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Identification and Discrimination of Salmonella enterica Serovar Gallinarum Biovars Pullorum and Gallinarum Based on a One-Step Multiplex PCR Assay

机译:一步多重PCR检测法鉴定和鉴定肠炎沙门氏菌鸡白痢沙门氏菌和鸡白痢沙门氏菌

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摘要

Salmonella enterica serovar Gallinarum biovars Pullorum (S. Pullorum) and Gallinarum (S. Gallinarum) can result in pullorum disease and fowl typhoid in avian species, respectively, and cause considerable economic losses in poultry in many developing countries. Conventional Salmonella serotyping is a time-consuming, labor-intensive and expensive process, and the two biovars cannot be distinguished using the traditional serological method. In this study, we developed a rapid and reliable one-step multiplex polymerase chain reaction (PCR) assay to simultaneously identify and discriminate the biovars Pullorum and Gallinarum. The multiplex PCR method focused on three specific genes, stn, I137_08605 and ratA. Based on bioinformatics analysis, we found that gene I137_08605 was present only in S. Pullorum and S. Gallinarum, and a region of difference in ratA was deleted only in S. Pullorum after comparison with that of S. Gallinarum and other Salmonella serovars. Three pairs of primers specific for the three genes were designed for the multiplex PCR system and their selectivity and sensitivity were determined. The multiplex PCR results showed that S. Pullorum and S. Gallinarum could be identified and discriminated accurately from all tested strains including 124 strains of various Salmonella serovars and 42 strains of different non-Salmonella pathogens. In addition, this multiplex PCR assay could detect a minimum genomic DNA concentration of 67.4 pg/μL, and 100 colony forming units. The efficiency of the multiplex PCR was evaluated by detecting natural-occurring Salmonella isolates from a chicken farm. The results demonstrated that the established multiplex PCR was able to identify S. Gallinarum and S. Pullorum individually, with results being consistent with traditional serotyping and biochemical testing. These results demonstrated that a highly accurate and simple biovar-specific multiplex PCR assay could be performed for the rapid identification and discrimination of Salmonella biovars Gallinarum and Pullorum, which will be useful, particularly under massive screening situations.
机译:肠道沙门氏菌血清变种Gallorrum biovars Pullorum(S. Pullorum)和Gallinarum(S. Gallinarum)可能分别导致禽类中的白痢病和禽类伤寒,并在许多发展中国家造成家禽相当的经济损失。传统的沙门氏菌血清分型是一个费时,费力且昂贵的过程,并且无法使用传统的血清学方法来区分这两个生物变种。在这项研究中,我们开发了一种快速,可靠的一步多元聚合酶链反应(PCR)分析方法,可同时识别和区分生物变种Pullorum和Gallinarum。多重PCR方法着眼于三个特定基因stn,I137_08605和ratA。根据生物信息学分析,我们发现基因I137_08605仅存在于S. Pullorum和S. Gallinarum中,与S. Gallinarum和其他沙门氏菌血清型相比,ratA的差异区域仅在S. Pullorum中被删除。为多重PCR系统设计了对这三个基因特异的三对引物,并确定了它们的选择性和敏感性。多重PCR结果表明,可以从所有测试菌株中正确鉴定和鉴别出白痢链球菌和鸡沙门氏菌,包括124株不同的沙门氏菌血清型和42株不同的非沙门氏菌菌株。 em>病原体。此外,这种多重PCR分析可以检测到最小的基因组DNA浓度为67.4 pg /μL,并具有100个菌落形成单位。通过检测来自养鸡场的天然沙门氏菌分离株,评估了多重PCR的效率。结果表明,建立的多重PCR能够分别鉴定 S。 Gallinarum和 S。 Pullorum,结果与传统的血清分型和生化检测一致。这些结果表明,可以进行高度准确和简单的生物var特异性多重PCR测定法,以快速鉴定和鉴别沙门氏菌生物gallinarum和Pullorum,这将很有用,特别是在大规模筛选的情况下。

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