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Genetic Characterization and Comparison of Clostridium botulinum Isolates from Botulism Cases in Japan between 2006 and 2011

机译:2006年至2011年日本肉毒梭菌病例中肉毒梭菌分离株的遗传特征和比较

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Genetic characterization was performed for 10 group I Clostridium botulinum strains isolated from botulism cases in Japan between 2006 and 2011. Of these, 1 was type A, 2 were type B, and 7 were type A(B) {carrying a silent bont/B [bont/(B)] gene} serotype strains, based on botulinum neurotoxin (BoNT) production. The type A strain harbored the subtype A1 BoNT gene (bont/A1), which is associated with the ha gene cluster. The type B strains carried bont/B5 or bont/B6 subtype genes. The type A(B) strains carried bont/A1 identical to that of type A(B) strain NCTC2916. However, bont/(B) genes in these strains showed single-nucleotide polymorphisms (SNPs) among strains. SNPs at 2 nucleotide positions of bont/(B) enabled classification of the type A(B) strains into 3 groups. Pulsed-field gel electrophoresis (PFGE) and multiple-locus variable-number tandem-repeat analysis (MLVA) also provided consistent separation results. In addition, the type A(B) strains were separated into 2 lineages based on their plasmid profiles. One lineage carried a small plasmid (5.9 kb), and another harbored 21-kb plasmids. To obtain more detailed genetic information about the 10 strains, we sequenced their genomes and compared them with 13 group I C. botulinum genomes in a database using whole-genome SNP analysis. This analysis provided high-resolution strain discrimination and enabled us to generate a refined phylogenetic tree that provides effective traceability of botulism cases, as well as bioterrorism materials. In the phylogenetic tree, the subtype B6 strains, Okayama2011 and Osaka05, were distantly separated from the other strains, indicating genomic divergence of subtype B6 strains among group I strains.
机译:在2006年至2011年间,对从日本肉毒杆菌中分离出的10个I组肉毒梭菌菌株进行了遗传鉴定。其中1型为A型,2型为B型,7型为A(B) [bont /(B)]基因}血清型菌株,基于肉毒杆菌神经毒素(BoNT)产生。 A型菌株携带亚型A1 BoNT基因(bont / A1),该基因与ha基因簇相关。 B型菌株携带bont / B5或bont / B6亚型基因。 A(B)型菌株携带的bont / A1与A(B)型NCTC2916菌株相同。但是,这些菌株中的bont /(B)基因在菌株之间显示出单核苷酸多态性(SNP)。 bont /(B)的2个核苷酸位置处的SNP使A(B)型菌株分为3组。脉冲场凝胶电泳(PFGE)和多位点可变数目串联重复分析(MLVA)也提供了一致的分离结果。另外,基于它们的质粒概况,将A(B)型菌株分为2个谱系。一个谱系带有一个小质粒(5.9 kb),另一个带有21 kb的质粒。为了获得有关10个菌株的更详细的遗传信息,我们对它们的基因组进行了测序,并使用全基因组SNP分析将它们与数据库中的13个I. C.肉毒杆菌基因组进行了比较。这项分析提供了高分辨率的应变判别,使我们能够生成精致的系统树,为肉毒中毒病例以及生物恐怖主义材料提供有效的可追溯性。在系统发育树中,亚型B6菌株Okayama2011和Osaka05与其他菌株相距遥远,表明第一类B6菌株在基因组上存在差异。

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