Instituto de Ciencia y Tecnología Dr. Cesar Milstein, Fundación Pablo Cassará, Consejo Nacional de Investigaciones Científicas y Técnicas, Saladillo, Ciudad de Buenos Aires, Argentina.
BMC Microbiol. 2010 Jun 18;10:176. doi: 10.1186/1471-2180-10-176.
Citrus Bacterial Canker (CBC) is a major, highly contagious disease of citrus plants present in many countries in Asia, Africa and America, but not in the Mediterranean area. There are three types of Citrus Bacterial Canker, named A, B, and C that have different genotypes and posses variation in host range within citrus species. The causative agent for type A CBC is Xanthomonas citri subsp. citri, while Xanthomonas fuscans subsp. aurantifolii, strain B causes type B CBC and Xanthomonas fuscans subsp. aurantifolii strain C causes CBC type C. The early and accurate identification of those bacteria is essential for the protection of the citrus industry. Detection methods based on bacterial isolation, antibodies or polymerase chain reaction (PCR) have been developed previously; however, these approaches may be time consuming, laborious and, in the case of PCR, it requires expensive laboratory equipment. Loop-mediated isothermal amplification (LAMP), which is a novel isothermal DNA amplification technique, is sensitive, specific, fast and requires no specialized laboratory equipment.
A loop-mediated isothermal amplification assay for the diagnosis of Citrus Bacterial Canker (CBC-LAMP) was developed and evaluated. DNA samples were obtained from infected plants or cultured bacteria. A typical ladder-like pattern on gel electrophoresis was observed in all positive samples in contrast to the negative controls. In addition, amplification products were detected by visual inspection using SYBRGreen and using a lateral flow dipstick, eliminating the need for gel electrophoresis. The sensitivity and specificity of the assay were evaluated in different conditions and using several sample sources which included purified DNA, bacterium culture and infected plant tissue. The sensitivity of the CBC-LAMP was 10 fg of pure Xcc DNA, 5 CFU in culture samples and 18 CFU in samples of infected plant tissue. No cross reaction was observed with DNA of other phytopathogenic bacteria. The assay was capable of detecting CBC-causing strains from several geographical origins and pathotypes.
The CBC-LAMP technique is a simple, fast, sensitive and specific method for the diagnosis of Citrus Bacterial Canker. This method can be useful in the phytosanitary programs of the citrus industry worldwide.
柑橘细菌性溃疡病(CBC)是一种主要的、高度传染性疾病,存在于亚洲、非洲和美洲的许多国家,但在地中海地区不存在。柑橘细菌性溃疡病有三种类型,分别命名为 A、B 和 C,它们具有不同的基因型,并且在柑橘属物种内具有宿主范围的变化。A 型 CBC 的病原体是柑橘黄单胞菌亚种。柑橘,而黄单胞菌 fuscans 亚种。aurantifolii,菌株 B 引起 B 型 CBC,黄单胞菌 fuscans 亚种。aurantifolii 菌株 C 引起 C 型 CBC。早期和准确识别这些细菌对于保护柑橘产业至关重要。以前已经开发了基于细菌分离、抗体或聚合酶链反应(PCR)的检测方法;然而,这些方法可能耗时、费力,并且在 PCR 的情况下,它需要昂贵的实验室设备。环介导等温扩增(LAMP)是一种新型的等温 DNA 扩增技术,具有敏感性、特异性、快速性,并且不需要特殊的实验室设备。
开发并评估了一种用于诊断柑橘细菌性溃疡病(CBC-LAMP)的环介导等温扩增检测方法。从感染的植物或培养的细菌中获得 DNA 样本。在所有阳性样本中,电泳均观察到典型的梯状图案,而阴性对照则没有。此外,通过使用 SYBRGreen 进行目视检查和使用侧向流动试纸条检测扩增产物,无需进行凝胶电泳。在不同条件下并使用几种样品来源(包括纯化的 DNA、细菌培养物和感染植物组织)评估了该检测方法的灵敏度和特异性。该检测方法的灵敏度为 10 fg 纯 Xcc DNA、培养样品中的 5 CFU 和感染植物组织样品中的 18 CFU。与其他植物病原菌的 DNA 没有交叉反应。该检测方法能够检测来自多个地理位置和致病型的 CBC 致病菌株。
CBC-LAMP 技术是一种简单、快速、灵敏和特异的柑橘细菌性溃疡病诊断方法。该方法可用于全球柑橘产业的植物检疫计划。