首页> 美国卫生研究院文献>Journal of Bacteriology >Dependence of nitrogenase switch-off upon oxygen stress on the nitrogenase activity in Azotobacter vinelandii.
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Dependence of nitrogenase switch-off upon oxygen stress on the nitrogenase activity in Azotobacter vinelandii.

机译:固氮酶关闭对氧胁迫的影响在固氮菌中固氮酶的活性。

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摘要

Azotobacter vinelandii was grown diazotrophically in chemostat cultures limited by sucrose, citrate, or acetate. Specific activities of cellular oxygen consumption (qO2) and nitrogenase (acetylene reduction) were measured in situ at different dilution rates (D, representing the specific growth rate mu at steady state). Sucrose-limited cultures exhibited linear relationships between qO2 and D, each of which, however, depended on the dissolved oxygen concentration in the range of 12 to 192 microM O2. From these plots, qO2 required for maintenance processes (mO2) were extrapolated. mO2 values did not increase linearly with increasing dissolved oxygen concentrations. With citrate- or acetate-limited cultures qO2 also depended on D. At 108 microM O2, however, qO2 and mO2 of the latter cultures were significantly lower than those of sucrose-limited cultures. Specific rates of acetylene reduction increased linearly with D, irrespective of the type of limitation and of the dissolved oxygen concentration (J. Kuhla and J. Oelze, Arch. Microbiol. 149:509-514, 1988). The reversible switch-off of nitrogenase activity under oxygen stress also depended on D and was independent of qO2, mO2, or the limiting substrate. Increased switch-off effects resulting from increased stress heights could be compensated for by increasing D. Since D represents not only the supply of the carbon source but also the supply of electrons and energy, the results suggest that the flux of electrons to the nitrogenase complex, rather than qO2, stabilizes nitrogenase activity against oxygen inactivation in aerobically growing A. vinelandii.
机译:葡萄固氮菌在受蔗糖,柠檬酸盐或乙酸盐限制的化学恒温培养物中重氮营养生长。在不同的稀释率(D,代表稳态下的比生长率μ)下原位测量细胞耗氧量(qO2)和固氮酶(乙炔还原)的比活。蔗糖限制的培养物在qO2和D之间显示线性关系,但是,每种关系都取决于12至192 microM O2范围内的溶解氧浓度。从这些图中可以推断出维护过程所需的qO2(mO2)。 mO2值不会随着溶解氧浓度的增加而线性增加。在柠檬酸盐或乙酸盐限制的培养物中,qO2也依赖于D。但是,在108 microM O2下,后者培养物中的qO2和mO2明显低于蔗糖限制的培养物。乙炔还原的特定速率随D线性增加,与限制类型和溶解氧浓度无关(J. Kuhla和J. Oelze,Arch。Microbiol。149:509-514,1988)。氧胁迫下可逆性关闭固氮酶的活性也取决于D,并且与qO2,mO2或限制性底物无关。通过增加D可以补偿因应力高度增加而导致的关闭效应增加。由于D不仅代表碳源的供应,还代表电子和能量的供应,因此结果表明,电子向固氮酶络合物的通量,而不是qO2,稳定需氧生长的A. vinelandii的抗氧失活的固氮酶活性。

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