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Novel set of real-time PCR primers for simultaneous detection of Liberibacter species associated with citrus Huanglongbing

机译:一套新颖的实时PCR引物,可同时检测与柑橘黄龙病相关的利比里亚细菌

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摘要

Huanglongbing (HLB), a devastating citrus disease caused by the bacterium “Candidatus Liberibacter spp.”, is now responsible for significant economic losses worldwide. Yet, no effective disease control has been found, and the non-cultivability of the bacterium has severely hampered studies on the pathogen. The 16S rDNA gene is a well-characterized sequence, essential for cell survival, and is used for bacterial identification or assignment of close relationships at the genus and species levels. Quantitative Real-Time PCR (qPCR) assays based on 16S rDNA genes are widely used in the detection of “Ca. Liberibacter spp.” in multiplex reactions. We have developed for the first time a set of qPCR primers based on the conserved 16S rDNA gene, which specifically and simultaneously detects in a singleplex reaction, all three bacterial species associated with HLB, and can differentiateCa.Liberibacter asiaticus or africanus from americanus by their characteristic melting curves. The assay is very sensitive, and it was possible to amplify expected DNA fragments with an efficiency of 98 % using the Syber Green system and a Ct value lower than tested methods for HLB diagnosis. The application of this fast, simple and efficient detection methodology could also be important in the detection of all species of HLB-associated Liberibacters and could contribute to early pathogen detection, a crucial step in the development of preventive strategies aimed at avoiding the dissemination of this devastating disease in HLB-free areas.
机译:黄龙病(HLB)是由“ Candidatus Liberibacter spp。”细菌引起的毁灭性柑橘病,目前已在全球造成重大经济损失。然而,尚未发现有效的疾病控制方法,并且细菌的不可培养性严重阻碍了对病原体的研究。 16S rDNA基因是一个良好表征的序列,对细胞存活至关重要,可用于细菌鉴定或在属和物种水平上分配紧密的关系。基于16S rDNA基因的定量实时PCR(qPCR)分析已广泛用于“ Ca. Liberibacter spp。”在多重反应中。我们首次基于保守的16S rDNA基因开发了一套qPCR引物,该引物在单重反应中特异性并同时检测到所有与HLB有关的三种细菌,并可以通过它们的区别从美洲白喉中分离出亚洲白喉或非洲白热杆菌。特征熔解曲线。该测定非常敏感,使用Syber Green系统可以以98%的效率扩增预期的DNA片段,其Ct值低于用于HLB诊断的测试方法。这种快速,简单和有效的检测方法的应用对于检测所有与HLB相关的自由杆菌的物种也可能很重要,并且有助于早期病原体检测,这是制定预防策略的关键一步,目的是避免这种疾病的传播。在无HLB的地区造成毁灭性疾病。

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