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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Evolution of copper arsenate resistance for enhanced enargite bioleaching using the extreme thermoacidophile Metallosphaera sedula
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Evolution of copper arsenate resistance for enhanced enargite bioleaching using the extreme thermoacidophile Metallosphaera sedula

机译:使用极端热酰胺磷含量沉淀的增强烯丙钛矿生物浸润的铜抗性抗性的演变

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摘要

Adaptive laboratory evolution (ALE) was employed to isolate arsenate and copper cross-resistant strains, from the copper-resistant M. sedula CuR1. The evolved strains, M. sedula ARS50-1 and M. sedula ARS50-2, contained 12 and 13 additional mutations, respectively, relative to M. sedula CuR1. Bioleaching capacity of a defined consortium (consisting of a naturally occurring strain and a genetically engineered copper sensitive strain) was increased by introduction of M. sedula ARS50-2, with 5.31 and 26.29% more copper recovered from enargite at a pulp density (PD) of 1 and 3% (w/v), respectively. M. sedula ARS50-2 arose as the predominant species and modulated the proportions of the other two strains after it had been introduced. Collectively, the higher Cu2+ resistance trait of M. sedula ARS50-2 resulted in a modulated microbial community structure, and consolidating enargite bioleaching especially at elevated PD.
机译:采用自适应实验室演化(ALE)从耐铜M. Sedula Cur1中分离砷酸盐和铜交叉菌株。 相对于M. Sedula Cur1,分别含有12和13个另外的突变的演化菌株,M. Sedula Ars50-1和M.Sedula Ars50-2。 通过引入M. Sedula Ars50-2增加了由M. Sedula Ars50-2增加的定义联盟(由天然存在的菌株和遗传工程铜敏菌株组成)的生物浸出能力,用5.31和26.29%以纸浆密度从液体回收的铜(PD)中恢复 分别为1和3%(w / v)。 M. Sedula Ars50-2作为主要物种,并在引入后调节其他两个菌株的比例。 统称,M. Sedula Ars50-2的较高Cu2 +抗性特征导致调节的微生物群落结构,并在升高的Pd下固结烯基体生物浸出。

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