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工业硫化铜堆浸中两株铁氧化嗜酸硫杆菌的动力学

The dynamics of two iron-oxidizing Acidithiobacillus strains in industrial copper sulfide heap-leaching.

作者信息

Escuti Camila, Véliz Roberto, Acosta Mauricio, Echeverría-Vega Alex, Araya Gonzalo, Ayma Diego, Demergasso Cecilia

机构信息

Centro de Biotecnología, Universidad Católica del Norte, Av. Angamos 0610, Antofagasta, Chile.

Centro de Biotecnología, Universidad Católica del Norte, Av. Angamos 0610, Antofagasta, Chile.

出版信息

Res Microbiol. 2024 Jan-Feb;175(1-2):104168. doi: 10.1016/j.resmic.2023.104168. Epub 2023 Nov 22.

Abstract

Several species within the Acidithiobacillus (At.) genus can derive energy from oxidizing ferrous iron and sulfur. Two bacterial strains according to their 16S rRNA gene sequences closely related to At. ferridurans and At. ferrivorans were obtained from the industrial sulfide heap leaching process at Minera Escondida (SLH), named D2 and DM, respectively. We applied statistical and data mining analyses to the abundance of At. ferridurans D2 and At. ferrivorans DM taxa in the industrial process over 16 years of operation. In addition, we performed phylogenetic analysis and genome comparison of the type strains, as well as culturing approaches with representative isolates of At. ferridurans D2 and At. ferrivorans DM taxa to understand the differential phenotypic features. Throughout the 16 years, two main operational stages were identified based on the D2 and DM taxa predominance in solution samples. The better suitability of At. ferrivorans DM to grow in a wide range of temperature and in micro-oxic environments, and to oxidize S by reducing Fe(III) revealed through culturing approaches can, in a way, explain the taxa distribution in both operational stages. The isolate At. ferridurans D2 could be considered as a specialist in aerobic sulfur oxidation, while isolate At. ferrivorans DM is a specialist in iron oxidation. In addition, the results from ore samples occasionally obtained from the industrial heap suggest that At. ferridurans D2 abundance was more related to its abundance in the solution samples than At. ferrivorans DM was. This dynamic coincides with previously obtained results in in-lab cell-mineral attaching experiments with both strains. This information increases our knowledge the ecophysiology of Acidithiobacillus and of the importance of diverse physiological traits at industrial bioleaching scales.

摘要

嗜酸氧化亚铁硫杆菌属(At.)中的几个物种能够通过氧化亚铁和硫来获取能量。根据其16S rRNA基因序列,从埃斯孔迪达矿(SLH)的工业硫化矿堆浸出过程中获得了两株与嗜铁嗜酸氧化亚铁硫杆菌和嗜铁嗜酸氧化硫硫杆菌密切相关的细菌菌株,分别命名为D2和DM。我们对工业生产过程中16年间嗜铁嗜酸氧化亚铁硫杆菌D2和嗜铁嗜酸氧化硫硫杆菌DM分类群的丰度进行了统计和数据挖掘分析。此外,我们对模式菌株进行了系统发育分析和基因组比较,并采用培养方法研究了嗜铁嗜酸氧化亚铁硫杆菌D2和嗜铁嗜酸氧化硫硫杆菌DM分类群的代表性分离株,以了解其不同的表型特征。在这16年中,根据溶液样品中D2和DM分类群的优势地位确定了两个主要操作阶段。通过培养方法揭示,嗜铁嗜酸氧化硫硫杆菌DM更适合在较宽的温度范围和微氧环境中生长,并通过还原Fe(III)来氧化S,这在一定程度上可以解释两个操作阶段的分类群分布情况。分离株嗜铁嗜酸氧化亚铁硫杆菌D2可被视为好氧硫氧化的专家,而分离株嗜铁嗜酸氧化硫硫杆菌DM则是铁氧化的专家。此外,偶尔从工业矿堆获得的矿石样品结果表明,嗜铁嗜酸氧化亚铁硫杆菌D2的丰度与其在溶液样品中的丰度相关性比嗜铁嗜酸氧化硫硫杆菌DM更强。这种动态变化与之前在实验室中对这两种菌株进行的细胞-矿物附着实验结果一致。这些信息增加了我们对嗜酸氧化亚铁硫杆菌生态生理学以及工业生物浸出规模下不同生理特征重要性的认识。

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