Mathomics, Center for Mathematical Modeling, Universidad de Chile, Beauchef 851, 7th Floor, Santiago, Chile; Center for Genome Regulation (Fondap 15090007), Universidad de Chile, Blanco Encalada 2085, Santiago, Chile; Laboratorio de Bioinformática y Expresión Génica, INTA, Universidad de Chile, El Líbano 5524, Macul, Santiago, Chile.
Mathomics, Center for Mathematical Modeling, Universidad de Chile, Beauchef 851, 7th Floor, Santiago, Chile; Center for Genome Regulation (Fondap 15090007), Universidad de Chile, Blanco Encalada 2085, Santiago, Chile.
Bioresour Technol. 2016 Oct;218:659-66. doi: 10.1016/j.biortech.2016.07.012. Epub 2016 Jul 6.
This work presents the molecular foundation of a consortium of five efficient bacteria strains isolated from copper mines currently used in state of the art industrial-scale biotechnology. The strains Acidithiobacillus thiooxidans Licanantay, Acidiphilium multivorum Yenapatur, Leptospirillum ferriphilum Pañiwe, Acidithiobacillus ferrooxidans Wenelen and Sulfobacillus thermosulfidooxidans Cutipay were selected for genome sequencing based on metal tolerance, oxidation activity and bioleaching of copper efficiency. An integrated model of metabolic pathways representing the bioleaching capability of this consortium was generated. Results revealed that greater efficiency in copper recovery may be explained by the higher functional potential of L. ferriphilum Pañiwe and At. thiooxidans Licanantay to oxidize iron and reduced inorganic sulfur compounds. The consortium had a greater capacity to resist copper, arsenic and chloride ion compared to previously described biomining strains. Specialization and particular components in these bacteria provided the consortium a greater ability to bioleach copper sulfide ores.
这项工作揭示了一个由五株从铜矿中分离出来的高效细菌组成的联合体的分子基础,这些细菌目前被应用于最先进的工业规模生物技术中。根据耐金属性、氧化活性和铜浸出效率,选择嗜酸硫杆菌 Licanantay、嗜酸嗜酸菌 Yenapatur、氧化亚铁硫杆菌 Pañiwe、硫杆菌 Ferrooxidans Wenelen 和硫杆菌 thermosulfidooxidans Cutipay 进行基因组测序。生成了一个代表该联合体浸出能力的代谢途径综合模型。结果表明,较高的铜回收效率可能归因于 L. ferriphilum Pañiwe 和 At. thiooxidans Licanantay 氧化铁和还原无机硫化合物的功能潜力更高。与之前描述的生物采矿菌株相比,该联合体具有更高的耐铜、砷和氯离子能力。这些细菌的专业化和特定成分为联合体提供了更大的生物浸出硫化铜矿石的能力。