Department of Microbiology and Biotechnology, Daejeon University, 96-3 Yongun-dong, Dong-gu, Daejeon 300-716, Republic of Korea.
Korea Research Institute of Bioscience & Biotechnology, 52 Oun-Dong, Yuseong, Daejeon 305-333, Republic of Korea.
Int J Syst Evol Microbiol. 2012 Dec;62(Pt 12):2978-2985. doi: 10.1099/ijs.0.040287-0. Epub 2012 Jan 27.
The 16S rRNA and gyrB genes of 22 Streptomyces strains belonging to the Streptomyces griseus cluster were sequenced, and their taxonomic positions were re-evaluated. For correct analysis, all of the publicly available sequences of the species were collected and compared with those obtained in this study. Species for which no consensus sequence could be identified were excluded from the phylogenetic analysis. The levels of 16S rRNA gene sequence similarity within the cluster ranged from 98.6 to 100% with a mean value of 99.6 ± 0.3%, and those of the gyrB gene ranged from 93.6 to 99.9% with a mean value of 96.3 ± 1.5%. The observed average nucleotide substitution rate of the gyrB gene was ten times higher than that of the 16S rRNA gene, showing a far higher degree of variation. Strains sharing 99.3% or more gyrB sequence similarity (corresponding to an evolutionary distance of 0.0073) always formed monophyletic groups in both trees. Through the combined analysis of the two genes, clear cases of synonymy could be identified and, according to the priority rule, the assertion of the status of Streptomyces setonii as a distinct species and the reclassification of Streptomyces fimicarius as a later synonym of S. setonii and Streptomyces albovinaceus as a later synonym of Streptomyces globisporus are proposed. Emended descriptions of S. setonii and S. globisporus are provided.
对属于灰色链霉菌群的 22 株链霉菌菌株的 16S rRNA 和 gyrB 基因进行了测序,并重新评估了它们的分类地位。为了进行正确的分析,收集了所有可公开获得的该物种序列,并与本研究中获得的序列进行了比较。对于无法确定共识序列的物种,将其排除在系统发育分析之外。该聚类中 16S rRNA 基因序列相似性的水平范围为 98.6%至 100%,平均值为 99.6±0.3%,gyrB 基因的水平范围为 93.6%至 99.9%,平均值为 96.3±1.5%。gyrB 基因的观察平均核苷酸取代率是 16S rRNA 基因的 10 倍,变异程度更高。gyrB 序列相似性为 99.3%或更高(对应进化距离为 0.0073)的菌株在两棵树中总是形成单系群。通过对这两个基因的联合分析,可以确定同义词的明确情况,并根据优先规则,提出将链霉菌 setonii 作为一个独特物种的地位以及将链霉菌 fimicarius 重新分类为链霉菌 setonii 的同义词和链霉菌 albovinaceus 作为链霉菌 globisporus 的同义词的建议。对链霉菌 setonii 和链霉菌 globisporus 进行了修订描述。