Pfennig N, Biebl H
Arch Microbiol. 1976 Oct 11;110(1):3-12. doi: 10.1007/BF00416962.
Anaerobic sea or fresh water media with acetate and elemental sulfur yielded enrichments of a new type of strictly anaerobic, rod-shaped, laterally flagellated, Gram-negative bacterium. Three pure culture-strains from different sulfide-containing sea water sources were characterized in detail and are described as a new genus and species Desulfuromonas acetoxidans. The new bacterium is unable to ferment organic substances; it obtains energy for growth by anaerobic sulfur respiration. Acetate, ethanol or propanol can serve as carbon and energy source for growth; their oxidation to CO2 is stoichiometrically linked to the reduction of elemental sulfur to sulfide. Organic disulfide compounds, malate or fumarate are the only other electron acceptors used. Butanol and pyruvate are used in the presence of malate only; no other organic compounds are utilized. Biotin is required as a growth factor. The following dry weight yields per mole of substrate are obtained: in the presence of sulfur: 4.21 g on acetate, 9.77 g on ethanol; in the presence of malate: 16.5 g on acetate, 34.2 g on ethanol and 46.2 g on pyruvate. Accumulations of cells are pink; cell suspensions exhibit absorption spectra resembling those of c-type cytochromes (abs. max. at 419, 523 and 553 nm). Malate-ethanol grown cells contain a b-type cytochrome in addition. In the presence of acetate, ethanol or propanol, Desulfuromonas strains form robust growing syntrophic mixed cultures with phototrophic green sulfur bacteria.
含有乙酸盐和单质硫的厌氧海水或淡水培养基富集培养出一种新型的严格厌氧、杆状、具侧生鞭毛、革兰氏阴性细菌。对来自不同含硫化物海水源的三株纯培养菌株进行了详细表征,并将其描述为一个新的属和种——乙酸氧化脱硫单胞菌。这种新细菌不能发酵有机物质;它通过厌氧硫呼吸获取生长所需的能量。乙酸盐、乙醇或丙醇可作为生长的碳源和能源;它们氧化成二氧化碳的过程在化学计量上与单质硫还原成硫化物相关联。有机二硫化物、苹果酸或富马酸是仅使用的其他电子受体。仅在苹果酸存在时使用丁醇和丙酮酸;不利用其他有机化合物。生物素是生长所需的因子。每摩尔底物获得的干重产量如下:在有硫存在时:乙酸盐上为4.21克,乙醇上为9.77克;在有苹果酸存在时:乙酸盐上为16.5克,乙醇上为34.2克,丙酮酸上为46.2克。细胞聚集体呈粉红色;细胞悬液的吸收光谱类似于c型细胞色素的吸收光谱(最大吸收峰在419、523和553纳米处)。在苹果酸 - 乙醇培养基上生长的细胞还含有一种b型细胞色素。在乙酸盐、乙醇或丙醇存在下,脱硫单胞菌菌株与光合绿色硫细菌形成生长旺盛的互营混合培养物。