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Genetic Classification and Differentiation of Bartonella Species Based on Comparison of Partial ftsZ Gene Sequences

机译:基于部分ftsZ基因序列比较的巴尔通体物种的遗传分类和分化

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摘要

Currently, 19 species are recognized in the genus Bartonella, 7 of which are involved in an increasing variety of human diseases. Development of molecular tools for detection, identification, and subtyping of strains and isolates has promoted research on Bartonella spp. We amplified and sequenced the portion of the ftsZ gene encoding the N-terminal region of the cell division protein for 13 Bartonella species: Bartonella alsatica, B. birtlesii, B. doshiae, B. elizabethae, B. grahami, B. koehlerae, B. schoenbuchensis, B. taylorii, B. tribocorum, Bartonella vinsonii subsp. arupensis, Bartonella vinsonii subsp. berkhoffii, Bartonella vinsonii subsp. vinsonii, and B. bovis Bermond et al.(“B. weissii”). Phylogenetically derived trees revealed four statistically supported groups, indicating that sequencing of the ftsZ gene is a useful tool for identifying evolutionary relationships among Bartonella species. Furthermore, we amplified and sequenced the portion of the ftsZ gene encoding the C-terminal region of the protein for 4 B. bacilliformis isolates, 14 B. clarridgeiae isolates, 14 B. quintana isolates, and 30 B. henselae isolates that were obtained from different geographic regions, hosts, and clinical specimens. B. clarridgeiae and B. quintana sequences were highly conserved, while those of the four B. bacilliformis isolates differed from the type strain at 5 positions. Among B. henselae strains isolated from cats and patients, only two genotypes were detected: Houston and Marseille. Among 80 clinical samples we detected Bartonella spp. in 35 (43.75%) and found the assay to be comparable to that of a combined intergenic-spacer-region- and pap31-based PCR assay. Our results show the usefulness of the portion of the ftsZ gene encoding the C-terminal region for diagnosis of Bartonella infections. More samples should be tested to study its usefulness for epidemiological investigations.
机译:目前,Bartonella属中已识别出19种,其中7种与越来越多的人类疾病有关。用于检测,鉴定和分型菌株和分离株的分子工具的开发促进了对Bartonella spp的研究。我们针对13个巴尔通体物种扩增和测序了编码细胞分裂蛋白N端区域的ftsZ基因的部分:巴尔通体alsatica,B。birtlesii,B。doshiae,B。elizabethae,B。grahami,B。koehlerae,B schoenbuchensis,B。taylorii,B。tribocorum,Bartonella vinsonii亚种。 arupensis,Bartonella vinsonii亚种。 berkhoffii Bartonella vinsonii 子亚种。 vinsonii B。 bovis Bermond等(“ B。weissii ”)。系统发育学上的树木揭示出四个受统计支持的群体,这表明 ftsZ 基因的测序是鉴定 Bartonella 种之间进化关系的有用工具。此外,我们扩增并测序了 ftsZ 基因的编码4个 B蛋白C端区域的部分。芽孢杆菌分离株,14个 B。 clarridgeiae 分离物,14个 B。金枪鱼分离物和30个 B。 henselae 分离株,它们来自不同的地理区域,宿主和临床标本。 B。 clarridgeiae B。 quintana 序列高度保守,而四个 B序列则高度保守。芽孢杆菌分离株在5个位置不同于菌株。在 B中。从猫和患者身上分离出的henselae 菌株,仅检测到两种基因型:休斯顿和马赛。在80个临床样本中,我们检测到 Bartonella spp。在35(43.75%)中,发现该检测方法与基于基因间隔区和基于 pap31 的组合PCR检测方法具有可比性。我们的研究结果表明, ftsZ 基因的编码C端区域的部分对于诊断 Bartonella 感染是有用的。应该测试更多样本以研究其在流行病学调查中的作用。

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