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首页> 外文期刊>Archives of microbiology >LITHOTROPHIC GROWTH OF SULFUROSPIRILLUM DELEYIANUM WITH SULFIDE AS ELECTRON DONOR COUPLED TO RESPIRATORY REDUCTION OF NITRATE TO AMMONIA
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LITHOTROPHIC GROWTH OF SULFUROSPIRILLUM DELEYIANUM WITH SULFIDE AS ELECTRON DONOR COUPLED TO RESPIRATORY REDUCTION OF NITRATE TO AMMONIA

机译:硫化物作为电子给体的硫磺螺旋藻的嗜盐性生长与硝酸盐的呼吸还原成氨的耦合

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Sulfurospirillum deleyianum grew in batch culture under anoxic conditions with sulfide (up to 5 mM) as electron donor, nitrate as electron acceptor, and acetate as carbon source. Nitrate was reduced to ammonia via nitrite, a quantitatively liberated intermediate. Four moles of sulfide were oxidized to elemental sulfur per mole nitrate converted to ammonia. The molar growth yield per mole sulfide consumed, Y-m, was 1.5 +/- 0.2 g mol(-1) for the reduction of nitrate to ammonia. By this type of metabolism, S. deleyianum connected the biogeochemical cycles of sulfur and nitrogen. The sulfur reductase activity in S. deleyianum was inducible, as the activity depended on the presence of sulfide or elemental sulfur during cultivation with nitrate or fumarate as electron acceptor. Hydrogenase activity was always high, indicating that the enzyme is constitutively expressed. The ammonia-forming nitrite reductase was an inducible enzyme, expressed when cells were cultivated with nitrate, nitrite, or elemental sulfur, but repressed after cultivation with fumarate. [References: 29]
机译:在无氧条件下,以硫化物(最高5 mM)作为电子供体,硝酸盐作为电子受体,乙酸盐作为碳源,在缺氧条件下分批培养Sulurospirillum deleyianum。硝酸盐通过亚硝酸盐(一种定量释放的中间体)还原为氨。每摩尔硝酸盐将四摩尔的硫化物氧化为元素硫,转化为氨。每消耗一摩尔硫化物的摩尔生长产率Y-m为1.5 +/- 0.2 g mol(-1),用于将硝酸盐还原为氨。通过这种新陈代谢,S。deleyianum连接了硫和氮的生物地球化学循环。由于在硝酸盐或富马酸盐作为电子受体的培养过程中,硫化物或元素硫的存在取决于硫化物或单质硫的存在,因此可以诱导其在S. deleyianum中的硫还原酶活性。氢化酶活性始终很高,表明该酶是组成型表达的。形成氨的亚硝酸盐还原酶是一种诱导酶,当细胞用硝酸盐,亚硝酸盐或元素硫培养时表达,但在富马酸盐培养后被抑制。 [参考:29]

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