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目标特异性 PCR 引物可检测和区分与山齿小蠹(Dendroctonus ponderosae)相关的微生物群落中的拟盘多毛孢真菌。

Target-specific PCR primers can detect and differentiate ophiostomatoid fungi from microbial communities associated with the mountain pine beetle Dendroctonus ponderosae.

机构信息

University of British Columbia, Vancouver, BC, Canada.

出版信息

Fungal Biol. 2010 Oct;114(10):825-33. doi: 10.1016/j.funbio.2010.08.001. Epub 2010 Aug 7.

Abstract

The aim of this study was to develop DNA probes that could identify the major fungal species associated with mountain pine beetles (MPB). The beetles are closely associated with fungal species that include ophiostomatoid fungi that can be difficult to differentiate morphologically. The most frequently isolated associates are the pine pathogens Grosmannia clavigera and Leptographium longiclavatum, the less pathogenic Ophiostoma montium, and an undescribed Ceratocystiopsis species (Cop. sp.). Because growing, isolating and extracting DNA from fungi vectored by MPB can be time and labour intensive, we designed three rDNA primer sets that specifically amplify short rDNA amplicons from O. montium, Cop. sp. and the pine Leptographium clade. We also designed two primer sets on a gene of unknown function that can differentiate G. clavigera and L. longiclavatum. We tested the primers on 76 fungal isolates that included MPB associates. The primers reliably identified their targets from DNA obtained from pure fungal cultures, pulverized beetles, beetle galleries, and tree phloem inoculated with G. clavigera. The primers will facilitate large-scale work on the ecology of the MPB-fungal-lodgepole pine ecosystem, as well as phytosanitary/quarantine sample screening.

摘要

本研究旨在开发能够识别与山松甲虫(MPB)相关的主要真菌物种的 DNA 探针。这些甲虫与真菌物种密切相关,包括形态上难以区分的杆孢腔菌。最常分离到的伴生物种是松病原菌 Grosmannia clavigera 和 Leptographium longiclavatum、致病性较低的 Ophiostoma montium 以及一种未描述的 Ceratocystiopsis 物种(Cop. sp.)。由于培养、分离和提取受 MPB 传播的真菌的 DNA 既耗时又费力,我们设计了三套 rDNA 引物组,可特异性扩增来自 O. montium、Cop. sp. 和松 Leptographium 分支的短 rDNA 扩增子。我们还设计了两套针对未知功能基因的引物组,可区分 G. clavigera 和 L. longiclavatum。我们在包括 MPB 伴生物种在内的 76 种真菌分离物上测试了这些引物。这些引物可从纯真菌培养物、粉碎的甲虫、甲虫坑道和接种了 G. clavigera 的树韧皮部中获得的 DNA 上可靠地识别其靶标。这些引物将促进对 MPB-真菌-黑云杉生态系统的生态学以及植物检疫/检疫样本筛选的大规模研究。

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