首页> 外文期刊>Journal of Microbiological Methods >A new semi-nested PCR protocol to amplify large 18S rRNA gene fragments for PCR-DGGE analysis of soil fungal communities
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A new semi-nested PCR protocol to amplify large 18S rRNA gene fragments for PCR-DGGE analysis of soil fungal communities

机译:一种新的半嵌套式PCR规程,可扩增18S rRNA大片段,用于土壤真菌群落的PCR-DGGE分析

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摘要

The analysis of soil fungal communities by molecular fingerprinting and subsequent identification of the underlying populations require the amplification of a phylogenetically informative gene fragment. In this study we tested the reliability and suitability of the previously published fungal primer combination (NS1/FR1-GC) that amplifies almost the entire 18S rRNA gene for the DGGE analysis of fungal communities in soil samples from 36 sites. This direct PCR system failed to amplify the fragment of interest from the total DNA extracted from most of the soils tested. Thus, we developed a new semi-nested PCR system based on the initial amplification of over 1700 bp of the 18S rRNA gene with a new primer combination, followed by a subsequent amplification with NS1/FR1-GC. By means of the PCR approach developed in this study distinct 18S rRNA gene amplicons could be reproducibly generated for all soil samples. Amplification tests with 101 soil fungal isolates showed that with the new semi-nested system 18S rRNA gene fragments could be obtained from more fungi than with the direct approach. The subsequent DGGE separation of community amplicons resulted in a high resolution and revealed reproducible complex soil fungal communities specific for each site, despite a minor variability between replicates of the same sample. The semi-nested PCR system developed in this study, coupled with DGGE fingerprinting, offers a robust, reliable and sensitive tool for the analysis of soil fungal community structure.
机译:通过分子指纹分析对土壤真菌群落进行分析并随后对潜在种群进行鉴定,需要对系统发育信息基因片段进行扩增。在这项研究中,我们测试了以前发布的真菌引物组合(NS1 / FR1-GC)的可靠性和适用性,该组合扩增了几乎整个18S rRNA基因,用于DGGE分析来自36个地点的土壤样品中的真菌群落。这种直接PCR系统无法从大多数被测土壤中提取的总DNA中扩增出目标片段。因此,我们开发了一种新的半巢式PCR系统,该系统基于18S rRNA基因超过1700 bp的初始扩增,并使用了新的引物组合,随后再用NS1 / FR1-GC进行扩增。通过在这项研究中开发的PCR方法,可以为所有土壤样品可重复生成不同的18S rRNA基因扩增子。用101种土壤真菌分离株进行的扩增试验表明,与直接方法相比,使用新的半巢式系统可以从更多的真菌中获得18S rRNA基因片段。随后的DGGE社区扩增子分离产生了高分辨率,并且揭示了每个位点特异的可重现的复杂土壤真菌群落,尽管同一样品重复之间的变异很小。这项研究中开发的半嵌套式PCR系统与DGGE指纹图谱相结合,为分析土壤真菌群落结构提供了强大,可靠和灵敏的工具。

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