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Molecular typing of Legionella pneumophila isolates from environmental water samples and clinical samples using a five-gene sequence typing and standard Sequence-Based Typing

机译:使用五基因序列键入和基于标准序列的打字,来自环境水样和临床样品的军团菌和临床样品的分子键入

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摘要

Inadequate discriminatory power to distinguish between L. pneumophila isolates, especially those belonging to disease-related prevalent sequence types (STs) such as ST1, ST36 and ST47, is an issue of SBT scheme. In this study, we developed a multilocus sequence typing (MLST) scheme based on two non-virulence loci (trpA, cca) and three virulence loci (icmK, lspE, lssD), to genotype 110 L. pneumophila isolates from various natural and artificial water sources in Guangdong province of China, and compared with the SBT. The isolates were assigned to 33 STs of the SBT and 91 new sequence types (nSTs) of the MLST. The indices of discrimination (IODs) of SBT and MLST were 0.920 and 0.985, respectively. Maximum likelihood trees of the concatenated SBT and MLST sequences both showed distinct phylogenetic relationships between the isolates from the two environments. More intragenic recombinations were detected in nSTs than in STs, and they were both more abundant in natural water isolates. We found out the MLST had a high discriminatory ability for the disease-associated ST1 isolates: 22 ST1 isolates were assigned to 19 nSTs. Furthermore, we assayed the discrimination of the MLST for 29 reference strains (19 clinical and 10 environmental). The clinical strains were assigned to eight STs and ten nSTs. The MLST could also subtype the prevalent clinical ST36 or ST47 strains: eight ST36 strains were subtyped into three nSTs and two ST47 strains were subtyped into two nSTs. We found different distribution patterns of nSTs between the environmental and clinical ST36 isolates, and between the outbreak clinical ST36 isolates and the sporadic clinical ST36 isolates. These results together revealed the MLST scheme could be used as part of a typing scheme that increased discrimination when necessary.
机译:区分L.肺炎的歧视性不足,特别是属于疾病相关的普遍普遍序列类型(STS)的歧视性,例如ST1,ST36和ST47,是SBT方案的问题。在这项研究中,我们开发了一种基于两种非毒力基因座(TRPA,CCA)和三种毒力基因座(ICMK,LSPE,LSSD)的多点序列键入(MLST)方案,与各种天然和人工的基因型110L.PNEumophiLa分离物中国广东省水源与SBT相比。分离株分配到MLST的SBT和91个新的序列类型(NSTS)的33 st。 SBT和MLST的歧视指数分别为0.920和0.985。串联SBT和MLST序列的最大似然树均显示出两种环境的分离物之间的不同系统发育关系。在NST中检测到比STS更大的内部细胞重组,并且它们在天然水分离株中均较大。我们发现MLST对疾病相关的ST1分离物具有高歧视性能力:将22个ST1分离株分配到19个NST。此外,我们测定了MLST对29种参考菌株(19个临床和10个环境)的辨别。临床菌株被分配到八分之八和十天。 MLST还可以亚型普遍的临床ST36或ST47菌株:将八个ST36菌株亚级分为三个NST,两个ST47菌株亚滴入两个NST。我们在环境和临床ST36分离物之间发现了NST的不同分布模式,并且在爆发临床ST36分离物和散发术临床ST36分离物之间。这些结果在一起揭示了MLST方案可作为必要时增加歧视的键入方案的一部分。

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  • 作者

    Xiao-Yong Zhan; Qing-Yi Zhu;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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