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Genomic insights into a new acidophilic, copper-resistant Desulfosporosinus isolate from the oxidized tailings area of an abandoned gold mine

机译:Genomic见解进入新的嗜酸性,耐铜抗性脱硫孢素肌肉中,从废弃金矿的氧化尾矿区域分离

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摘要

Microbial sulfate reduction in acid mine drainage is still considered to be confined to anoxic conditions, although several reports have shown that sulfate-reducing bacteria occur under microaerophilic or aerobic conditions. We have measured sulfate reduction rates of up to 60 nmol S cm(-3) day(-1) in oxidized layers of gold mine tailings in Kuzbass (SW Siberia). A novel, acidophilic, copper-tolerant Desulfosporosinus sp. I2 was isolated from the same sample and its genome was sequenced. The genomic analysis and physiological data indicate the involvement of transporters and additional mechanisms to tolerate metals, such as sequestration by polyphosphates. Desulfosporinus sp. I2 encodes systems for a metabolically versatile life style. The genome possessed a complete Embden-Meyerhof pathway for glycolysis and gluconeogenesis. Complete oxidation of organic substrates could be enabled by the complete TCA cycle. Genomic analysis found all major components of the electron transfer chain necessary for energy generation via oxidative phosphorylation. Autotrophic CO2 fixation could be performed through theWood-Ljungdahl pathway. Multiple oxygen detoxification systems were identified in the genome. Taking into account the metabolic activity and genomic analysis, the traits of the novel isolate broaden our understanding of active sulfate reduction and associated metabolism beyond strictly anaerobic niches.
机译:微生物硫酸盐降低酸性矿渗矿排出仍被认为是局限于缺氧条件,尽管有几个报告表明在微苯胺或有氧条件下发生硫酸盐降低的细菌。在库兹巴斯(SW西伯利亚)的氧化层中,我们在氧化层氧化层中测量了高达60nmol Scm(-​​3)天(-1)的硫酸盐降低速率。一种新颖的,嗜酸性,耐铜耐脱硫孢子素Sp。从相同的样品中分离I2,并测序其基因组。基因组分析和生理数据表明转运蛋白和额外机制涉及耐受金属,例如通过多磷酸盐螯合。脱硫孢菌素sp。 I2编码用于代谢上多功能生活方式的系统。基因组具有完整的Embden-Meyerhof途径,用于糖酵解和葡糖生成。可以通过完整的TCA循环使能有机基材的完全氧化。基因组分析发现通过氧化磷酸化所必需的电子转移链的所有主要成分。可以通过伍德-Ljungdahl途径进行自养CO2固定。在基因组中鉴定了多种氧解毒系统。考虑到代谢活性和基因组分析,新型分离物的性状拓宽了我们对严格厌氧龛的活性硫酸盐降低和相关代谢的理解。

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