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首页> 外文期刊>Applied and Environmental Microbiology >Molecular characterization of Yersinia enterocolitica by pulsed-field gel electrophoresis and hybridization of DNA fragments to ail and pYV probes.
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Molecular characterization of Yersinia enterocolitica by pulsed-field gel electrophoresis and hybridization of DNA fragments to ail and pYV probes.

机译:小肠结肠炎耶尔森氏菌的分子特征通过脉冲场凝胶电泳和DNA片段与所有和pYV探针的杂交。

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Sixty strains of Yersinia enterocolitica from five serogroups (O:3; O:9; O:8; O:5; and O:5,27) and eight non-Y. enterocolitica strains, recovered from diverse sources (humans, animals, food, and the environment) in Europe, Argentina, and the United States, were examined by the pulsed-field gel electrophoresis (PFGE) technique of contour clamped homogeneous electric field electrophoresis (CHEF) by using NotI and XbaI as restriction enzymes. NotI and XbaI generated 36 and 33 restriction endonuclease digestion profiles (REDP), respectively. By combining the results of both enzymes, 42 unique genomic groups were differentiated. DNA fragments were transferred to nylon membranes and hybridized with digoxigenin-labelled oligonucleotide probes to the ail gene and virulence plasmid to determine hybridization patterns and the potential virulence of the strains. The strains were tested for the presence of the plasmid by PFGE-CHEF and phenotypic characteristics encoded for by the virulence plasmid. Thirty of the 60 Y. enterocolitica strains tested harbored the virulence plasmid. The specificity of the ail and pYV probes was 100% when tested with 68 Yersinia strains and 19 different non-Yersinia strains. Sixteen selected Y. enterocolitica strains were tested for their virulence by lethality in iron- and desferrioxamine-sensitized mice. No correlation between REDP and the virulence of the strains was observed. The observed REDP and the hybridization patterns were very homogeneous within a serogroup and independent of the source of isolation. In addition, PFGE-CHEF was shown to be valuable in identifying and confirming serogroups. Principal component analysis of Dice similarity indices from REDP was an excellent tool for determining genetic relatedness among strains.
机译:来自五个血清群(O:3; O:9; O:8; O:5;和O:5,27)的60株小肠结肠炎耶尔森菌和8个非Y菌株。通过等高线均质电场电泳(CHEF)的脉冲场凝胶电泳(PFGE)技术检查了从欧洲,阿根廷和美国的多种来源(人类,动物,食物和环境)回收的肠结肠炎菌株),将NotI和XbaI用作限制酶。 NotI和XbaI分别生成36和33个限制性核酸内切酶消化谱(REDP)。通过将两种酶的结果相结合,可以区分出42个独特的基因组。将DNA片段转移到尼龙膜上,并用洋地黄毒苷标记的寡核苷酸探针与ail基因和毒力质粒杂交,以确定杂交模式和菌株的潜在毒力。通过PFGE-CHEF测试菌株的质粒的存在以及由毒性质粒编码的表型特征。测试的60个肠球菌耶尔森菌株中有三十个具有毒性质粒。当用68株耶尔森氏菌菌株和19种不同的非耶尔森氏菌菌株测试时,ail和pYV探针的特异性为100%。通过在铁和去铁草胺敏化小鼠中的致死性测试了十六种选择的小肠结肠炎耶尔森氏菌菌株的毒力。在REDP和菌株的毒力之间没有相关性。在血清群中观察到的REDP和杂交模式非常均一,并且与分离源无关。此外,PFGE-CHEF被证明在鉴定和确认血清群中很有价值。 REDP对Dice相似性指标的主成分分析是确定菌株之间遗传相关性的绝佳工具。

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