Sasaoka Fumina, Suzuki Jin, Fujihara Masatoshi, Watanabe Yusaku, Nagai Kazuya, Harasawa Ryô
Department of Veterinary Microbiology, Faculty of Agriculture, Iwate University, Morioka, Japan.
J Vet Med Sci. 2012 Jan;74(1):83-7. doi: 10.1292/jvms.11-0344. Epub 2011 Aug 12.
The intergenic spacer region between the 16S and 23S rRNA genes of mycoplasmas has been used for a genetic marker for identification of the species. Here we show the intergenic spacer regions of two hemotropic mycoplasmas, Mycoplasma haemofelis and 'Candidatus Mycoplasma haemobos (synonym: 'C. M. haemobovis')' are also useful for classification of this particular group of mycoplasms. The spacer region of M. haemofelis and `C. M. haemobos' consisted of 209 and 210 base pairs, respectively, and both lacked the spacer tRNA genes. Phylogenetic analysis suggested a monophyletic relationship among hemoplasmas and M. fastidiosum. A hypothetical secondary structure predicted in the spacer regions tentatively assigned the boxA and boxB motifs peculiar to the members of the genus Mycoplasma. M. haemofelis and 'C. M. haemobos' possessed a stem-loop structure in common, despite the presence of a palindromic nucleotide substitution in the stem region.
支原体16S和23S rRNA基因之间的基因间隔区已被用作鉴定该物种的遗传标记。在此我们表明,两种嗜血性支原体,即溶血支原体(Mycoplasma haemofelis)和“嗜牛支原体(Candidatus Mycoplasma haemobos,同义词:嗜牛支原体(C. M. haemobovis))”的基因间隔区,对于这一特定支原体群体的分类也很有用。溶血支原体和嗜牛支原体的间隔区分别由209和210个碱基对组成,两者都缺乏间隔tRNA基因。系统发育分析表明血支原体和苛求支原体(M. fastidiosum)之间存在单系关系。在间隔区预测的假设二级结构初步确定了支原体属成员特有的boxA和boxB基序。溶血支原体和嗜牛支原体具有共同的茎环结构,尽管在茎区存在回文核苷酸取代。