Pfennig N, Widdel F
Philos Trans R Soc Lond B Biol Sci. 1982 Sep 13;298(1093):433-41. doi: 10.1098/rstb.1982.0090.
This paper concentrates on the bacteria involved in the reductions and oxidations of inorganic sulphur compounds under anaerobic conditions. The genera of the dissimilatory sulphate-reducing bacteria known today are discussed with respect to their different capacities to decompose and oxidize various products of fermentative degradations of organic matter. The utilization of molecular hydrogen and formate by sulphate reducers shifts fermentations towards the energetically more favourable formation of acetate. Since acetate amounts to about two-thirds of the degradation products of organic matter, the complete anaerobic oxidation of acetate by several genera of the sulphate-reducing bacteria is an important function for terminal oxidation in sulphate-sufficient environments. The results of pure culture studies agree well with ecological investigations of several authors who showed the significance of sulphate reduction for the complete oxidation of organic matter in anaerobic marine habitats. In the dissimilatory sulphur-reducing bacteria of the genus Desulfuromonas the oxidation of acetate is linked to the reduction of elemental sulphur. Major characteristics of the anaerobic, sulphide-oxidizing phototrophic green and purple sulphur bacteria as well as of some facultative anoxygenic cyanobacteria, are given. By the formation of elemental sulphur and sulphate, these bacteria establish sulphur cycles with the sulphide-forming bacteria. In view of the morphological diversity of the sulphate-reducing bacteria and question of possible evolutionary relations to phototrophic sulphur bacteria is raised.
本文着重探讨了在厌氧条件下参与无机硫化合物还原和氧化过程的细菌。文中讨论了目前已知的异化硫酸盐还原菌的各个属,涉及它们分解和氧化有机物发酵降解各种产物的不同能力。硫酸盐还原菌对分子氢和甲酸盐的利用,使发酵过程朝着在能量上更有利于生成乙酸盐的方向转变。由于乙酸盐约占有机物降解产物的三分之二,因此几种硫酸盐还原菌属对乙酸盐的完全厌氧氧化,对于硫酸盐充足环境中的末端氧化来说是一项重要功能。纯培养研究结果与几位作者的生态学研究结果高度吻合,这些研究表明了硫酸盐还原对于厌氧海洋生境中有机物完全氧化的重要性。在脱硫单胞菌属的异化硫还原菌中,乙酸盐的氧化与元素硫的还原相关联。文中给出了厌氧的、硫化物氧化型光合绿硫菌和紫硫菌以及一些兼性厌氧蓝细菌的主要特征。通过形成元素硫和硫酸盐,这些细菌与形成硫化物的细菌建立了硫循环。鉴于硫酸盐还原菌的形态多样性,还提出了它们与光合硫细菌可能存在进化关系的问题。