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首页> 外文期刊>European Journal of Plant Pathology >Development of the simultaneous detection of Ralstonia solanacearum race 3 and Clavibacter michiganensis subsp. sepedonicus in potato tubers by a multiplex real-time PCR assay.
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Development of the simultaneous detection of Ralstonia solanacearum race 3 and Clavibacter michiganensis subsp. sepedonicus in potato tubers by a multiplex real-time PCR assay.

机译:发展同时检测青枯雷尔氏菌第3种族和密歇根克氏杆菌亚种。多重实时荧光定量PCR检测马铃薯块茎中的败血症。

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摘要

Clavibacter michiganensis subsp. sepedonicus and Ralstonia solanacearum (Smith) Yabuuchi et al. race 3 are the causal agents of ring-rot and brown-rot of potato respectively. These diseases represent a serious threat to potato production in temperate climates. Both bacteria are listed as A2 pests in the EPPO region and as zero-tolerance quarantine organisms in the European Union. All the detection tests developed so far were only focused on the detection of a single pathogen while the absence of both bacteria has to be certified in the seed tubers. We have therefore developed a new multiplex real-time PCR assay to simultaneously detect both bacteria in a single assay. Additionally, the reliability of this molecular diagnostic test has been improved by the simultaneous amplification of an internal control, corresponding to a potato gene co-extracted from the sample. The polyvalence and the specificity of each set of bacterial primers and probes were evaluated on more than 90 bacterial strains. The limit of detection of this triplex real-time protocol was similar to those observed with other molecular protocols previously developed for the individual detection of one of these bacteria. A concordance of 100% was obtained in a blind test mimicking the routine application of the technology. In conclusion, this new protocol represents a straightforward and convenient method potentially adapted to primary screening of potato tubers.
机译:密歇根棒状杆菌亚种。 sepedonicus和Ralstonia solanacearum(Smith)Yabuuchi等。第三种族分别是马铃薯的环腐病和褐腐病的病因。这些疾病对温带气候下的马铃薯生产构成了严重威胁。两种细菌在EPPO地区均被列为A2有害生物,在欧盟被列为零容忍检疫生物。到目前为止,所有开发的检测测试都只针对单一病原体的检测,而在种子块茎中则必须对两种细菌的​​缺失进行鉴定。因此,我们开发了一种新的多重实时PCR测定法,可在一次测定中同时检测两种细菌。另外,通过同时扩增对应于从样品中共同提取的马铃薯基因的内部对照,该分子诊断测试的可靠性得到了提高。在90多个细菌菌株上评估了每组细菌引物和探针的多价和特异性。这种三重实时协议的检测极限与先前针对其他细菌之一的单独检测开发的其他分子协议观察到的极限相似。在模拟该技术的常规应用的盲测中获得了100%的一致性。总之,该新方案代表了一种可能适用于马铃薯块茎初步筛选的直接简便的方法。

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