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深红红螺菌中氮气光生成铵离子

Photoproduction of ammonium ion from N2 in Rhodospirillum rubrum.

作者信息

Weare N M, Shanmugam K T

出版信息

Arch Microbiol. 1976 Nov 2;110(23):207-13. doi: 10.1007/BF00690229.

Abstract

NH+4 excretion was undetectable in N2-fixing cultures of Rhodospirillum rubrum (S-1) and nitrogenase activity in these cultures was repressed by the addition of 10 mM NH+4 to the medium. The glutamate analog, L-methionine-DL-sulfoximine (MSX), derepressed N2 fixation even in the presence of 10 mM extracellular NH+4. When 10 mg MSX/ml was added to cultures just prior to nitrogenase induction they developed nitrogenase activity (20% of the control activities) and excreted most of their fixed N2 as NH+4. Nitrogenase activities and NH+4 production from fixed N2 were increased considerably when a combined nitrogen source, NH+4 (greater than 40 mumoles NH+4/mg cell protein in 6 days) or L-glutamate (greater than 60 mumoles NH+4/ mg cell protein in 6 days) was added to the cultures together with MSX. Biochemical analysis revealed that R. rubrum produced glutamine synthetase and glutamate synthase (NADP-dependent) but no detectable NADP-dependent glutamate dehydrogenase. The specific activity of glutamine synthetase was observed to be maximal when nitrogenase activity was also maximal. Nitrogenase and glutamine synthetase activities were repressed by NH+4 as well as by glutamate. The results demonstrate that utilization of solar energy to photoproduce large quantities of NH+4 from N2 is possible with photosynthetic bacteria by interfering with their regulatory control of N2 fixation.

摘要

在深红红螺菌(S-1)的固氮培养物中检测不到NH₄⁺的排泄,并且向培养基中添加10 mM NH₄⁺会抑制这些培养物中的固氮酶活性。谷氨酸类似物L-蛋氨酸-DL-亚砜亚胺(MSX)即使在存在10 mM细胞外NH₄⁺的情况下也能解除对固氮的抑制。当在固氮酶诱导前向培养物中添加10 mg MSX/ml时,它们产生了固氮酶活性(为对照活性的20%),并将其固定的大部分N₂以NH₄⁺的形式排泄。当向培养物中添加复合氮源NH₄⁺(6天内大于40 μmol NH₄⁺/mg细胞蛋白)或L-谷氨酸(6天内大于60 μmol NH₄⁺/mg细胞蛋白)与MSX一起时,固氮酶活性和由固定N₂产生的NH₄⁺显著增加。生化分析表明,深红红螺菌产生谷氨酰胺合成酶和谷氨酸合酶(依赖NADP),但未检测到依赖NADP的谷氨酸脱氢酶。观察到谷氨酰胺合成酶的比活性在固氮酶活性最高时也最高。固氮酶和谷氨酰胺合成酶活性受到NH₄⁺以及谷氨酸的抑制。结果表明,通过干扰光合细菌对固氮的调控控制,利用太阳能从N₂光生产大量NH₄⁺是可能的。

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