[Physiological Properties of Acidithiobacillus ferrooxidans Strains Isolated from Sulfide Ore Deposits in Kazakhstan].

Mikrobiologiia Pub Date : 2015-05-01
Z K Kanaeva, A G Bulaev, A T Kanaev, T F Kondrat'eva
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Abstract

Acidithiobacillus ferroxidans strains were isolated from acidophilic microbial communities of Kazakhstan sulfide ore deposits. Their biotechnologically important properties (optimal and maximal growth temperatures and resistance to NaCl) were determined. While temperature optima of the strains were the same (30-32 degrees C), temperature ranges were different. Thus, strain TFBK oxidized iron very poorly at 37 degrees C, while for strain TFV, the iron oxidation rate at this temperature was insignificantly lower than at lesser temperatures. NaCl inhibited the oxidative activity of both strains. Iron oxidation by strain TFV was inhibited at 5 g/L NaCl and was suppressed almost completely at 20 g/L. Iron oxidation by strain TFBK was inhibited by NaCl to a lesser degree, so that iron oxidation rate was relatively high at 10 g/L, while at 20 g/L NaCl the process was not suppressed completely, although the oxidation rate was low. Sulfur oxidation by these strains was less affected by NaCl than oxidation of ferrous iron. Sulfur oxidation by strain TFV was considerably inhibited only at 20 g/L NaCl, but was not suppressed completely. Sulfur oxidation by strain TFBK was more affected by NaCl. At 10 g/L NaCl the oxidation rate was much lower than at lower NaCl concentrations (sulfate concentrations after 6 days of oxidation at 5 and 10 g/L NaCl were -130 and -100 mM, respectively). While sulfur oxidation by strain TFBK was considerably inhibited at 10 and 20 g/L NaCl, similar to strain TFV it was not suppressed completely. Our results indicate the adaptation of the species A. ferrooxidans to a broad range of growth conditions.

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[哈萨克斯坦硫化物矿床中酸性氧化亚铁硫杆菌菌株的生理特性]。
从哈萨克斯坦硫化物矿床嗜酸微生物群落中分离到嗜酸氧化亚铁硫杆菌菌株。确定了它们在生物技术上的重要特性(最佳和最高生长温度以及对NaCl的抗性)。菌株的最适温度均为30 ~ 32℃,但温度范围不同。因此,菌株TFBK在37℃时对铁的氧化非常差,而菌株TFV在37℃时的铁氧化速率不显著低于较低温度下的铁氧化速率。NaCl抑制了两种菌株的氧化活性。菌株TFV对铁的氧化在5 g/L NaCl下被抑制,在20 g/L NaCl下几乎被完全抑制。菌株TFBK对铁的氧化受到较小程度的抑制,因此在10 g/L NaCl下,铁的氧化速率较高,而在20 g/L NaCl下,虽然氧化速率较低,但并没有完全被抑制。这些菌株的硫氧化受NaCl的影响小于亚铁的氧化。菌株TFV的硫氧化作用仅在20 g/L NaCl条件下被明显抑制,但未被完全抑制。菌株TFBK的硫氧化受NaCl的影响较大。在10 g/L NaCl处理下,氧化速率明显低于低浓度处理(5和10 g/L NaCl处理6 d后的硫酸盐浓度分别为-130和-100 mM)。菌株TFBK在10和20 g/L NaCl处理下对硫的氧化有明显的抑制作用,但与菌株TFV相似,未被完全抑制。我们的研究结果表明,a . ferrooxidans物种适应广泛的生长条件。
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