征的间隔物,在这种条件下的铁氧化归因于“ L.ferrooxidans”而不是T.ferrooxidans。

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