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[甲基营养型乙酸细菌MB 58的细胞色素模式与生长条件的关系]

[Cytochrome pattern of methylotropic acetic acid bacterium MB 58 as dependent on growth conditions].

作者信息

Steudel A, Babel W

出版信息

Z Allg Mikrobiol. 1982;22(6):379-88. doi: 10.1002/jobm.3630220605.

Abstract

In contrast to methylotrophic bacteria investigated up to now the facultative methylotrophic Bacterium MB 58 (Acetobactersp. MB 58) does not possess a cytochrome aa3-complex, but we could find out cytochrome, cytochrome cco, cytochrome a1, and moreover cytochrome d in dependence on the growth conditions. Cytochrome d was found only in stationary phase of heterotrophic growth. Under methylotrophic growth conditions cytochrome d could be demonstrated only by lowering of the aeration rate during the fermentation, by variation the pH-value of the growth medium from 4.0 to 6.5 and with low growth rates (low dilution rates) during continuous fermentation. The addition of cyanide to the oxidized suspension of bacteria during the registration of the cytochrome-redox-difference spectrum allowed the selective representation of cytochrome d under all conditions even if no identification was possible in the spectrum normally. The oxidation of cytochrome d of Acetobacter sp. MB 58 in the presence of cyanide is an indication of its cyanide insensitivity. The low level of b-type cytochromes could be represented by a special technique for registration of spectra. In this connection a unknown absorption peak at 570 nm was registered. The cyanide insensitivity of cytochrome d from Acetobacter sp. MB 58 and the occurrence of several terminal oxidases is appreciated as a hint for a branched respiratory chain.

摘要

与目前所研究的甲基营养型细菌不同,兼性甲基营养型细菌MB 58(醋杆菌属MB 58)不具有细胞色素aa3复合物,但我们发现,根据生长条件,它含有细胞色素、细胞色素cco、细胞色素a1,此外还含有细胞色素d。细胞色素d仅在异养生长的稳定期被发现。在甲基营养型生长条件下,只有在发酵过程中降低通气速率、将生长培养基的pH值从4.0调节到6.5以及在连续发酵过程中保持低生长速率(低稀释率)时,才能检测到细胞色素d。在记录细胞色素氧化还原差异光谱时,向细菌的氧化悬浮液中添加氰化物,即使在正常光谱中无法鉴定,也能在所有条件下选择性地呈现细胞色素d。醋杆菌属MB 58的细胞色素d在氰化物存在下的氧化表明其对氰化物不敏感。b型细胞色素的低水平可以通过一种特殊的光谱记录技术来呈现。在此过程中,在570 nm处记录到一个未知的吸收峰。醋杆菌属MB 58的细胞色素d对氰化物不敏感以及几种末端氧化酶的存在被认为是呼吸链分支的一个线索。

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