Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing
We applied multispacer typing (MST) by incorporating 9 variable intergenic spacers to Bartonella henselae DNA detected in lymph node biopsy specimens from 70 patients with cat-scratch disease (CSD), in cardiac valve specimens from 2 patients with endocarditis, and in 3 human isolates from patients w...
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doaj-e4c8ffa4710e4ad6b1d45f16b5d65d622020-11-24T21:11:52ZengCenters for Disease Control and PreventionEmerging Infectious Diseases1080-60401080-60592007-08-011381178117810.3201/eid1308.070085Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer TypingWenjun LiDidier RaoultPierre-Edouard FournierWe applied multispacer typing (MST) by incorporating 9 variable intergenic spacers to Bartonella henselae DNA detected in lymph node biopsy specimens from 70 patients with cat-scratch disease (CSD), in cardiac valve specimens from 2 patients with endocarditis, and in 3 human isolates from patients with bacillary angiomatosis, CSD, and endocarditis. Sixteen MST genotypes were found, 5 previously identified in cats and 11 new. Of the studied DNA, 78.7% belonged to 2 genotypes, which were phylogenetically organized into 4 lineages. Human strains were mostly grouped within 2 lineages, previously identified as Marseille and Houston-1. Our results suggest a greater genetic diversity in human-infecting B. henselae than what has previously been evaluated by using other genotyping methods. However, the diversity is not significantly different from that of cat strains. MST is thus a suitable genotyping tool for evaluating the genetic heterogeneity of B. henselae among isolates obtained from human patients.https://wwwnc.cdc.gov/eid/article/13/8/07-0085_articleBartonellagenetic heterogeneitygene sequencesmultispacer typinggenotypingresearch |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wenjun Li Didier Raoult Pierre-Edouard Fournier |
spellingShingle |
Wenjun Li Didier Raoult Pierre-Edouard Fournier Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing Emerging Infectious Diseases Bartonella genetic heterogeneity gene sequences multispacer typing genotyping research |
author_facet |
Wenjun Li Didier Raoult Pierre-Edouard Fournier |
author_sort |
Wenjun Li |
title |
Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing |
title_short |
Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing |
title_full |
Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing |
title_fullStr |
Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing |
title_full_unstemmed |
Genetic Diversity of Bartonella henselae in Human Infection Detected with Multispacer Typing |
title_sort |
genetic diversity of bartonella henselae in human infection detected with multispacer typing |
publisher |
Centers for Disease Control and Prevention |
series |
Emerging Infectious Diseases |
issn |
1080-6040 1080-6059 |
publishDate |
2007-08-01 |
description |
We applied multispacer typing (MST) by incorporating 9 variable intergenic spacers to Bartonella henselae DNA detected in lymph node biopsy specimens from 70 patients with cat-scratch disease (CSD), in cardiac valve specimens from 2 patients with endocarditis, and in 3 human isolates from patients with bacillary angiomatosis, CSD, and endocarditis. Sixteen MST genotypes were found, 5 previously identified in cats and 11 new. Of the studied DNA, 78.7% belonged to 2 genotypes, which were phylogenetically organized into 4 lineages. Human strains were mostly grouped within 2 lineages, previously identified as Marseille and Houston-1. Our results suggest a greater genetic diversity in human-infecting B. henselae than what has previously been evaluated by using other genotyping methods. However, the diversity is not significantly different from that of cat strains. MST is thus a suitable genotyping tool for evaluating the genetic heterogeneity of B. henselae among isolates obtained from human patients. |
topic |
Bartonella genetic heterogeneity gene sequences multispacer typing genotyping research |
url |
https://wwwnc.cdc.gov/eid/article/13/8/07-0085_article |
work_keys_str_mv |
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