Huys G, Kämpfer P, Altwegg M, Kersters I, Lamb A, Coopman R, Lüthy-Hottenstein J, Vancanneyt M, Janssen P, Kersters K
Laboratorium voor Microbiologie, Universiteit Gent, Belgium.
Int J Syst Bacteriol. 1997 Oct;47(4):1165-71. doi: 10.1099/00207713-47-4-1165.
We examined the taxonomic position of seven Aeromonas isolates, recovered from Flemish and Scottish drinking water production plants and reservoirs, which were previously recognized by numerical analysis of genomic AFLP fingerprints as members of an unknown Aeromonas taxon that most closely resembled the species Aeromonas bestiarum (DNA hybridization group [HG] 2). The new phenotypic and DNA-DNA hybridization data obtained in this study show that the A. bestiarum-like strains constitute a separate Aeromonas species, for which the name Aeromonas popoffii sp. nov. is being proposed. The new species exhibited an internal DNA relatedness ranging from 79 to 100% and was 22 to 63% related to the type or reference strains of other Aeromonas spp. The highest DNA binding values were determined with A. bestiarum (51 to 63%), followed by Aeromonas hydrophila sensu stricto (HG1; 50 to 60%) and Aeromonas salmonicida (HG3; 39 to 55%). Although fingerprints generated by ribotyping and cellular fatty acid analysis often were highly similar, minor differences between the respective fingerprints were of significance for the differentiation of A. popoffii from its closest taxonomic neighbors, HG1, HG2, and HG3. Phenotypically, all seven strains of A. popoffii were positive for acid and gas production from D-glucose and glycerol, growth in KCN broth, arginine dihydrolase, DNase, Voges-Proskauer reaction, and resistance to vibriostatic agent O/129 and ampicillin but displayed negative reactions for production of urease, tryptophan deaminase, ornithine decarboxylase, and lysine decarboxylase (LDC). None of the strains displayed strong hemolytic activity. The lack of D-sucrose fermentation and LDC production and the ability to utilize DL-lactate as the sole energy and carbon source were useful characteristics for the biochemical separation of A. popoffii from A. bestiarum. Other Aeromonas spp. could be differentiated phenotypically from the new species by at least two features. The chromosomal G+C content of A. popoffii ranges from 57.7 to 59.6 mol%. Strain LMG 17541 is proposed as the type strain.
我们研究了从佛兰芒和苏格兰饮用水生产厂及水库中分离出的7株气单胞菌的分类地位,这些菌株此前通过基因组AFLP指纹图谱的数值分析被认定为一个未知气单胞菌分类群的成员,该分类群与兽气单胞菌(DNA杂交组[HG]2)最为相似。本研究获得的新的表型和DNA - DNA杂交数据表明,类兽气单胞菌菌株构成了一个单独的气单胞菌物种,为此提议将其命名为波氏气单胞菌(Aeromonas popoffii sp. nov.)。该新物种的内部DNA相关性在79%至100%之间,与其他气单胞菌属的模式或参考菌株的相关性为22%至63%。与兽气单胞菌(51%至63%)的DNA结合值最高,其次是嗜水气单胞菌(HG1;50%至60%)和杀鲑气单胞菌(HG3;39%至55%)。尽管核糖体分型和细胞脂肪酸分析产生的指纹图谱通常高度相似,但各自指纹图谱之间的微小差异对于区分波氏气单胞菌与其最接近的分类邻居HG1、HG2和HG3具有重要意义。在表型上, 所有7株波氏气单胞菌对D - 葡萄糖和甘油产酸产气、在KCN肉汤中生长、精氨酸双水解酶、DNA酶、Voges - Proskauer反应以及对弧菌抑制剂O/129和氨苄青霉素耐药均呈阳性反应,但对脲酶、色氨酸脱氨酶、鸟氨酸脱羧酶和赖氨酸脱羧酶(LDC)的产生呈阴性反应。所有菌株均未表现出强烈的溶血活性。缺乏D - 蔗糖发酵和LDC产生以及利用DL - 乳酸作为唯一能量和碳源的能力是从兽气单胞菌中生化分离波氏气单胞菌的有用特征。其他气单胞菌属物种可以通过至少两个特征在表型上与新物种区分开来。波氏气单胞菌的染色体G + C含量在57.7至59.6 mol%之间。提议将菌株LMG 17541作为模式菌株。