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B群链球菌血清型III高毒力克隆型的等效性。 (无乳链球菌,简称GBS)

Equivalence of high-virulence clonotypes of serotype III group B Streptococcus agalactiae (GBS).

作者信息

Fleming Katherine E, Bohnsack John F, Palacios Geraldo C, Takahashi Shinji, Adderson Elisabeth E

机构信息

Department of Infectious Diseases, St Jude Children's Research Hospital, Memphis, TN, USA 2Departments of Pediatrics and Pathology, University of Utah School of Medicine, Salt Lake City, UT, USA 3Instituto Mexicano del Seguro Social, Mexico City, Mexico 4Department of Microbiology, Joshi-Eiyoh University, Sakano, Japan.

出版信息

J Med Microbiol. 2004 Jun;53(Pt 6):505-508. doi: 10.1099/jmm.0.05443-0.

Abstract

Analysis of growth characteristics, multilocus enzyme electrophoresis, restriction digest pattern (RDP) typing and multilocus sequence typing have identified clonotypes of serotype III group B Streptococcus agalactiae (GBS) associated with invasive infection in neonates. This study sought to unify phenotypic and genotypic classifications of type III GBS strains associated with increased virulence in newborns. High-virulence clonotype (HVC) strains possessed the translation initiation factor 2 (infB) C allele, found in RDP type III-3 strains, and hybridized with the RDP type III-3-specific probe AA3.6, whereas non-HVC strains shared the infB A allele and genomic DNA from these strains did not hybridize with the AA3.6 probe. The characteristic growth lag of HVC GBS at 40 degrees C has been attributed to the presence of a heat-labile fructose-1,6-bisphosphate aldolase (Fba) enzyme in these strains. The deduced amino acid sequence of fba genes of both HVC and non-HVC strains, however, were identical. HVC and RDP type III-3 represent the same genetically related group of bacteria. The characteristic growth differences of virulent strains of type III GBS, however, are not directly attributable to differences in fba.

摘要

对生长特性、多位点酶电泳、限制性消化模式(RDP)分型和多位点序列分型的分析已鉴定出与新生儿侵袭性感染相关的B族链球菌血清型III(GBS)克隆型。本研究旨在统一与新生儿毒力增加相关的III型GBS菌株的表型和基因型分类。高毒力克隆型(HVC)菌株具有在RDP III - 3型菌株中发现的翻译起始因子2(infB)C等位基因,并与RDP III - 3特异性探针AA3.6杂交,而非HVC菌株共享infB A等位基因,且这些菌株的基因组DNA不与AA3.6探针杂交。HVC GBS在40摄氏度时的特征性生长滞后归因于这些菌株中存在一种热不稳定的果糖-1,6-二磷酸醛缩酶(Fba)。然而,HVC和非HVC菌株的fba基因推导氨基酸序列是相同的。HVC和RDP III - 3代表同一遗传相关的细菌群。然而,III型GBS毒力菌株的特征性生长差异并非直接归因于fba的差异。

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