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基于线粒体基因排列差异开发用于疫霉属和种特异性检测的多重检测方法。

Development of a multiplex assay for genus- and species-specific detection of Phytophthora based on differences in mitochondrial gene order.

作者信息

Bilodeau Guillaume J, Martin Frank N, Coffey Michael D, Blomquist Cheryl L

出版信息

Phytopathology. 2014 Jul;104(7):733-48. doi: 10.1094/PHYTO-09-13-0263-R.

Abstract

A molecular diagnostic assay for Phytophthora spp. that is specific, sensitive, has both genus- and species-specific detection capabilities multiplexed, and can be used to systematically develop markers for detection of a wide range of species would facilitate research and regulatory efforts. To address this need, a marker system was developed based on the high copy sequences of the mitochondrial DNA utilizing gene orders that were highly conserved in the genus Phytophthora but different in the related genus Pythium and plants to reduce the importance of highly controlled annealing temperatures for specificity. An amplification primer pair designed from conserved regions of the atp9 and nad9 genes produced an amplicon of ≈340 bp specific for the Phytophthora spp. tested. The TaqMan probe for the genus-specific Phytophthora test was designed from a conserved portion of the atp9 gene whereas variable intergenic spacer sequences were used for designing the species-specific TaqMan probes. Specific probes were developed for 13 species and the P. citricola species complex. In silico analysis suggests that species-specific probes could be developed for at least 70 additional described and provisional species; the use of locked nucleic acids in TaqMan probes should expand this list. A second locus spanning three tRNAs (trnM-trnP-trnM) was also evaluated for genus-specific detection capabilities. At 206 bp, it was not as useful for systematic development of a broad range of species-specific probes as the larger 340-bp amplicon. All markers were validated against a test panel that included 87 Phytophthora spp., 14 provisional Phytophthora spp., 29 Pythium spp., 1 Phytopythium sp., and 39 plant species. Species-specific probes were validated further against a range of geographically diverse isolates to ensure uniformity of detection at an intraspecific level, as well as with other species having high levels of sequence similarity to ensure specificity. Both diagnostic assays were also validated against 130 environmental samples from a range of hosts. The only limitation observed was that primers for the 340 bp atp9-nad9 locus did not amplify Phytophthora bisheria or P. frigida. The identification of species present in a sample can be determined without the need for culturing by sequencing the genus-specific amplicon and comparing that with a reference sequence database of known Phytophthora spp.

摘要

一种针对疫霉属物种的分子诊断检测方法,该方法具有特异性、灵敏性,具备属特异性和种特异性检测能力且可多重检测,并且能够用于系统性地开发用于检测多种物种的标记,这将有助于研究和监管工作。为满足这一需求,基于线粒体DNA的高拷贝序列开发了一种标记系统,利用疫霉属中高度保守但在相关腐霉属和植物中不同的基因顺序,以降低对高度严格的退火温度以保证特异性的要求。从atp9和nad9基因的保守区域设计的一对扩增引物产生了一个约340 bp的扩增子,该扩增子对所测试的疫霉属物种具有特异性。用于疫霉属特异性检测的TaqMan探针是根据atp9基因的一个保守部分设计的,而可变的基因间隔序列则用于设计种特异性TaqMan探针。针对13个物种和柑橘疫霉物种复合体开发了特异性探针。计算机分析表明,至少还可为另外70个已描述和暂定的物种开发种特异性探针;在TaqMan探针中使用锁核酸应会扩大这个列表。还评估了一个跨越三个tRNA(trnM-trnP-trnM)的第二个位点的属特异性检测能力。该位点为206 bp,对于广泛开发种特异性探针而言,其用途不如更大的340 bp扩增子。所有标记均针对一个测试组进行了验证,该测试组包括87个疫霉属物种、14个暂定疫霉属物种、29个腐霉属物种、1个根腐疫霉物种和39个植物物种。种特异性探针针对一系列地理上不同来源的分离株进一步进行了验证,以确保在种内水平检测的一致性,以及与其他具有高度序列相似性的物种进行验证以确保特异性。这两种诊断检测方法还针对来自一系列宿主的130个环境样本进行了验证。观察到的唯一局限性是,用于340 bp atp9-nad9位点的引物无法扩增毕氏疫霉或冷疫霉。通过对属特异性扩增子进行测序并与已知疫霉属物种的参考序列数据库进行比较,无需培养即可确定样本中存在的物种。

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