Thermaurantiacus tibetensis gen. nov., sp. nov., a novel moderately thermophilic bacterium isolated from hot spring microbial mat in Tibet
Ming Yu-Zhen, Liu Lan, Lv Ai-Ping, Xian Wen-Dong, Liu Ze-Tao, Li Meng-Meng, Jiao Jian-Yu, Fang Bao-Zhu, Li Wen-Jun
Journal:ANTONIE VAN LEEUWENHOEK INTERNATIONAL JOURNAL OF GENERAL AND MOLECULAR MICROBIOLOGY
IF:2.27
DOI:10.1007/s10482-021-01530-w
PMID:33620611
Published:2021-02-23
research field:肿瘤学分子生物学癌症免疫学抗体工程免疫治疗
Abstract
Two bacterial strains SYSU G02173 T and SYSU G03142 were isolated from hot springs in Tibet, China. Based on the results of nearly full-length 16S rRNA gene sequences and phylogenetic analyses, strains SYSU G02173 T and SYSU G03142 were assigned to the family Sphingosinicellaceae , and were closest to Sandaracinobacter sibiricus RB16-17 T (96.04% and 96.12% similarity, respectively). Cells of the both new strains were observed to be motile rod-shape, Gram-staining negative. Growth occurred at pH 6–8 (optimal: pH 7.0) and 37–55 °C (optimal: 45 °C) with 0–1.0% (w/v) NaCl in T4 broth. The cells were found to be positive for oxidase and catalase activities. The major respiratory ubiquinone was Q-8. The major fatty acids were identified as summed feature 8 (C 18:1 ω 7 c and/or C 18:1 ω 6 c ), C 16:0 , C 14:0 2-OH. The major polar lipids were found to consist of sphingoglycolipid, phosphatidylethanolamine, phosphatidylglycerol, diphosphatidylglycerol, one unidentified phospholipid, one unidentified glycolipid, three unidentified aminolipids and two unidentified polar lipids. The DNA G + C contents of strains SYSU G02173 T and SYSU G03142 were 71.8%. The average nucleotide identity (ANI) value between strain SYSU G02173 T and SYSU G03142 was 99.98%. The amino acid identity (AAI) values between them and their closely related species were below 66.14%. The isolates are characterized by aerobic growth, a yellow endocellular pigment and a higher optimum growth temperature. The results showed that strains SYSU G02173 T and SYSU G03142 represent a novel species of a novel genus in the family Sphingomonadaceae , and thus the name Thermaurantiacus tibetensis (type strain SYSU G02173 T = KCTC 72052 T = CGMCC 1.16680 T ) is proposed.
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