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针对 groEL 基因的 PCR 引物在水产养殖中用于特异性检测无乳链球菌的评价。

Evaluation of PCR primers targeting the groEL gene for the specific detection of Streptococcus agalactiae in the context of aquaculture.

机构信息

Moredun Research Institute, Pentlands Science Park, Penicuik, UK.

Institute of Biodiversity Animal Health and Comparative Medicine, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow, UK.

出版信息

J Appl Microbiol. 2018 Sep;125(3):666-674. doi: 10.1111/jam.13925. Epub 2018 Jun 29.

Abstract

AIMS

The aim of this study was to design a set of primers for specific detection and identification of Streptococcus agalactiae in polymerase chain reaction (PCR) that can detect a diverse range of S. agalactiae isolates from different hosts and that it is capable of discriminating between S. agalactiae and other species that are closely related or potentially present in aquaculture environments, notably Streptococcus iniae.

METHODS AND RESULTS

Primers, based on the groEL2 gene of S. agalactiae, were shown to be epidemiologically sensitive to 97 isolates of S. agalactiae, representing 11 clonal complexes derived from piscine, terrestrial and aquatic mammalian host species. The primers were tested with 10 S. iniae isolates and 22 other comparator species with no cross-reaction observed after optimization of reaction conditions. They have a high analytical sensitivity, detecting as few as 10 copies of S. agalactiae genomic DNA per reaction and are capable of detecting the target in DNA extracted from the brains of infected fish.

CONCLUSIONS

The primers proved suitable for the sensitive and specific detection of S. agalactiae from dairy-, human- and fish-related origins by PCR.

SIGNIFICANCE AND IMPACT OF THE STUDY

Due to the importance of S. agalactiae as a pathogen, many PCR primers have been published for this bacterium, designed largely for its detection in dairy and human samples, but many cross-reacting with S. iniae. The ability to differentiate between S. agalactiae and S. iniae in aquaculture derived samples is important as both infect fish, causing similar disease symptoms and are phenotypically similar, yet control strategies and zoonotic risk are species specific.

摘要

目的

本研究旨在设计一组用于聚合酶链反应(PCR)中特异性检测和鉴定无乳链球菌的引物,该引物可检测来自不同宿主的多种无乳链球菌分离株,能够区分无乳链球菌和其他在水产养殖环境中密切相关或可能存在的密切相关的物种,特别是海豚链球菌。

方法和结果

基于无乳链球菌的 groEL2 基因设计的引物对 97 株无乳链球菌分离株具有流行病学敏感性,代表了来自鱼类、陆地和水生哺乳动物宿主物种的 11 个克隆复合物。优化反应条件后,用 10 株海豚链球菌分离株和 22 株其他对照种进行了测试,未观察到交叉反应。它们具有较高的分析灵敏度,每个反应可检测到低至 10 个拷贝的无乳链球菌基因组 DNA,并且能够从感染鱼的脑组织中提取的 DNA 中检测到目标。

结论

该引物通过 PCR 可用于从乳制品、人类和鱼类相关来源中灵敏且特异性地检测无乳链球菌。

研究的意义和影响

由于无乳链球菌作为病原体的重要性,已经发表了许多用于该细菌的 PCR 引物,主要用于乳制品和人类样本的检测,但许多与海豚链球菌交叉反应。在水产养殖样本中区分无乳链球菌和海豚链球菌很重要,因为两者都会感染鱼类,引起类似的疾病症状且表型相似,但控制策略和人畜共患病风险是特定于物种的。

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