Division of Bacteriology, Chiba Prefectural Institute of Public Health, Chiba, Japan.
Infect Genet Evol. 2013 Aug;18:94-9. doi: 10.1016/j.meegid.2013.05.006. Epub 2013 May 15.
The distribution of insertion sequence (IS) 629 was investigated among enterohemorrhagic Escherichia coli O157:H7/H-(O157) strains in different clades. Minimum spanning tree analysis showed that most strains in each clade clustered in a separate branch, indicating biased distribution of the IS629 insertion in different clades. The standardized index of association of the IS629 distribution data showed linkage disequilibrium in the strains in every clade, indicating that IS629 distribution data could be used for population genetic analysis. For this population genetic analysis, the Φ(PT) value, an analogue of F(ST), was calculated and indicated that clade 7 strains could be split into two clades based on their lineages. The degree of pairwise linkage disequilibrium was quite different among these two groups. The clade 7 split was in agreement with the model of O157 paraphyletic evolution and a new designation of the lineage II clades was proposed. The prevalence of strains with an IS629 insertion in certain loci was significantly different in different clades. Some of these significant differences were in loci in strains in branches of clades that were close in the O157 phylogenetic model, suggesting that IS629 insertion/deletion was not directly related to the divergence of O157 clades.
研究了插入序列(IS)629 在不同进化枝的肠出血性大肠杆菌 O157:H7/H-(O157)菌株中的分布。最小生成树分析显示,每个进化枝中的大多数菌株聚集在单独的分支中,表明 IS629 在不同进化枝中的插入存在偏倚分布。IS629 分布数据的关联标准化指数表明每个进化枝中的菌株存在连锁不平衡,表明 IS629 分布数据可用于群体遗传分析。对于这种群体遗传分析,计算了 Φ(PT)值,这是 F(ST)的类似物,表明 7 号进化枝的菌株可以根据其谱系分为两个进化枝。这两组之间的连锁不平衡程度差异很大。7 号进化枝的分裂与 O157 并系进化的模型一致,并提出了 II 系进化枝的新命名。在不同进化枝中,某些位点具有 IS629 插入的菌株的流行率存在显著差异。这些显著差异中的一些存在于进化枝分支中的菌株中的位点,这些分支在 O157 系统发育模型中非常接近,表明 IS629 的插入/缺失与 O157 进化枝的分化没有直接关系。