Tracz Dobryan M, Gilmour Matthew W, Mabon Philip, Beniac Daniel R, Hoang Linda, Kibsey Pamela, Van Domselaar Gary, Tabor Helen, Westmacott Garrett R, Corbett Cindi R, Bernard Kathryn A
National Microbiology Laboratory, Public Health Agency of Canada, 1015 Arlington Street, Winnipeg, Manitoba R3E 3R2, Canada.
Department of Medical Microbiology and Infectious Diseases, Winnipeg, University of Manitoba, Manitoba, Canada.
Int J Syst Evol Microbiol. 2015 Jun;65(Pt 6):1959-1966. doi: 10.1099/ijs.0.000207. Epub 2015 Mar 25.
Polyphasic taxonomic analysis was performed on a clinical isolate (NML 06-3099T) from a cystic fibrosis patient, including whole-genome sequencing, proteomics, phenotypic testing, electron microscopy, chemotaxonomy and a clinical investigation. Comparative whole-genome sequence analysis and multilocus sequence analysis (MLSA) between Tatumella ptyseos ATCC 33301T and clinical isolate NML 06-3099T suggested that the clinical isolate was closely related to, but distinct from, the species T. ptyseos. By 16S rRNA gene sequencing, the clinical isolate shared 98.7 % sequence identity with T. ptyseos ATCC 33301T. A concatenate of six MLSA loci (totalling 4500 bp) revealed < 93.9 % identity between T. ptyseos ATCC 33301T, other members of the genus and the clinical isolate. A whole-genome sequence comparison between NML 06-3099T and ATCC 33301T determined that the average nucleotide identity was 76.24 %. The overall DNA G+C content of NML 06-3099T was 51.27 %, consistent with members of the genus Tatumella. By matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) MS analysis, NML 06-3099T had a genus-level match, but not a species-level match, to T. ptyseos. By shotgun proteomics, T. ptyseos ATCC 33301T and NML 06-3099T were found to have unique proteomes. The two strains had similar morphologies and multiple fimbriae, as observed by transmission electron microscopy, but were distinguishable by phenotypic testing. Cellular fatty acids found were typical for members of the Enterobacteriaceae. NML 06-3099T was susceptible to commonly used antibiotics. Based on these data, NML 06-3099T represents a novel species in the genus Tatumella, for which the name Tatumella saanichensis sp. nov. is proposed (type strain NML 06-3099T = CCUG 55408T = DSM 19846T).
对一名囊性纤维化患者的临床分离株(NML 06 - 3099T)进行了多相分类分析,包括全基因组测序、蛋白质组学、表型测试、电子显微镜检查、化学分类学和临床调查。泰特姆菌属(Tatumella)模式菌株泰特姆菌(Tatumella ptyseos)ATCC 33301T与临床分离株NML 06 - 3099T之间的全基因组序列比较分析和多位点序列分析(MLSA)表明,该临床分离株与泰特姆菌属的泰特姆菌密切相关,但又有所不同。通过16S rRNA基因测序,该临床分离株与泰特姆菌ATCC 33301T的序列同一性为98.7%。由六个MLSA位点串联而成(总计4500 bp)的序列显示,泰特姆菌ATCC 33301T、该属其他成员与临床分离株之间的同一性低于93.9%。NML 06 - 3099T与ATCC 33301T之间的全基因组序列比较确定,平均核苷酸同一性为76.24%。NML 06 - 3099T的总体DNA G + C含量为51.27%,与泰特姆菌属成员一致。通过基质辅助激光解吸/电离飞行时间(MALDI - TOF)质谱分析,NML 06 - 3099T与泰特姆菌在属水平上匹配,但在种水平上不匹配。通过鸟枪法蛋白质组学发现,泰特姆菌ATCC 33301T和NML 06 - 3099T具有独特的蛋白质组。透射电子显微镜观察发现,这两种菌株具有相似的形态和多条菌毛,但通过表型测试可区分。所发现的细胞脂肪酸是肠杆菌科成员的典型特征。NML 能被常用抗生素抑制。基于这些数据,NML 06 - 3099T代表泰特姆菌属中的一个新物种,为此提出名称泰特姆菌新种(Tatumella saanichensis sp. nov.)(模式菌株NML 06 - 3099T = CCUG 55408T = DSM 19846T)。