首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Use of Multiplex Terminal Restriction Fragment Length Polymorphism for Rapid and Simultaneous Analysis of Different Components of the Soil Microbial Community▿
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Use of Multiplex Terminal Restriction Fragment Length Polymorphism for Rapid and Simultaneous Analysis of Different Components of the Soil Microbial Community▿

机译:利用多重末端限制片段长度多态性快速同时分析土壤微生物群落的不同组成部分▿

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摘要

A multiplex terminal restriction fragment length polymorphism (M-TRFLP) fingerprinting method was developed and validated for simultaneous analysis of the diversity and community structure of two or more microbial taxa (up to four taxa). The reproducibility and robustness of the method were examined using soil samples collected from different habitats. DNA was PCR amplified separately from soil samples using individual taxon-specific primers for bacteria, archaea, and fungi. The same samples were also subjected to a multiplex PCR with the primers for all three taxa. The terminal restriction fragment length polymorphism profiles generated for the two sets of PCR products were almost identical not only in terms of the presence of peaks but also in terms of the relative peak intensity. The M-TRFLP method was then used to investigate rhizosphere bacterial, fungal, and rhizobial/agrobacterial communities associated with the dwarf shrub Calluna vulgaris growing in either open moorland, a mature pine forest, or a transition zone between these two habitats containing naturally regenerating pine trees. Rhizosphere microbial communities associated with Vaccinium myrtillus collected from the native pine forest were also investigated. In this study, individual PCR products from the three taxa were also pooled before restriction digestion and fragment size analysis. The terminal restriction fragment length polymorphism profiles obtained with PCR products amplified individually and with multiplexed and pooled PCR products were found to be consistent with each other in terms of the number, position, and relative intensity of peaks. The results presented here confirm that M-TRFLP analysis is a highly reproducible and robust molecular tool for simultaneous investigation of multiple taxa, which allows more complete and higher resolution of microbial communities to be obtained more rapidly and economically.
机译:开发并验证了多重末端限制片段长度多态性(M-TRFLP)指纹图谱方法,用于同时分析两个或多个微生物分类群(最多四个分类群)的多样性和群落结构。使用从不同栖息地收集的土壤样品检查了该方法的重现性和耐用性。使用针对细菌,古细菌和真菌的个别分类群特异性引物,从土壤样品中分别扩增DNA。同样的样品也用所有三个分类单元的引物进行多重PCR。为两组PCR产物产生的末端限制性片段长度多态性谱不仅在峰的存在方面而且在相对峰强度方面几乎相同。然后使用M-TRFLP方法研究与生长在开阔的荒地,成熟的松树林或这两个包含天然再生松树的生境之间的过渡带中的矮生灌木印度una菜相关的根际细菌,真菌和根瘤菌/农杆菌群落树木。还调查了与从天然松林中收集的牛痘苗相关的根际微生物群落。在这项研究中,在限制酶切消化和片段大小分析之前,还将来自三个分类单元的单个PCR产物合并在一起。发现用单独扩增的PCR产物以及用多重和合并的PCR产物获得的末端限制性片段长度多态性谱在峰的数目,位置和相对强度方面彼此一致。此处显示的结果证实,M-TRFLP分析是用于同时研究多个分类群的高度可重复且强大的分子工具,可更快速,更经济地获得更完整和更高分辨率的微生物群落。

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