Teng Jade L L, Tang Ying, Huang Yi, Guo Feng-Biao, Wei Wen, Chen Jonathan H K, Wong Samson S Y, Lau Susanna K P, Woo Patrick C Y
Department of Microbiology, The University of Hong KongHong Kong, China; Research Centre of Infection and Immunology, The University of Hong KongHong Kong, China; State Key Laboratory of Emerging Infectious Diseases, The University of Hong KongHong Kong, China; Carol Yu Centre for Infection, The University of Hong KongHong Kong, China.
Department of Microbiology, The University of Hong Kong Hong Kong, China.
Front Microbiol. 2016 Jul 21;7:1137. doi: 10.3389/fmicb.2016.01137. eCollection 2016.
Owing to the highly similar phenotypic profiles, protein spectra and 16S rRNA gene sequences observed between three pairs of Tsukamurella species (Tsukamurella pulmonis/Tsukamurella spongiae, Tsukamurella tyrosinosolvens/Tsukamurella carboxy-divorans, and Tsukamurella pseudospumae/Tsukamurella sunchonensis), we hypothesize that and the six Tsukamurella species may have been misclassified and that there may only be three Tsukamurella species. In this study, we characterized the type strains of these six Tsukamurella species by tradition DNA-DNA hybridization (DDH) and "digital DDH" after genome sequencing to determine their exact taxonomic positions. Traditional DDH showed 81.2 ± 0.6% to 99.7 ± 1.0% DNA-DNA relatedness between the two Tsukamurella species in each of the three pairs, which was above the threshold for same species designation. "Digital DDH" based on Genome-To-Genome Distance Calculator and Average Nucleotide Identity for the three pairs also showed similarity results in the range of 82.3-92.9 and 98.1-99.1%, respectively, in line with results of traditional DDH. Based on these evidence and according to Rules 23a and 42 of the Bacteriological Code, we propose that T. spongiae Olson et al. 2007, should be reclassified as a later heterotypic synonym of T. pulmonis Yassin et al. 1996, T. carboxydivorans Park et al. 2009, as a later heterotypic synonym of T. tyrosinosolvens Yassin et al. 1997, and T. sunchonensis Seong et al. 2008 as a later heterotypic synonym of T. pseudospumae Nam et al. 2004. With the advancement of genome sequencing technologies, classification of bacterial species can be readily achieved by "digital DDH" than traditional DDH.
由于在三对冢村氏菌属物种(肺冢村氏菌/海绵冢村氏菌、酪氨酸冢村氏菌/解羧冢村氏菌、假泡沫冢村氏菌/顺川冢村氏菌)之间观察到高度相似的表型特征、蛋白质谱和16S rRNA基因序列,我们推测这六个冢村氏菌属物种可能被错误分类,实际上可能只有三个冢村氏菌属物种。在本研究中,我们通过传统的DNA-DNA杂交(DDH)以及基因组测序后的“数字DDH”对这六个冢村氏菌属物种的模式菌株进行了特征分析,以确定它们的确切分类地位。传统DDH显示,三对中的每对两个冢村氏菌属物种之间的DNA-DNA相关性为81.2±0.6%至99.7±1.0%,高于同种命名的阈值。基于基因组到基因组距离计算器和平均核苷酸同一性的“数字DDH”对这三对物种的分析结果也分别显示相似性在82.3 - 92.9%和98.1 - 99.1%的范围内,与传统DDH的结果一致。基于这些证据,并根据《细菌学命名法规》第23a条和第42条,我们提议将2007年Olson等人命名的海绵冢村氏菌重新分类为1996年Yassin等人命名的肺冢村氏菌的晚出异名,2009年Park等人命名的解羧冢村氏菌作为1997年Yassin等人命名的酪氨酸冢村氏菌的晚出异名,以及2008年Seong等人命名的顺川冢村氏菌作为2004年Nam等人命名的假泡沫冢村氏菌的晚出异名。随着基因组测序技术的进步,通过“数字DDH”比传统DDH更容易实现细菌物种的分类。