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[专性有机营养细菌对无机硫化合物的氧化作用]

[Oxidation of inorganic sulfur compounds by obligatory organotrophic bacteria].

作者信息

Sorokin D Iu

机构信息

Institute of Microbiology, Russian Academy of Sciences, pr. 60-let Oktyabrya 7/2, Moscow, 117312 Russia.

出版信息

Mikrobiologiia. 2003 Nov-Dec;72(6):725-39.

Abstract

New data obtained by the author and other researchers on two different groups of obligately heterotrophic bacteria capable of inorganic sulfur oxidation are reviewed. Among culturable marine and (halo)alkaliphilic heterotrophs oxidizing sulfur compounds (thiosulfate and, much less actively, elemental sulfur and sulfide) incompletely to tetrathionate, representatives of the gammaproteobacteria, especially from the Halomonas group, dominate. Some of denitrifying species from this group are able to carry out anaerobic oxidation of thiosulfate and sulfide using nitrogen oxides as electron acceptors. Despite the low energy output of the reaction of thiosulfate oxidation to tetrathionate, it can be utilized for ATP synthesis by some tetrathionate-producing heterotrophs; however, this potential is not always realized during their growth. Another group of marine and (halo)alkaliphilic heterotrophic bacteria capable of complete oxidation of sulfur compounds to sulfate mostly includes representatives of the alphaproteobacteria most closely related to nonsulfur purple bacteria. They can oxidize sulfide (polysulfide), thiosulfate, and elemental sulfur via sulfite to sulfate but neither produce nor oxidize tetrathionate. All of the investigated sulfate-forming heterotrophic bacteria belong to lithoheterotrophs, being able to gain additional energy from the oxidation of sulfur compounds during heterotrophic growth on organic substrates. Some doubtful cases of heterotrophic sulfur oxidation described in the literature are also discussed.

摘要

作者及其他研究人员获得的关于两组不同的能够进行无机硫氧化的专性异养细菌的新数据在此进行综述。在可培养的海洋和(嗜)碱嗜性异养菌中,它们将硫化合物(硫代硫酸盐,以及活性较低的元素硫和硫化物)不完全氧化为连四硫酸盐,γ-变形菌纲的代表菌,尤其是嗜盐单胞菌属的细菌占主导地位。该组中的一些反硝化菌种能够以氮氧化物作为电子受体进行硫代硫酸盐和硫化物的厌氧氧化。尽管硫代硫酸盐氧化为连四硫酸盐的反应能量输出较低,但一些产生连四硫酸盐的异养菌可利用其进行ATP合成;然而,在它们生长过程中,这种潜力并非总能实现。另一组能够将硫化合物完全氧化为硫酸盐的海洋和(嗜)碱嗜性异养细菌主要包括与非硫紫色细菌关系最为密切的α-变形菌纲的代表菌。它们可以通过亚硫酸盐将硫化物(多硫化物)、硫代硫酸盐和元素硫氧化为硫酸盐,但既不产生也不氧化连四硫酸盐。所有被研究的形成硫酸盐的异养细菌都属于石栖异养菌,能够在以有机底物进行异养生长期间从硫化合物的氧化中获取额外能量。文献中描述的一些关于异养硫氧化的可疑案例也进行了讨论。

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