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Phylogeny and Identification of Pantoea Species and Typing of Pantoea agglomerans Strains by Multilocus Gene Sequencing ▿ †

机译:利用多基因座基因测序技术对泛亚种进行系统发育和鉴定,并对泛亚种进行分型▿†

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摘要

Pantoea agglomerans and other Pantoea species cause infections in humans and are also pathogenic to plants, but the diversity of Pantoea strains and their possible association with hosts and disease remain poorly known, and identification of Pantoea species is difficult. We characterized 36 Pantoea strains, including 28 strains of diverse origins initially identified as P. agglomerans, by multilocus gene sequencing based on six protein-coding genes, by biochemical tests, and by antimicrobial susceptibility testing. Phylogenetic analysis and comparison with other species of Enterobacteriaceae revealed that the genus Pantoea is highly diverse. Most strains initially identified as P. agglomerans by use of API 20E strips belonged to a compact sequence cluster together with the type strain, but other strains belonged to diverse phylogenetic branches corresponding to other species of Pantoea or Enterobacteriaceae and to probable novel species. Biochemical characteristics such as fosfomycin resistance and utilization of d-tartrate could differentiate P. agglomerans from other Pantoea species. All 20 strains of P. agglomerans could be distinguished by multilocus sequence typing, revealing the very high discrimination power of this method for strain typing and population structure in this species, which is subdivided into two phylogenetic groups. PCR detection of the repA gene, associated with pathogenicity in plants, was positive in all clinical strains of P. agglomerans, suggesting that clinical and plant-associated strains do not form distinct populations. We provide a multilocus gene sequencing method that is a powerful tool for Pantoea species delineation and identification and for strain tracking.
机译:泛菌和其他泛菌物种在人类中引起感染,也对植物致病,但泛菌菌株的多样性及其与宿主和疾病的可能关联仍然鲜为人知,因此很难鉴定泛菌物种。我们通过基于六种蛋白质编码基因的多基因座基因测序,生化测试和抗菌药敏测试,对36株泛菌菌株进行了鉴定,其中包括28种最初被鉴定为团聚毕赤酵母的菌株。系统发育分析和与肠杆菌科其他物种的比较表明,泛菌属是高度多样的。通过使用API​​ 20E条带最初鉴定为团聚毕赤酵母的大多数菌株与类型菌株一起属于紧凑序列簇,但是其他菌株属于对应于泛菌或肠杆菌科其他物种的可能的系统发育分支,并且属于可能的新物种。生化特性(例如对磷霉素的抗性和对酒石酸d的利用)可能使团聚体P. aglomerans与其他泛亚属物种区分开。可通过多基因座序列分型区分所有20个团聚体P.团聚体,揭示了该方法对该物种的菌株分型和种群结构具有很高的区分能力,可分为两个系统发生组。与植物的致病性相关的repA基因的PCR检测在所有团聚毕赤酵母的临床菌株中均呈阳性,这表明临床菌株和与植物相关的菌株没有形成不同的种群。我们提供了一种多基因座基因测序方法,该方法对于泛菌物种的鉴定和鉴定以及菌株追踪而言是一种强大的工具。

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