首页> 美国卫生研究院文献>Journal of Bacteriology >Uptake hydrogenase activity in denitrifying Azospirillum brasilense grown anaerobically with nitrous oxide or nitrate.
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Uptake hydrogenase activity in denitrifying Azospirillum brasilense grown anaerobically with nitrous oxide or nitrate.

机译:在厌氧条件下用一氧化二氮或硝酸盐反硝化生长的巴西细螺旋藻中的吸收氢酶活性。

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摘要

zospirillum brasilense Sp7 was grown anaerobically with N2O as the terminal electron acceptor and NH4Cl as the nitrogen source. Hydrogen uptake activity (O2-dependent H3H oxidation) was expressed in the presence and absence of 5% H2; it reached its maximum in late logarithmic phase as the malate became limiting. This activity was very stable in stationary phase, even in the absence of exogenous H2, compared with microaerobically grown cultures; this supports the hypothesis that the exclusion of O2 is critical for maintaining the integrity of the H2 uptake system in this organism. Oxygen, as well as methylene blue and N2O, supported H2 uptake, indicating the presence of electron transport components leading to O2 in anaerobically grown A. brasilense. Nitrite (0.5 mM) inhibited H2 uptake. In cultures grown with NO3- as the terminal electron acceptor and NH4Cl as the nitrogen source, in the presence and absence of exogenous H2, only low H2 uptake activity was observed. Methylene blue, O2, N2O, NO3-, and NO2- were all capable of acting as the electron acceptor for H2 oxidation. Nitrite (0.5 mM) did not inhibit H2 uptake in NO3--grown cells, as it did in N2O-grown cells. A. brasilense appears to be one of the few organisms capable of expressing the H2 uptake system under denitrifying conditions in the absence of molecular H2.
机译:以N2O作为末端电子受体,NH4Cl作为氮源,厌氧培养巴西螺旋藻Sp7。在存在和不存在5%H2的条件下,均表现出氢吸收活性(依赖于O2的H3H氧化);随着苹果酸的限制,它在对数后期达到了最大值。与微需氧培养相比,即使在没有外源H2的情况下,这种活性在固定相中也非常稳定。这支持了以下假设:排除O2对于维持该生物体中H2吸收系统的完整性至关重要。氧以及亚甲基蓝和N2O支持H2的吸收,表明在厌氧生长的巴西拟南芥中存在导致O2的电子传输成分。亚硝酸盐(0.5 mM)抑制了H2的吸收。在以NO3-作为末端电子受体和NH4Cl作为氮源的培养物中,在有和没有外源H2的情况下,仅观察到低的H2吸收活性。亚甲基蓝,O 2,N 2 O,NO 3和NO 2均能够充当H 2氧化的电子受体。亚硝酸盐(0.5 mM)不能像生长N2O的细胞那样抑制NO3增长的细胞对H2的吸收。巴西拟杆菌(A. brasilense)似乎是在不存在分子H2的反硝化条件下能够表达H2吸收系统的少数生物之一。

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