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Internal transcribed spacer 2 amplicon as a molecular marker for identification of Peronospora parasitica (crucifer downy mildew)

机译:内部转录间隔区2扩增子作为鉴定寄生虫(十字花科霜霉病)的分子标记

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Aims: The purpose of the study was to characterize the internal transcribed spacer (ITS) regions of Peronospora parasitica (crucifer downy mildew) in order to evaluate their potential as molecular markers for pathogen identification. Methods and Results: PCR amplification of ribosomal RNA gene block (rDNA) spacers (ITS1 and ITS2) performed in 44 P. parasitica isolates from different Brassica oleracea cultivars and distinct geographic origins, revealed no length polymorphisms. ITS restriction analysis with three endonucleases, confirmed by sequencing, showed no fragment length polymorphisms among isolates. Furthermore, ITS amplification with DNA isolated from infected host tissues also allowed the detection of the fungus in incompatible interactions. The combination of the universal ITS4 and ITS5 primers, for amplification of full ITS, with a new specific forward internal primer for ITS2 (PpITS2F), originates a P. parasitica specific amplicon, suitable for diagnosis. Conclusions: As ITS2 regions of P. parasitica, B. oleracea, other B. oleracea fungal pathogens and other Peronospora species are clearly distinct, a fast and reliable molecular identification method based on multiplex PCR amplification of full ITS and P. parasitica ITS2 is proposed for the diagnosis of crucifer downy mildew. Significance and Impact of the Study: The method can be applied to diagnose the disease in the absence of fungal reproductive structures, thus being useful to detect nonsporulating interactions, early stages of infection on seedlings, and infected young leaves packed in sealed plastic bags. Screening of seed stocks in sanitary control is also a major application of this diagnostic method.
机译:目的:本研究的目的是鉴定寄生小孢子菌(十字花科霜霉病)的内部转录间隔区(ITS)区域,以评估其作为病原体鉴定分子标记的潜力。方法和结果:在来自不同芸苔属品种和不同地理起源的44种寄生毕赤酵母分离物中进行的核糖体RNA基因区间隔区(ITS1和ITS2)的PCR扩增显示没有长度多态性。测序证实,使用三种核酸内切酶的ITS限制性酶切分析表明,分离株之间没有片段长度多态性。此外,用从感染宿主组织中分离的DNA进行的ITS扩增还可以检测到互不兼容的真菌。用于扩增完整ITS的通用ITS4和ITS5引物与ITS2的新特异性正向内部引物(PpITS2F)结合使用,可形成寄生疟原虫特异性扩增子,适用于诊断。结论:由于寄生虫假单胞菌,油菜假单胞菌,其他油菜假单胞菌真菌病原体和其他Peronospora物种的ITS2区明显不同,提出了一种基于多重PCR扩增完整ITS和寄生虫假单胞菌ITS2的快速可靠的分子鉴定方法。用于诊断十字花科霜霉病。研究的意义和影响:该方法可用于在没有真菌生殖结构的情况下诊断疾病,因此可用于检测非孢子相互作用,幼苗感染的早期阶段以及装在密封塑料袋中的被感染幼叶。在卫生控制中筛选种子库也是该诊断方法的主要应用。

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