巢式PCR、多重PCR和环介导等温扩增技术在桉树上的快速检测

T. Qiao, Jing Zhang, Shujiang Li, Shan Han, T. Zhu
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引用次数: 6

摘要

近年来,桉树枯梢病在中国和其他国家的大片桉树种植区发生。在制定有效的防治计划之前,需要快速、简单、可靠的诊断技术来早期检测桉树枯梢病。为此,本研究建立了基于1- α因子(tef1)和β -微管蛋白基因的三种PCR检测方法:巢式PCR、多重PCR、环介导等温扩增(LAMP)。3种方法均对鸢尾草具有较高的特异性。巢式PCR和LAMP的灵敏度远高于多重PCR。多重PCR的敏感性也高于常规PCR。LAMP法可在60 min内检测到桉叶枯病菌,其余两种方法至少需要2 h。以不同桉树组织作为检测样本,三种PCR方法的检测结果均明显优于常规PCR。基于本研究结果,我们认为三种基于pcr的方法均可作为诊断技术,用于开发有效的桉树枯梢病防治策略。其中LAMP法具有一步反应快、操作简单、单管利用、扩增产物可视化简单等优点,是现场应用中最实用的方法。
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Development of Nested PCR, Multiplex PCR, and Loop-Mediated Isothermal Amplification Assays for Rapid Detection of Cylindrocladium scoparium on Eucalyptus
Eucalyptus dieback disease, caused by Cylindrocladium scoparium, has occurred in last few years in large Eucalyptus planting areas in China and other countries. Rapid, simple, and reliable diagnostic techniques are desired for the early detection of Eucalyptus dieback of C. scoparium prior to formulation of efficient control plan. For this purpose, three PCR-based methods of nested PCR, multiplex PCR, loop-mediated isothermal amplification (LAMP) were developed for detection of C. scoparium based on factor 1-alpha (tef1) and beta-tubulin gene in this study. All of the three methods showed highly specific to C. scoparium. The sensitivities of the nested PCR and LAMP were much higher than the multiplex PCR. The sensitivity of multiplex PCR was also higher than regular PCR. C. scoparium could be detected within 60 min from infected Eucalyptus plants by LAMP, while at least 2 h was needed by the rest two methods. Using different Eucalyptus tissues as samples for C. scoparium detection, all of the three PCR-based methods showed much better detection results than regular PCR. Base on the results from this study, we concluded that any of the three PCR-based methods could be used as diagnostic technology for the development of efficient strategies of Eucalyptus dieback disease control. Particularly, LAMP was the most practical method in field application because of its one-step and rapid reaction, simple operation, single-tube utilization, and simple visualization of amplification products.
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