首页> 外文期刊>Gut Pathogens >Correlation between the genomic o454-nlpD region polymorphisms, virulence gene equipment and phylogenetic group of extraintestinal Escherichia coli (ExPEC) enables pathotyping irrespective of host, disease and source of isolation
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Correlation between the genomic o454-nlpD region polymorphisms, virulence gene equipment and phylogenetic group of extraintestinal Escherichia coli (ExPEC) enables pathotyping irrespective of host, disease and source of isolation

机译:基因组o454-nlpD区多态性,毒力基因设备与肠外大肠杆菌(ExPEC)的系统发生群之间的相关性可以进行病原分型,而与宿主,疾病和分离源无关

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Background The mutS-rpoS intergenic region in E. coli displays a mosaic structure which revealed pathotype specific patterns. To assess the importance of this region as a surrogate marker for the identification of highly virulent extraintestinal pathogenic E. coli (ExPEC) strains we aimed to: (i) characterize the genetic diversity of the mutS gene and the o454-nlpD genomic region among 510 E. coli strains from animals and humans; (ii) delineate associations between the polymorphism of this region and features such as phylogenetic background of E. coli, pathotype, host species, clinical condition, serogroup and virulence associated genes (VAG)s; and (iii) identify the most important VAGs for classification of the o454-nlpD region. Methods Size variation in the o454-nlpD region was investigated by PCR amplification and sequencing. Phylogenetic relationships were assessed by Ecor- and Multilocus sequence- typing (MLST), and a comparative analysis between mutS gene phylogenetic tree obtained with RAxML and the MLST grouping method was performed. Correlation between o454-nlpD patterns and the features described above were analysed. In addition, the importance of 47 PCR-amplified ExPEC-related VAGs for classification of o454-nlpD patterns was investigated by means of Random Forest algorithm. Results Four main structures (patterns I-IV) of the o454-nlpD region among ExPEC and commensal E. coli strains were identified. Statistical analysis showed a positive and exclusive association between pattern III and the ExPEC strains. A strong association between pattern III and either the Ecor group B2 or the sequence type complexes known to represent the phylogenetic background of highly virulent ExPEC strains (such as STC95, STC73 and STC131) was found as well. RF analyses determined five genes (csgA, malX, chuA, sit, and vat) to be suitable to predict pattern III strains. Conclusion The significant association between pattern III and group B2 strains suggested the o454-nlpD region to be of great value in identifying highly virulent strains among the mixed population of E. coli promising to be the basis of a future typing tool for ExPEC and their gut reservoir. Furthermore, top-ranked VAGs for classification and prediction of pattern III were identified. These data are most valuable for defining ExPEC pathotype in future in vivo assays.
机译:背景技术大肠杆菌中的mutS-rpoS基因间区域显示出镶嵌结构,揭示了特定的病理型型。为了评估该区域作为鉴定高毒力肠外致病性大肠杆菌(ExPEC)菌株的替代标记的重要性,我们旨在:(i)表征510中mutS基因和o454-nlpD基因组区域的遗传多样性来自动物和人类的大肠杆菌菌株; (ii)描绘该区域的多态性与特征之间的关联,例如大肠杆菌的系统发育背景,病理类型,宿主物种,临床状况,血清群和毒力相关基因(VAG); (iii)确定对o454-nlpD区域分类最重要的VAG。方法通过PCR扩增和测序研究o454-nlpD区域的大小变化。通过Ecor和Multilocus序列分型(MLST)评估亲缘关系,并用RAxML和MLST分组方法对mutS基因进化树进行了比较分析。分析了o454-nlpD模式与上述特征之间的相关性。此外,还通过随机森林算法研究了47种PCR扩增的ExPEC相关VAG对o454-nlpD模式分类的重要性。结果确定了ExPEC和普通大肠杆菌中o454-nlpD区域的四个主要结构(模式I-IV)。统计分析显示,模式III与ExPEC菌株之间存在正排他性联系。还发现模式III与Ecor组B2或已知代表高毒性ExPEC菌株(如STC95,STC73和STC131)的系统发育背景的序列类型复合物之间有很强的联系。 RF分析确定了五个基因(csgA,malX,chuA,sit和vat),适合预测模式III菌株。结论模式III与B2组菌株之间的显着关联表明,o454-nlpD区域在鉴定大肠杆菌混合种群中的高毒力菌株方面具有重要价值,有望成为未来ExPEC及其肠道分型工具的基础。水库。此外,确定了用于分类和预测模式III的排名最高的VAG。这些数据对于在未来的体内测定中确定ExPEC病理型最有价值。

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