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Unraveling the Central Role of Sulfur-Oxidizing Acidiphilium multivorum LMS in Industrial Bioprocessing of Gold-Bearing Sulfide Concentrates

机译:揭示硫氧化酸纤维素型多档LMS在耐金硫化物浓缩物工业生物过程中的核心作用

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摘要

Acidiphilium multivorum LMS is an acidophile isolated from industrial bioreactors during the processing of the gold-bearing pyrite-arsenopyrite concentrate at 38–42 °C. Most strains of this species are obligate organoheterotrophs that do not use ferrous iron or reduced sulfur compounds as energy sources. However, the LMS strain was identified as one of the predominant sulfur oxidizers in acidophilic microbial consortia. In addition to efficient growth under strictly heterotrophic conditions, the LMS strain proved to be an active sulfur oxidizer both in the presence or absence of organic compounds. Interestingly, Ac. multivorum LMS was able to succeed more common sulfur oxidizers in microbial populations, which indicated a previously underestimated role of this bacterium in industrial bioleaching operations. In this study, the first draft genome of the sulfur-oxidizing Ac. multivorum was sequenced and annotated. Based on the functional genome characterization, sulfur metabolism pathways were reconstructed. The LMS strain possessed a complicated multi-enzyme system to oxidize elemental sulfur, thiosulfate, sulfide, and sulfite to sulfate as the final product. Altogether, the phenotypic description and genome analysis unraveled a crucial role of Ac. multivorum in some biomining processes and revealed unique strain-specific characteristics, including the ars genes conferring arsenic resistance, which are similar to those of phylogenetically distinct microorganisms.
机译:酸纤维素Multivorum LMS是在含金的吡啶硫铁矿 - 阿塞枯石浓缩物在38-42℃的浓缩物过程中与工业生物反应器分离的嗜酸乳杆菌。大多数该物种的菌株是不使用铁铁或将硫化合物作为能量来源使用的有机潜能疗法。然而,LMS菌株被鉴定为嗜酸性微生物聚集体中主要的硫氧化剂之一。除了在严格异养的条件下有效的增长之外,LMS应变在存在或不存在有机化合物中被证明是活性硫氧化剂。有趣的是,交流。 Multivorum LMS能够在微生物群体中取得更常见的硫氧化剂,这表明该细菌在工业生物浸交作业中的先前低估了作用。在该研究中,硫氧化AC的第一草稿基因组。 Multivorum被测序并注释。基于功能基因组特征,重建硫代谢途径。 LMS菌株具有复杂的多酶系统,以将元素硫,硫代硫酸盐,硫化物和亚硫酸盐氧化为硫酸盐作为最终产物。完全,表型描述和基因组分析解开了AC的至关重要作用。在一些生物化过程中的多档,并揭示了独特的应变特异性,包括赋予砷抗性的ARS基因,这与系统源性不同的微生物类似。

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