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首页> 外文期刊>Applied Microbiology >Novel Capsular Polysaccharide Loci and New Diagnostic Tools for High-Throughput Capsular Gene Typing in Streptococcus suis
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Novel Capsular Polysaccharide Loci and New Diagnostic Tools for High-Throughput Capsular Gene Typing in Streptococcus suis

机译:猪链球菌中的新型荚膜多糖基因座和高通量荚膜基因分型的新诊断工具

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Streptococcus suis is an important pathogen of pigs and may cause serious disease in humans. Serotyping is an important tool for detection and epidemiological studies of S. suis . Thirty-three reference serotypes and nine novel cps loci (NCLs) are recognized in S. suis . To gain a better understanding of the prevalence and genetic characteristics of NCLs, we investigated the serotype identity of 486 isolates isolated between 2013 and 2015 in China by capsular gene typing methods. Two hundred seventy-six isolates carried NCLs belonging to 16 groups, 8 of which appear to have not been reported previously. These isolates showed autoagglutination, polyagglutination, or nonagglutination with reference antisera and thus were nonserotypeable. Almost all isolates carrying the unknown NCLs were encapsulated, with various capsular thicknesses, indicating that they are most likely novel serotypes. To simultaneously identify the currently recognized 17 NCLs, an 18-plex detection system using the Luminex xTAG universal array technology was developed. Our data also provide valuable genetic information for monitoring the variations within NCLs by investigating the genetic characteristics of different subtypes within NCLs.IMPORTANCE Nonserotypeable Streptococcus suis isolates have been reported in many studies, and 9 novel cps loci (NCLs) have already been identified in nonserotypeable isolates. Moreover, novel cps loci are continually being found. The main purpose of this study was to investigate the prevalence and characteristics of NCLs in S. suis isolates recovered between 2013 and 2015 in China. This study provides valuable genetic information for monitoring the variations within NCLs. Meanwhile, a fast and cost-effective 18-plex detection system that can simultaneously identify the currently recognized 17 NCLs was developed in this study. This system will serve as a valuable tool for detecting known and identifying additional novel cps loci among nonserotypeable S. suis isolates.
机译:猪链球菌是猪的重要病原体,可能导致人类严重疾病。血清分型是猪链球菌检测和流行病学研究的重要工具。猪链球菌中识别出33种参考血清型和9种新的cps基因座(NCL)。为了更好地了解NCL的流行和遗传特征,我们通过荚膜基因分型方法调查了2013年至2015年间在中国分离的486株分离株的血清型身份。 266株的NCL属于16个组,其中8个似乎以前没有报道。这些分离物表现出与参考抗血清的自动凝集,多凝集或非凝集,因此不可血清分型。几乎所有带有未知NCL的分离株都被包囊,囊厚不同,表明它们最有可能是新型血清型。为了同时识别当前公认的17个NCL,开发了使用Luminex xTAG通用阵列技术的18多重检测系统。我们的数据还提供了宝贵的遗传信息,可通过调查NCL中不同亚型的遗传特征来监测NCL中的变异。重要许多研究都报告了非血清型猪链球菌分离株,并且已经在非血清型中鉴定出9个新的cps基因座(NCL)。隔离株。而且,不断发现新的cps基因座。这项研究的主要目的是调查2013年至2015年在中国回收的猪链球菌分离株中NCL的发生率和特征。这项研究提供了有价值的遗传信息,用于监测NCL内的变异。同时,在这项研究中开发了一种快速且具有成本效益的18-plex检测系统,它可以同时识别当前公认的17种NCL。该系统将作为检测非血清型猪链球菌分离株中已知的并鉴定其他新的cps基因座的有价值的工具。

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