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光合紫色硫细菌交替单胞菌的 Bd 氧化酶同源物与固氮相关基因共转录。

Bd oxidase homologue of photosynthetic purple sulfur bacterium Allochromatium vinosum is co-transcribed with a nitrogen fixation related gene.

机构信息

Department of Molecular Biology and Genetics, Faculty of Sciences and Letters, Istanbul Technical University, Maslak, Istanbul, Turkey.

出版信息

Antonie Van Leeuwenhoek. 2011 Feb;99(2):211-20. doi: 10.1007/s10482-010-9478-5. Epub 2010 Jun 26.

Abstract

Purple sulfur bacteria, which are known to be the most ancient among anoxygenic phototrophs, play an important role in the global sulfur cycle. Allochromatium vinosum oxidizes reduced sulfur compounds such as hydrogen sulfide, elemental sulfur and thiosulfide. At low oxygen concentrations, A. vinosum can grow chemotrophically using oxygen as the terminal electron acceptor. Being also a nitrogen fixer, A. vinosum is faced with the paradox of co-existence of aerobic metabolism and nitrogen fixation. Due to growth difficulties, only a few studies have dealt with the aerobic metabolism of the organism and, until now, there has been no information about the genes involved in the respiratory metabolism of purple sulfur bacteria. In this article we show the first terminal oxidase gene for A. vinosum. The presence of a Bd type of quinol oxidase is necessary to protect nitrogenases against the inhibitory effects of oxygen. In this case, a nitrogen fixation related gene is part of the cyd operon and this gene is co-transcribed with cydAB genes. Bd oxidase of A. vinosum may be the earliest form of oxidase where the function of the enzyme is to scavenge the contaminant oxygen during nitrogen fixation. This may be an important clue about the early evolution of oxygenic photosynthesis, perhaps as a protective mechanism for nitrogen fixation.

摘要

紫色硫细菌是已知的最古老的厌氧光合生物之一,在全球硫循环中起着重要作用。交替单胞菌属能够氧化诸如硫化氢、单质硫和硫代硫酸盐等还原态硫化合物。在低氧浓度下,交替单胞菌属可以通过氧作为末端电子受体进行化能异养生长。同时,交替单胞菌属也是一种固氮菌,它面临着好氧代谢和固氮共存的悖论。由于生长困难,只有少数研究涉及该生物体的好氧代谢,到目前为止,还没有关于参与紫色硫细菌呼吸代谢的基因的信息。在本文中,我们展示了第一个针对交替单胞菌属的末端氧化酶基因。Bd 型醌氧化酶的存在对于保护固氮酶免受氧气的抑制作用是必要的。在这种情况下,一个与固氮相关的基因是 cyd 操纵子的一部分,并且这个基因与 cydAB 基因共同转录。交替单胞菌属的 Bd 氧化酶可能是最早形式的氧化酶,其酶的功能是在固氮过程中清除污染氧气。这可能是关于好氧光合作用早期进化的一个重要线索,也许是固氮的一种保护机制。

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