Bio-Nano Electronics Research Centre, Toyo University, 2100 Kujirai, Kawagoe, Saitama 350-8585, Japan.
Faculty of Engineering, Toyo University, 2100 Kujirai, Kawagoe, Saitama 350-8585, Japan.
Int J Syst Evol Microbiol. 2010 Apr;60(Pt 4):990-995. doi: 10.1099/ijs.0.013268-0. Epub 2009 Aug 7.
Two moderately halophilic and alkaliphilic bacteria, designated strains BH1(T) and HN5, were isolated from forest soil and garden soil, respectively, in Japan. Cells of strains BH1(T) and HN5 were non-motile, aerobic, bean-shaped, formed irregular clusters with 2-20 cells, Gram-positive and contained A1gamma, meso-diaminopimelic acid-type murein. Spore formation was not detected. Growth occurred in 5-25 % (w/v) NaCl (optimum, 10-15 %, w/v), at pH 6.0-10.0 (optimum, pH 8.5-9.0) and at 20-40 degrees C (optimum, 30 degrees C). The predominant isoprenoid quinones were menaquinone-7 and menaquinone-6. The phospholipids were diphosphatidylglycerol and phosphatidylglycerol. The major cellular fatty acids were i-C(15 : 0), i-C(17 : 0) and i-C(18 : 0). The DNA G+C content of strains BH1(T) and HN5 was 45 and 46 mol%, respectively. The 16S rRNA gene sequences of the two strains were 99.9 % similar. DNA-DNA hybridization results indicated high levels of relatedness (88 and 85 % reciprocally). Similarities with recognized species were less than 90.2 %. The phylogenetic and phenotypic characteristics indicated that strains BH1(T) and HN5 represent a novel species in a new genus, for which the name Geomicrobium halophilum gen. nov., sp. nov. is proposed. The type strain is BH1(T) (=JCM 15647(T)=DSM 21769(T)).
从日本森林土壤和花园土壤中分别分离到两株中度嗜盐和嗜碱细菌,分别命名为 BH1(T)和 HN5 株。菌株 BH1(T)和 HN5 的细胞是非运动的、需氧的、豆形的,形成不规则的簇,由 2-20 个细胞组成,革兰氏阳性,含有 A1gamma、meso-二氨基庚二酸型细胞壁酸。未检测到孢子形成。在 5-25%(w/v)NaCl(最佳,10-15%,w/v)、pH6.0-10.0(最佳,pH8.5-9.0)和 20-40°C(最佳,30°C)下可以生长。主要的异戊二烯醌是menaquinone-7 和 menaquinone-6。磷脂是双磷脂酰甘油和磷脂酰甘油。主要的细胞脂肪酸是 i-C(15 : 0)、i-C(17 : 0)和 i-C(18 : 0)。菌株 BH1(T)和 HN5 的 DNA G+C 含量分别为 45 和 46mol%。两株菌的 16S rRNA 基因序列相似性为 99.9%。DNA-DNA 杂交结果表明,它们的亲缘关系很高(88%和 85%互为反向)。与公认种的相似性小于 90.2%。系统发育和表型特征表明,菌株 BH1(T)和 HN5 代表一个新属中的一个新种,因此提议将其命名为 Geomicrobium halophilum gen. nov.,sp. nov.。模式株为 BH1(T)=JCM 15647(T)=DSM 21769(T)。