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Effect of Tungstate on Nitrate Reduction by the Hyperthermophilic Archaeon Pyrobaculum aerophilum

机译:钨酸盐对嗜高温古生嗜热菌的硝酸盐还原作用

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Pyrobaculum aerophilum, a hyperthermophilic archaeon, can respire either with low amounts of oxygen or anaerobically with nitrate as the electron acceptor. Under anaerobic growth conditions, nitrate is reduced via the denitrification pathway to molecular nitrogen. This study demonstrates that P. aerophilumrequires the metal oxyanion WO4 2? for its anaerobic growth on yeast extract, peptone, and nitrate as carbon and energy sources. The addition of 1 μM MoO4 2?did not replace WO4 2? for the growth ofP. aerophilum. However, cell growth was completely inhibited by the addition of 100 μM MoO4 2?to the culture medium. At lower tungstate concentrations (0.3 μM and less), nitrite was accumulated in the culture medium. The accumulation of nitrite was abolished at higher WO4 2?concentrations (4 2? levels of 0.7 μM or higher. The high specific activity of the nitrate reductase enzyme observed at low WO4 2? levels (0.3 μM or less) coincided with the accumulation of nitrite in the culture medium. This study documents the first example of the effect of tungstate on the denitrification process of an extremely thermophilic archaeon. We demonstrate here that nitrate reductase synthesis inP. aerophilum occurs in the presence of high concentrations of tungstate.
机译:嗜热古细菌Pyrobaculum aerophilum可以用少量氧气呼吸,也可以用硝酸盐作为电子受体进行厌氧呼吸。在厌氧生长条件下,硝酸盐通过反硝化途径还原为分子氮。这项研究表明,嗜氧假单胞菌需要金属氧阴离子WO4 2?由于其在酵母提取物,蛋白ept和硝酸盐上作为碳和能源的厌氧生长。添加1μMMoO4 2不能代替WO4 2?为P的增长。有氧菌。然而,通过向培养基中加入100μMMoO 42α,细胞生长被完全抑制。在较低的钨酸盐浓度(0.3μM及以下)下,亚硝酸盐累积在培养基中。在较高的WO4 2?浓度(4 2?水平为0.7μM或更高)下,亚硝酸盐的积累被消除了。在较低的WO4 2?水平(0.3μM以下)观察到的硝酸还原酶的高比活性与本研究记录了钨酸盐对极端嗜热古生菌反硝化过程的影响的第一个例子,在此我们证明,在高浓度钨酸盐存在下,嗜氧假单胞菌中的硝酸还原酶合成会发生。

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