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首页> 外文期刊>Current Microbiology: An International Journal >Evaluation of the Use of Selective PCR Amplification of LPS Biosynthesis Genes for Molecular Typing of Leptospira at the Serovar Level
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Evaluation of the Use of Selective PCR Amplification of LPS Biosynthesis Genes for Molecular Typing of Leptospira at the Serovar Level

机译:在血清型水平上钩端螺旋体分子分型的LPS生物合成基因选择性PCR扩增的使用评价。

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摘要

Leptospirosis is an important epidemic zoonosis worldwide. Currently, there are more than 250 Leptospira pathogenic serovars known that can potentially infect humans. Conventional classification of leptospires with the serovar as the basic taxon, based on serological recognition of lipopolysaccharide (LPS) composition does not correlate well with species determination, based on general genomic features. Here, we investigate the selective amplification of polymorphic regions from the LPS biosynthesis loci (rfb) as a potential tool for serovar typing of Leptospira interrogans species. Eight pairs of primers were designed to target six ORFs from the rfb operon with varying levels of sequence polymorphism. They were tested both separately and multiplexed. Half of these primer pairs produced serovar-specific amplicons, allowing the identification of some specific serovars and also groups of serovars. It was shown that the serovar classification of Leptospira can be accessed by selective amplification of rfb operons in some cases, which may permit a parallel between the serological and the genomic classifications of Leptospira. As a conclusion, the selective amplification of rfb generated promising and already useful results, but it appears necessary to characterize a larger variety of Leptospira genomes or rfb operons to fully develop this method.
机译:钩端螺旋体病是全世界重要的流行性人畜共患病。当前,已知有250多种可能感染人类的​​钩端螺旋体病原体。基于脂多糖(LPS)成分的血清学识别,以血清型为基本分类单元的钩端螺旋体的常规分类与基于一般基因组特征的物种确定没有很好的关联。在这里,我们研究了LPS生物合成位点(rfb)的多态性区域的选择性扩增,作为询问钩端螺旋体物种血清型分型的潜在工具。设计八对引物,以不同水平的序列多态性靶向来自rfb操纵子的六个ORF。他们分别进行了测试,并进行了多重测试。这些引物对中的一半产生血清型特异性扩增子,从而可以鉴定某些特异性血清型以及血清型群。结果表明,在某些情况下,可以通过选择性扩增rfb操纵子来获得钩端螺旋体的血清型分类,这可能使钩端螺旋体的血清学和基因组学分类平行。结论是,rfb的选择性扩增产生了令人鼓舞且已经有用的结果,但似乎有必要表征更大范围的钩端螺旋体基因组或rfb操纵子以充分开发该方法。

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