[从跨贝加尔湖地区氧化采矿废物中分离出的嗜酸性脱硫孢子菌]。

Mikrobiologiia Pub Date : 2015-09-01
O V Karnachuk, I A Kurganskaya, M R Avakyan, Y A Frank, O P Ikkert, R A Filenko, E V Danilovac, N V Pimenov
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引用次数: 0

摘要

硫酸盐异化还原法在酸性矿井水中溶解金属的脱除中起着重要作用。虽然这一过程令人信服地表明发生在金属回收的酸性废物中,但已知的耐酸硫酸盐还原菌的分离株很少。从俄罗斯外贝加尔邦邦-戈尔孔钨矿氧化后的酸性废液中分离到一株新的嗜酸硫化物BG菌株。通过对其16S rRNA基因序列的系统发育分析,鉴定其为Desulfosporosinus属植物。与其他已知的该属的嗜酸硫酸盐还原剂不同,菌株BG耐受高浓度铜(高达5 g/L),可以在低环境pH的有机酸上生长,并形成结晶铜硫化物(covellite和黄铜矿)。在氧化废物和富集培养物中显性表型的分子分析证实了多种脱硫孢子菌菌株的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[An Acidophilic Desulfosporosinus Isolated from the Oxidized Mining Wastes in the Transbaikal Area].

Dissimilatory sulfate reduction plays an important role in removal of dissolved metals from acidic mine waters. Although this process was convincingly shown to occur in acidic waste of metal recovery, few isolates of acid-tolerant sulfate rducers are known. We isolated a new acidophilic sulfidogen, strain BG, from the oxidized acidic waste of the Bom-Gorkhon tungsten deposit, Transbaikalia, Russia. Phylogenetic analysis of its 16S rRNA gene sequence made it possible to identify it as a member of the genus Desulfosporosinus. Unlike other known acidophilic sulfate reducers of this genus, strain BG was tolerant to high copper concentrations (up to 5 g/L), could grow on organic acids at low ambient pH, and formed crystalline copper sulfides (covellite and chalcopyrite). Molecular analysis of the phenotypes predominating in oxidized waste and in enrichment cultures confirmed the presence of various Desulfosporosinus strains.

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