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Genomic epidemiology and global diversity of the emerging bacterial pathogen Elizabethkingia anophelis

机译:基因组流行病学和新兴细菌病原体伊丽莎白胆管肌的全球多样性

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Elizabethkingia anophelis is an emerging pathogen involved in human infections and outbreaks in distinct world regions. We investigated the phylogenetic relationships and pathogenesis-associated genomic features of two neonatal meningitis isolates isolated 5 years apart from one hospital in Central African Republic and compared them with Elizabethkingia from other regions and sources. Average nucleotide identity firmly confirmed that E. anophelis, E. meningoseptica and E. miricola represent demarcated genomic species. A core genome multilocus sequence typing scheme, broadly applicable to Elizabethkingia species, was developed and made publicly available (http://bigsdb.pasteur.fr/elizabethkingia). Phylogenetic analysis revealed distinct E. anophelis sublineages and demonstrated high genetic relatedness between the African isolates, compatible with persistence of the strain in the hospital environment. CRISPR spacer variation between the African isolates was mirrored by the presence of a large mobile genetic element. The pan-genome of E. anophelis comprised 6,880 gene families, underlining genomic heterogeneity of this species. African isolates carried unique resistance genes acquired by horizontal transfer. We demonstrated the presence of extensive variation of the capsular polysaccharide synthesis gene cluster in E. anophelis. Our results demonstrate the dynamic evolution of this emerging pathogen and the power of genomic approaches for Elizabethkingia identification, population biology and epidemiology.
机译:Elizabethkingia Anophelis是一种新兴病原体,参与了不同世界地区的人类感染和爆发。我们调查了两个新生儿脑膜炎的系统发育关系和发病机制相关的基因组特征,分离在中非共和国的一家医院分离5年,并将其与其他地区和来源的伊丽莎白别墅进行比较。平均核苷酸同一性牢固地证实,E. anophelis,E. meningoseptica和E. miricola代表划定的基因组物种。开发并公开适用于伊丽莎白象征物种的核心基因组序列分类方案(http://bigsdb.pasteur.fr/elizabethkingia)。系统发育分析显示出不同的E. anophelis sublineoges,并在非洲分离株之间表现出高遗传相关性,与医院环境中的应变持续存在。通过大型移动遗传元素的存在反映了非洲分离株之间的CRISPR间隔变化。 E. anophelis的泛基因组包含6,880个基因家族,强调该物种的基因组异质性。非洲分离株通过水平转移携带独特的抗性基因。我们证明了E. anophelis中荚膜多糖合成基因簇的广泛变化的存在。我们的结果表明,这种新兴病原体的动态演变和伊丽莎白虫草鉴定,人口生物学和流行病学的基因组方法的力量。

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