首页> 外文期刊>Journal of applied microbiology >Simultaneous detection and identification of the Xanthomonas species complex associated with tomato bacterial spot using species-specific primers and multiplex PCR.
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Simultaneous detection and identification of the Xanthomonas species complex associated with tomato bacterial spot using species-specific primers and multiplex PCR.

机译:使用物种特异性引物和多重PCR同时检测和鉴定与番茄细菌斑病相关的Xanthomonas物种复合体。

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Aims: To establish protocols for the simultaneous detection and identification of Xanthomonas species causing tomato bacterial spot. Methods and Results: We verified the specificity and sensitivity of the previously reported sets of primers designed for strains of the four species of Brazilian tomato bacterial spot xanthomonads, consisting of 30 of Xanthomonas euvesicatoria, 30 of X. vesicatoria, 50 of X. perforans and 50 of X. gardneri. Furthermore, we tested a multiplex PCR protocol for the purpose of concurrent species identification. The possibility of direct detection of the pathogens in diseased leaf samples was also verified. The primers were highly specific, amplifying only target DNA. The sensitivity of the primers in conventional PCR was 50 pg micro l-1 for purified DNA and ranged from 5x102 to 5x104 CFU ml-1 when bacterial suspensions were analysed. The multiplex PCR was suitable for the detection of all four species and showed similar sensitivity to conventional PCR when tested on purified DNA. When using bacterial suspensions, its sensitivity was similar to conventional PCR only when a biological amplification step (Bio-PCR) was included. Both methods were able to detect the pathogens in symptomatic tomato leaves. Conclusions: Brazilian Xanthomonas strains causing tomato bacterial spot can be differentiated and identified at species level by a PCR-based method and by a multiplex PCR. Significance and Impact of the Study: This protocol may be a feasible alternative tool for the identification and detection of these pathogens in plant material and may be used for routine diagnostic purposes in plant pathology laboratories.
机译:目的:建立同时检测和鉴定引起番茄细菌斑的黄单胞菌种的方案。方法和结果:我们验证了先前报道的针对巴西番茄细菌斑点黄单胞菌四种物种的菌株设计的引物的特异性和敏感性,该菌株由30株黄单胞菌,30株黄单胞菌,50株黑斑病和X. gardneri 50。此外,我们测试了多重PCR协议,以同时进行物种鉴定。还证实了直接检测病叶样品中病原体的可能性。引物是高度特异性的,仅扩增靶DNA。常规PCR引物对纯化DNA的敏感性为50 pg micro l -1 ,范围为5x10 2 至5x10 4 CFU ml < sup> -1 分析细菌悬浮液。多重PCR适用于所有四个物种的检测,并在纯化的DNA上进行测试时显示出与常规PCR相似的灵敏度。当使用细菌悬液时,仅当包括生物扩增步骤(Bio-PCR)时,其敏感性才与常规PCR相似。两种方法都能够检测有症状番茄叶片中的病原体。结论:可通过基于PCR的方法和多重PCR在物种水平上区分和鉴定引起番茄细菌斑的巴西Xanthomonas菌株。研究的意义和影响:该协议可能是用于识别和检测植物材料中这些病原体的可行替代工具,并且可以用于植物病理实验室的常规诊断目的。

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