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通过反硝化假单胞菌G59形成硝酸还原酶和一氧化二氮还原酶的临时低氧条件。

Temporary low oxygen conditions for the formation of nitrate reductase and nitrous oxide reductase by denitrifying Pseudomonas sp. G59.

作者信息

Aida T, Hata S, Kusunoki H

出版信息

Can J Microbiol. 1986 Jul;32(7):543-7. doi: 10.1139/m86-101.

Abstract

Formation of nitrate reductase (NaR) and nitrous oxide reductase (N2OR) by a Pseudomonas sp. G59 did not occur in aerobic or anaerobic conditions, but was observed in a microaerobic incubation in which an anaerobically grown culture was agitated in a sealed vessel initially containing 20 kPa oxygen in the headspace. During the microaerobic incubation, the oxygen concentration in the headspace decreased and dissolved oxygen reached 0.1-0.2 kPa. NaR activity was detected immediately and N2OR activity after 3 h of incubation irrespective of the presence or absence of NO3- or N2O. In the presence of NO3-, NO2- was accumulated as a major product, but N2O was observed in low concentrations only after N2OR appeared. After microaerobic incubation for 3 h, N2OR formation continued even anaerobically in an atmosphere of N2O. In contrast, Escherichia coli formed NaR not only microaerobically but also anaerobically. However, NaR formation by E. coli was inhibited by sodium fluoride under anaerobic, but not under microaerobic conditions. The Pseudomonas culture did not possess fermentative activity. It is suggested that the dependence on microaerobiosis for the formation of these reductases by the Pseudomonas culture was due to an inability to produce energy anaerobically until these anaerobic respiratory enzymes were formed.

摘要

假单胞菌属菌株G59在有氧或无氧条件下均不形成硝酸还原酶(NaR)和一氧化二氮还原酶(N2OR),但在微需氧培养中可观察到其形成,即最初在顶空含有20 kPa氧气的密封容器中搅拌厌氧培养的培养物。在微需氧培养期间,顶空的氧气浓度降低,溶解氧达到0.1 - 0.2 kPa。无论是否存在NO3-或N2O,在培养3小时后立即检测到NaR活性,3小时后检测到N2OR活性。在存在NO3-的情况下,NO2-作为主要产物积累,但仅在N2OR出现后才观察到低浓度的N2O。微需氧培养3小时后,即使在N2O气氛中厌氧培养,N2OR的形成仍在继续。相比之下,大肠杆菌不仅在微需氧条件下而且在厌氧条件下都能形成NaR。然而,大肠杆菌在厌氧条件下但不是在微需氧条件下形成NaR受到氟化钠的抑制。假单胞菌培养物不具有发酵活性。据推测,假单胞菌培养物对这些还原酶形成的微需氧依赖性是由于在这些厌氧呼吸酶形成之前无法厌氧产生能量。

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