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首页> 外文期刊>FEMS Microbiology Letters >Development of a nested PCR detection procedure for Nectria fuckeliana direct from Norway spruce bark extracts
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Development of a nested PCR detection procedure for Nectria fuckeliana direct from Norway spruce bark extracts

机译:挪威云杉树皮提取物对Nectria fuckeliana巢式PCR检测方法的开发

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A pair of primers specific for Nectria fuckeliana, a bark infecting pathogen predominantly of Norway spruce (Picea abies), were designed from comparisons of nucleotide sequences of the nuclear ribosomal internal transcribed spacer (ITS) regions of nine isolates from Norway, Lithuania, Switzerland, Austria, Slovakia, Scotland (Larix sp.) and New Zealand (Pinus radiata), and other closely related nectriaceous species, including Neo. Neomacrospora, and W. mammoidea, to which it exhibits taxonomic similarities. Complete ITS sequence homology was observed between each of the nine N. J fuckeliana isolates, regardless of geographic provenance, including a previously published Danish strain. Primers Cct1 and Cct2 consistently amplified a single product of 360 bp from DNA prepared from 20 isolates covering the principle range of the disease from Central and Northern Europe, but not from other Neonectria, Nectria' or a range of species commonly encountered in forest ecosystems, as well as P. abies or P. radiata DNA. A quick, simple and efficient mechanical lysis procedure for the extraction of high quality total DNA from bark, coupled with post-extraction polyvinylpolypyrrolidone (PVPP) chromatography purification, is described to facilitate successful PCR detection of N. fuckeliana direct from bark extracts. Detection of N. fuckeliana from bark preparations was only possible following nested PCR of PVPP purified extracts using universal primers ITS5 and 4 in first round amplification. The identity of products from bark tissues was confirmed by Southern hybridisation and sequencing. Using the above procedure, positive diagnosis of N. fuckeliana was achievable within 5 h and has the potential for full exploitation as both a forest management and ecological research tool. As the DNA extraction procedure described here has been successful in application against other tree species, it has potential for incorporation into other molecular diagnostic systems for other microorganisms responsible for other wood or tree bark diseases. (C) 2004 Federation of European Microbiological Societies. Published by Elsevier B.V. All rights reserved.
机译:通过比较来自挪威,立陶宛,瑞士,加拿大,加拿大,加拿大,加拿大,加拿大,加拿大,加拿大和加拿大的9个分离株的核糖体内部转录间隔区(ITS)区域的核苷酸序列,设计了一对针对Nectria fuckeliana(主要感染挪威云杉的病原体)的特异引物。奥地利,斯洛伐克,苏格兰(Larix sp。)和新西兰(Pinus radiata),以及其他近缘的黑藻物种,包括Neo。新大孢子虫和W. mammoidea,与之具有分类相似性。不论地理来源,包括先前发表的丹麦毒株,在9个N. J fuckeliana分离株之间均观察到完全ITS序列同源性。 Cct1和Cct2引物不断地从20种分离物中提取的DNA扩增出360 bp的单一产物,这些分离物涵盖了该疾病的主要范围,来自中欧和北欧,但没有从其他Neonectria,Nectria'或森林生态系统中常见的一系列物种中提取,以及假单胞菌或辐射假单胞菌DNA。描述了一种用于从树皮中提取高质量总DNA的快速,简单和有效的机械裂解程序,并结合萃取后的聚乙烯基聚吡咯烷酮(PVPP)色谱纯化,可促进成功地从树皮提取物中成功地检测鬼火猪笼草。只有在第一轮扩增中使用通用引物ITS5和4对PVPP纯化的提取物进行巢式PCR后,才有可能从树皮制品中检测出鬼臼病。通过Southern杂交和测序证实了来自树皮组织的产物的身份。使用上述程序,可以在5 h内对福建猪笼草进行阳性诊断,并有可能作为森林管理和生态研究工具得到充分利用。由于此处描述的DNA提取程序已成功应用于其他树种,因此有可能将其他与其他木材或树皮病有关的微生物的分子诊断系统并入其中。 (C)2004年欧洲微生物学会联合会。由Elsevier B.V.发布。保留所有权利。

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