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The Respiratory System and Diazotrophic Activity of Acetobacter diazotrophicus PAL5

机译:重氮醋杆菌PAL5的呼吸系统和重氮营养活性

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摘要

The characteristics of the respiratory system of Acetobacter diazotrophicus PAL5 were investigated. Increasing aeration (from 0.5 to 4.0 liters of air min−1 liter of medium−1) had a strong positive effect on growth and on the diazotrophic activity of cultures. Cells obtained from well-aerated and diazotrophically active cultures possessed a highly active, membrane-bound electron transport system with dehydrogenases for NADH, glucose, and acetaldehyde as the main electron donors. Ethanol, succinate, and gluconate were also oxidized but to only a minor extent. Terminal cytochrome c oxidase-type activity was poor as measured by reduced N,N,N,N′-tetramethyl-p-phenylenediamine, but quinol oxidase-type activity, as measured by 2,3,5,6-tetrachloro-1,4-benzenediol, was high. Spectral and high-pressure liquid chromatography analysis of membranes revealed the presence of cytochrome ba as a putative oxidase in cells obtained from diazotrophically active cultures. Cells were also rich in c-type cytochromes; four bands of high molecular mass (i.e., 67, 56, 52, and 45 kDa) were revealed by a peroxidase activity stain in sodium dodecyl sulfate-polyacrylamide gel electrophoresis. KCN inhibition curves of respiratory oxidase activities were biphasic, with a highly resistant component. Treatment of membranes with 0.2% Triton X-100 solubilized c-type cytochromes and resulted in a preparation that was significantly more sensitive to cyanide. Repression of diazotrophic activity in well-aerated cultures by 40 mM (NH4)2SO4 caused a significant decrease of the respiratory activities. It is noteworthy that the levels of glucose dehydrogenase and putative oxidase ba decreased 6.8- and 10-fold, respectively. In these cells, a bd-type cytochrome seems to be the major terminal oxidase. Thus, it would seem that glucose dehydrogenase and cytochrome ba are key components of the respiratory system of A. diazotrophicus during aerobic diazotrophy.
机译:研究了重氮醋杆菌PAL5的呼吸系统特征。增加通气量(从0.5升空气min −1 升介质 −1 升)对培养物的生长和重氮营养活动具有很强的积极作用。从通气良好且具有重氮养活性的培养物中获得的细胞具有高度活性的膜结合电子传输系统,其中NADH,葡萄糖和乙醛的脱氢酶是主要的电子供体。乙醇,琥珀酸盐和葡萄糖酸盐也被氧化,但程度很小。通过还原N,N,N,N'-四甲基-对苯二胺来测定末端细胞色素c氧化酶类型的活性较差,但通过2,3,5,6-tetrachloro-1来测定喹啉氧化酶类型的活性, 4-苯二醇很高。膜的光谱和高压液相色谱分析表明,从重氮营养性培养物获得的细胞中存在细胞色素ba作为推定的氧化酶。细胞也富含c型细胞色素。在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳中的过氧化物酶活性染色显示出四个高分子量带(即67、56、52和45 kDa)。呼吸氧化酶活性的KCN抑制曲线是双相的,具有高度耐药性。用0.2%Triton X-100处理的膜可溶解c型细胞色素,从而制得的制剂对氰化物的敏感性更高。 40 mM(NH4)2SO4抑制通气良好的培养物中的重氮营养活动,导致呼吸活动显着下降。值得注意的是,葡萄糖脱氢酶和假定的氧化酶ba的水平分别降低了6.8倍和10倍。在这些细胞中,bd型细胞色素似乎是主要的末端氧化酶。因此,似乎葡萄糖脱氢酶和细胞色素ba是有氧重氮营养过程中重氮曲霉呼吸系统的关键成分。

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