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环介导等温扩增技术检测密执安棒杆菌亚种密歇根亚种 micA 基因具有高度特异性。

Loop-mediated amplification of the Clavibacter michiganensis subsp. michiganensis micA gene is highly specific.

出版信息

Phytopathology. 2013 Dec;103(12):1220-6. doi: 10.1094/PHYTO-03-13-0078-R.

Abstract

Loop-mediated amplification (LAMP) was used to specifically identify Clavibacter michiganensis subsp. michiganensis, causal agent of bacterial canker of tomato. LAMP primers were developed to detect micA, a chromosomally stable gene that encodes a type II lantibiotic, michiganin A, which inhibits growth of other C. michiganensis subspecies. In all, 409 bacterial strains (351 C. michiganensis subsp. michiganensis and 58 non-C. michiganensis subsp. michiganensis) from a worldwide collection were tested with LAMP to determine its specificity. LAMP results were compared with genetic profiles established using polymerase chain reaction (PCR) amplification of seven genes (dnaA, ppaJ, pat-1, chpC, tomA, ppaA, and ppaC). C. michiganensis subsp. michiganensis strains produced eight distinct profiles. The LAMP reaction identified all C. michiganensis subsp. michiganensis strains and discriminated them from other C. michiganensis subspecies and non-Clavibacter bacteria. LAMP has advantages over immunodiagnostic and other molecular detection methods because of its specificity and isothermal nature, which allows for easy field application. The LAMP reaction is also not affected by as many inhibitors as PCR. This diagnostic tool has potential to provide an easy, one-step test for rapid identification of C. michiganensis subsp. michiganensis.

摘要

环介导等温扩增(LAMP)被用于特异性鉴定番茄细菌性溃疡病的病原体密执安棒杆菌密执安亚种。LAMP 引物是针对编码 II 型细菌素米加宁 A 的染色体稳定基因 micA 开发的,米加宁 A 能抑制其他密执安棒杆菌亚种的生长。利用 LAMP 检测了来自全球范围内收集的 409 株细菌(351 株密执安棒杆菌密执安亚种和 58 株非密执安棒杆菌密执安亚种),以确定其特异性。将 LAMP 结果与使用聚合酶链反应(PCR)扩增 7 个基因(dnaA、ppaJ、pat-1、chpC、tomA、ppaA 和 ppaC)建立的遗传图谱进行比较。密执安棒杆菌密执安亚种菌株产生了 8 种不同的图谱。LAMP 反应可识别所有密执安棒杆菌密执安亚种菌株,并将其与其他密执安棒杆菌亚种和非棒杆菌属细菌区分开来。与免疫诊断和其他分子检测方法相比,LAMP 具有特异性和等温性质的优势,这使其易于在现场应用。LAMP 反应也不像 PCR 那样受到那么多抑制剂的影响。这种诊断工具具有提供快速鉴定密执安棒杆菌密执安亚种的简便一步式检测的潜力。

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