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用于鉴定 Juniperiella picoae 和 Lefebvreiella juniperi 的种特异性 ITS 引物,以及使用巢式 PCR 检测植物中的 Juniperiella picoae。

Species-specific ITS primers for the identification of Picoa juniperi and Picoa lefebvrei and using nested-PCR for detection of P. juniperi in planta.

机构信息

Department of Plant Protection, College of Agriculture, Razi University, Kermanshah, Iran,

出版信息

Mol Biol Rep. 2013 Oct;40(10):5701-12. doi: 10.1007/s11033-013-2672-6. Epub 2013 Sep 25.

Abstract

Desert truffles, hypogeous Pezizales (Ascomycota), are difficult to identify due to evolutionary convergence of morphological characters among taxa that share a similar habitat and mode of spore dispersal. Also, during their symbiotic phase, these are barely distinguishable morphologically, and molecular probes are needed for their identification. We have developed a PCR-based method for the identification of Picoa juniperi and Picoa lefebvrei based on internal transcribed spacers of rDNA. Two PCR primers specific for P. lefebvrei (FLE/RLE) and two specific for P. juniperi (FJU/RJU) were designed. A collection of samples from different geographical areas representing diversity of these species were examined for unique regions of internal transcribed spacers 1, 2 and 5.8S gene of rDNA (ITS) compared to other closely related species. Annealing temperatures and extension times were optimized for each set of primers for maximum specificity and efficiency. They proved to be efficient to specifically detect the presence of P. juniperi and P. lefebvrei by PCR and neither set amplified purified DNA from other truffle species as well as some ascomycetous fungi. The partial small subunit of ribosomal DNA genes of P. juniperi were amplified with the genomic DNA extracted from Helianthemum ledifolium var. ledifolium roots by nested polymerase chain reaction (PCR) using the universal fungal primer pair ITS1/ITS4 and specific primer pair FTC/RTC, which was designed based on internal transcribed spacer 1, 2 and 5.8S gene of rDNA sequences of P juniperi. The nested-PCR was sensitive enough to re-amplify the direct-PCR product, resulting in a DNA fragment of 426 bp. The efficacy of nested-PCR showed that it could re-amplify the direct-PCR product and detect 200 fg genomic DNA.

摘要

荒漠块菌,地下盘菌目(子囊菌门),由于具有相似生境和孢子传播方式的类群在形态特征上存在趋同进化,因此难以识别。此外,在共生阶段,这些类群在形态上几乎无法区分,需要使用分子探针进行鉴定。我们已经开发了一种基于 PCR 的方法,用于鉴定 Picoa juniperi 和 Picoa lefebvrei,该方法基于 rDNA 的内部转录间隔区。设计了两对针对 P. lefebvrei(FLE/RLE)和两对针对 P. juniperi(FJU/RJU)的 PCR 引物。从不同地理区域收集的代表这些物种多样性的样本,用于比较内部转录间隔区 1、2 和 5.8S 基因(ITS)与其他密切相关物种的独特区域。针对每组引物进行了退火温度和延伸时间的优化,以获得最大的特异性和效率。事实证明,它们通过 PCR 有效地特异性检测 P. juniperi 和 P. lefebvrei 的存在,并且没有一组引物扩增其他块菌物种以及一些子囊菌真菌的纯化物 DNA。使用通用真菌引物对 ITS1/ITS4 和基于 rDNA 的 ITS1、2 和 5.8S 基因序列设计的特异性引物对 FTC/RTC,从 Helianthemum ledifolium var. ledifolium 根部提取的基因组 DNA 对 P. juniperi 的小亚基核糖体 DNA 基因进行了嵌套聚合酶链反应(PCR)扩增。嵌套 PCR 足够灵敏,可以重新扩增直接 PCR 产物,得到 426 bp 的 DNA 片段。嵌套 PCR 的功效表明它可以重新扩增直接 PCR 产物并检测 200 fg 基因组 DNA。

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