首页> 外文期刊>Journal of Clinical Microbiology >Evaluation of Methods for Identification and Determination of the Taxonomic Status of Strains Belonging to the Streptococcus porcinus-Streptococcus pseudoporcinus Complex Isolated from Animal, Human, and Dairy Sources
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Evaluation of Methods for Identification and Determination of the Taxonomic Status of Strains Belonging to the Streptococcus porcinus-Streptococcus pseudoporcinus Complex Isolated from Animal, Human, and Dairy Sources

机译:从动物,人类和乳制品来源分离的属于猪链球菌-伪链球菌复合物的菌株的分类学状态鉴定和测定方法的评价

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Ninety-seven animal, human, and dairy Streptococcus porcinus or Streptococcus pseudoporcinus isolates in the CDC Streptococcus strain collection were evaluated on the basis of DNA-DNA reassociation, 16S rRNA and rpoB gene sequencing, conventional biochemical and Rapid ID 32 Strep identification methods, and antimicrobial susceptibility testing to determine their taxonomic status, characteristics for species differentiation, antimicrobial susceptibility, and relevance of clinical source. Nineteen of the 97 isolates (1 human, 18 swine) were identified as S. porcinus. The remaining 72 human isolates and 6 dairy isolates were identified as S. pseudoporcinus. The use of 16S rRNA or rpoB gene sequencing was required to differentiate S. porcinus from S. pseudoporcinus. The human and dairy S. pseudoporcinus isolates were biochemically distinct from each other as well as distinct by 16S rRNA and rpoB gene sequencing. Therefore, we propose the subspecies denominations S. pseudoporcinus subsp. hominis subsp. nov. for the human isolates and S. pseudoporcinus subsp. lactis subsp. nov. for the dairy isolates. Most strains were susceptible to the antimicrobials tested, with the exception of tetracycline. Two strains of each species were also resistant to clindamycin and erythromycin and carried the erm(A) (S. pseudoporcinus) or the erm(B) (S. porcinus) gene. S. porcinus was identified from a single human isolate recovered from a wound in an abattoir worker. S. pseudoporcinus was primarily isolated from the genitourinary tract of women but was also associated with blood, placental, and wound infections. Isolates reacting with group B antiserum and demonstrating wide beta-hemolysis should be suspected of being S. pseudoporcinus and not S. agalactiae.
机译:根据DNA-DNA重组,16S rRNA和 rpoB 基因测序,常规生化和快速检测,评估了CDC链球菌菌株中的97种动物,人和乳制品的猪链球菌或伪猪链球菌。 ID 32链球菌的鉴定方法和抗菌药敏测试,以确定它们的分类状态,物种分化特征,抗菌药敏性以及临床来源的相关性。 97个分离株中有19个(1个人,18头猪)被鉴定为猪链球菌。其余的72株人类分离株和6株乳品分离株被鉴定为伪猪链球菌。需要使用16S rRNA或 rpoB 基因测序来区分猪链球菌和假猪链球菌。人和乳品伪猪链球菌的分离物在生化上彼此不同,并且通过16S rRNA和 rpoB 基因测序也彼此不同。因此,我们提出亚种命名为S. pseudoporcinus subsp 。 Hominis 子空间十一月用于人类分离株和伪猪链球菌亚种。 lactis 子子集。十一月用于乳品分离株。除四环素外,大多数菌株对测试的抗生素敏感。每个物种的两个菌株也对克林霉素和红霉素具有抗性,并带有 erm (A)(伪猪链球菌)或 erm (B)(猪链球菌)基因。 。猪链球菌是从屠宰场工人伤口中回收的单个人类分离株中鉴定出来的。伪猪链球菌主要分离自女性的泌尿生殖道,但也与血液,胎盘和伤口感染有关。与B组抗血清反应并显示广泛的β溶血的分离株应被怀疑是假猪链球菌而不是无乳链球菌。

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