Cosgaya Clara, Marí-Almirall Marta, Van Assche Ado, Fernández-Orth Dietmar, Mosqueda Noraida, Telli Murat, Huys Geert, Higgins Paul G, Seifert Harald, Lievens Bart, Roca Ignasi, Vila Jordi
Department of Clinical Microbiology and ISGlobal, Barcelona Ctr. Int. Health Res. (CRESIB), Hospital Clínic-Universitat de Barcelona, Barcelona, Spain.
Laboratory for Process Microbial Ecology and Bioinspirational Management (PME&BIM), Department of Microbial and Molecular Systems (M2S), KU Leuven, Sint-Katelijne-Waver, Belgium.
Int J Syst Evol Microbiol. 2016 Oct;66(10):4105-4111. doi: 10.1099/ijsem.0.001318. Epub 2016 Jul 15.
The recent advances in bacterial species identification methods have led to the rapid taxonomic diversification of the genus Acinetobacter. In the present study, phenotypic and molecular methods have been used to determine the taxonomic position of a group of 12 genotypically distinct strains belonging to the Acinetobacter calcoaceticus-Acinetobacter baumannii (ACB) complex, initially described by Gerner-Smidt and Tjernberg in 1993, that are closely related to Acinetobacter pittii. Strains characterized in this study originated mostly from human samples obtained in different countries over a period of 15 years. rpoB gene sequences and multilocus sequence typing were used for comparisons against 94 strains representing all species included in the ACB complex. Cluster analysis based on such sequences showed that all 12 strains grouped together in a distinct clade closest to Acinetobacter pittiithat was supported by bootstrap values of 99 %. Values of average nucleotide identity based on blast between the genome sequence of strain JVAP01T (NCBI accession no. LJPG00000000) and those of other species from the ACB complex were always <91.2 %, supporting the species status of the group. In addition, the metabolic characteristics of the group matched those of the ACB complex and the analysis of their protein signatures by matrix-assisted laser desorption ionization time-of-flight MS identified some specific peaks. Our results support the designation of these strains as representing a novel species, for which the name Acinetobacter dijkshoorniae sp. nov. is proposed. The type strain is JVAP01T (=CECT 9134T=LMG 29605T).
细菌物种鉴定方法的最新进展导致不动杆菌属的分类迅速多样化。在本研究中,已使用表型和分子方法来确定一组12株基因型不同的菌株的分类地位,这些菌株属于醋酸钙不动杆菌-鲍曼不动杆菌(ACB)复合体,最初由Gerner-Smidt和Tjernberg于1993年描述,与皮氏不动杆菌密切相关。本研究中鉴定的菌株大多来自15年间在不同国家获得的人类样本。使用rpoB基因序列和多位点序列分型与代表ACB复合体中所有物种的94株菌株进行比较。基于此类序列的聚类分析表明,所有12株菌株聚集在一个与皮氏不动杆菌最接近的独特分支中,自展值为99%,支持该分支。基于菌株JVAP01T(NCBI登录号LJPG00000000)的基因组序列与ACB复合体中其他物种的基因组序列之间的blast平均核苷酸同一性值始终<91.2%,支持该组的物种地位。此外,该组的代谢特征与ACB复合体的代谢特征相匹配,通过基质辅助激光解吸电离飞行时间质谱对其蛋白质特征进行分析确定了一些特定峰。我们的结果支持将这些菌株指定为代表一个新物种,为此提出了新名称皮氏不动杆菌(Acinetobacter dijkshoorniae sp. nov.)。模式菌株为JVAP01T(=CECT 9134T=LMG 29605T)。