Nakagawa Satoshi, Inagaki Fumio, Takai Ken, Horikoshi Koki, Sako Yoshihiko
Laboratory of Marine Microbiology, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
Subground Animalcule Retrieval (SUGAR) Project, Frontier Research System for Extremophiles, Japan Agency for Marine-Earth Science and Technology, 2-15 Natsushima-cho, Yokosuka 237-0061, Japan.
Int J Syst Evol Microbiol. 2005 Mar;55(Pt 2):599-605. doi: 10.1099/ijs.0.63351-0.
A novel mesophilic, hydrogen-oxidizing, sulfur-reducing bacterium, designated strain BKB25Ts-Y(T), was isolated from hydrothermal sediments at Iheya North in the Mid-Okinawa Trough, Japan. Cells were Gram-negative, motile rods (1.8-2.1 microm long and 0.5-0.7 microm wide). The isolate was a strictly anaerobic chemolithoautotroph capable of using molecular hydrogen as the sole energy source and carbon dioxide as the sole carbon source. Elemental sulfur and nitrate served as electron acceptors, respectively yielding hydrogen sulfide and ammonium. Growth was observed at 20-42 degrees C (optimum 32 degrees C; 3 h doubling time), pH 5.0-6.5 (optimum 6.0) and in the presence of 2.0-4.0 % NaCl (optimum 2.5 %) via respiratory S(0) reduction with H(2). The G+C content of the genomic DNA was 37.2 mol%. Phylogenetic analysis based on 16S rRNA gene sequences indicated that the isolate represented the first strain for which taxonomic properties have been characterized within the previously uncultivated epsilon-Proteobacteria Group G. On the basis of the physiological and molecular properties of the novel isolate, the genus name Thioreductor gen. nov. is proposed, with Thioreductor micantisoli sp. nov. as the type species. The type strain is BKB25Ts-Y(T) (=JCM 12457(T)=DSM 16661(T)).
从日本冲绳海槽中部伊平屋北的热液沉积物中分离出一种新型嗜温、氢氧化、硫还原细菌,命名为菌株BKB25Ts - Y(T)。细胞为革兰氏阴性、具运动性的杆菌(长1.8 - 2.1微米,宽0.5 - 0.7微米)。该分离株是严格厌氧的化能自养菌,能够利用分子氢作为唯一能源,二氧化碳作为唯一碳源。元素硫和硝酸盐分别作为电子受体,分别产生硫化氢和铵。在20 - 42℃(最适32℃;倍增时间3小时)、pH 5.0 - 6.5(最适6.0)以及2.0 - 4.0% NaCl(最适2.5%)存在的条件下,通过利用H₂进行呼吸性S(0)还原可观察到生长。基因组DNA的G + C含量为37.2 mol%。基于16S rRNA基因序列的系统发育分析表明,该分离株代表了先前未培养的ε-变形菌纲G组中首个已鉴定分类学特性的菌株。基于该新型分离株的生理和分子特性,提议设立硫还原菌属(Thioreductor gen. nov.),模式种为海洋硫还原菌(Thioreductor micantisoli sp. nov.)。模式菌株为BKB25Ts - Y(T)(=JCM 12457(T)=DSM 16661(T))。