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Iron and carbon metabolism by a mineral-oxidizing Alicyclobacillus-like bacterium

机译:矿物质氧化脂环酸杆菌样细菌的铁和碳代谢

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摘要

A novel iron-oxidizing, moderately thermophilic, acidophilic bacterium (strain “GSM”) was isolated from mineral spoil taken from a gold mine in Montana. Biomolecular analysis showed that it was most closely related to Alicyclobacillus tolerans, although the two bacteria differed in some key respects, including the absence (in strain GSM) of ?-alicyclic fatty acids and in their chromosomal base compositions. Isolate GSM was able to grow in oxygen-free media using ferric iron as terminal electron acceptor confirming that it was a facultative anaerobe, a trait not previously described in Alicyclobacillus spp.. The acidophile used both organic and inorganic sources of energy and carbon, although growth and iron oxidation by isolate GSM was uncoupled in media that contained both fructose and ferrous iron. Fructose utilization suppressed iron oxidation, and oxidation of ferrous iron occurred only when fructose was depleted. In contrast, fructose catabolism was suppressed when bacteria were harvested while actively oxidizing iron, suggesting that both ferrous iron- and fructose-oxidation are inducible in this acidophile. Isolate GSM accelerated the oxidative dissolution of pyrite in liquid media either free of, or amended with, organic carbon, although redox potentials were significantly different in these media. The potential of this isolate for commercial mineral processing is discussed.
机译:从蒙大拿州一个金矿中提取的矿渣中分离出一种新型的铁氧化,适度嗜热的嗜酸细菌(“ GSM”菌株)。生物分子分析表明,它与耐受性环酸杆菌最密切相关,尽管这两种细菌在某些关键方面有所不同,包括(在GSM菌株中)α-脂环族脂肪酸的缺乏及其染色体碱基组成。分离的GSM能够使用三价铁作为末端电子受体在无氧培养基中生长,从而证实它是兼性厌氧菌,这是以前在Alicyclobacillus spp中没有描述的特征。嗜酸菌使用有机和无机能源和碳源,尽管在含有果糖和亚铁的培养基中,分离的GSM的生长和铁氧化是不相关的。果糖的利用抑制了铁的氧化,仅当果糖耗尽时,亚铁才发生氧化。相反,当收获细菌并同时主动氧化铁时,果糖分解代谢被抑制,这表明在该嗜酸菌中,亚铁离子和果糖氧化均可被诱导。分离的GSM加速了黄铁矿在不含有机碳或用有机碳修正的液体介质中的氧化溶解,尽管这些介质中的氧化还原电位明显不同。讨论了这种分离物在商业矿物加工中的潜力。

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