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Molecular identification of iron oxidizing bacteria isolated from acid mine drainages in Peru

机译:秘鲁酸性矿区排水中分离的铁氧化细菌的分子鉴定

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Acidophilic iron-oxidizing microorganisms are important in both environmental and biotechnological applications. These microorganisms are known to accelerate the dissolution of sulfur minerals such as pyrite (FeS_2), leading to the acid mine drainage generation, a serious pollution problem, that makes these microorganisms essential to the commercial processing of minerals and sulfur. In order to answer this question, the diversity of native acidophilic bacterial species isolated from an acid mine drainage site in Peru was evaluated. The samples were collected from Yanacocha mining (3000 m.a.s.l.) located in the North of Cajamarca region, Yanamina mining (4440 m.a.s.l.) located in the middle of Huancavelica region; finally, SPCC mining (2000 m.a.s.l.) located in the South of Moquegua region. We isolated 11 strains from which three were identified as Acidithiobacillus ferrooxidans, two as At. ferrivorans, two as At. ferridurans, three as Leptospirillum ferrooxidans and one as Acidiphilium sp. by comparative sequencing of PCRamplified 16S rRNA genes. Phylogenetic analysis of the 16S rRNA genes revealed that some of the strains isolated are closely related to other already known, but there are some with similarities lower than 95 percent. Our results provide the first study on the diversity of iron-oxidizing bacteria isolated from acid mine drainage in Peru.
机译:嗜酸铁氧化微生物在环境和生物技术应用中都很重要。已知这些微生物可加速硫酸盐(FES_2)如硫酸盐(FES_2)的溶解,导致酸性矿山引流产生,严重的污染问题,使这些微生物对矿物和硫的商业加工至关重要。为了回答这个问题,评估了从秘鲁中分离的本地嗜酸性细菌种类的多样性。从YanaCocha Mining(3000 M.A.L.)收集的样品,位于Cajamarca地区北部,Yanamina Mining(4440 M.A.L.)位于Huancavelica地区中间;最后,SPCC矿业(2000 M.A.S.L.)位于Moquegua地区的南部。我们分离出11个菌株,其中三种被鉴定为酸酐铁氧氧化物,两种含量。福利沃斯人,两个人。菲克兰人,三种作为荔枝状管苯二氧化物和一种作为酸纤维素sp。通过PCRamplified 16s rRNA基因的比较测序。 16S rRNA基因的系统发育分析显示,分离的一些菌株与其他已经已知的菌株密切相关,但是有一些相似性低于95%。我们的研究结果提供了秘鲁酸性矿区分离的铁氧化细菌多样性的研究。

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