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Analysis of 16S rRNA Primer Systems for Profiling of Thermophilic Microbial Communities

机译:嗜热微生物群落分析16S rRNA引物系统的分析

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Thermophilic microorganisms are of special interest for phylogenetics and research in prokaryotic evolution, since many of them belong to deep branches of the tree of life. For this reason a number of broadly used universal primer systems for the 16S rRNA gene eliminate certain groups of thermophilic prokaryotes from their detection spectra. In the present work, the known 16S rRNA gene primer systems were analyzed in order to determine their ability to reveal members of deep phylogenetic lineages containing thermophilic microorganisms. It was shown that application of most of the published primer systems could result in elimination of certain groups of thermophilic prokaryotes. In silico analysis of existing primer systems was used to select the primer system for the V3-V4 region of the 16S rRNA gene, which minimized elimination of thermophilic prokaryotic groups. Comparison of the proposed system with the previously published ones was carried out using high-throughput sequencing. Statistical analysis of the sequencing results based on the Shannon and Chao1 indexes revealed high efficiency of the proposed system for analysis of microbial communities of Kamchatka hot springs.
机译:嗜热微生物对植物发育和转发过程中的研究具有特殊兴趣,因为其中许多属于生命之树的深枝。因此,对于16S rRNA基因的许多广泛使用的通用底漆系统消除了来自其检测光谱的某些嗜热原核。在本作工作中,分析了已知的16S RRNA基因引物系统以确定它们揭示含有嗜热微生物的深层系统发育谱系成员的能力。结果表明,大多数已发表的引物系统的应用可能导致消除某些嗜热原核生物组。在现有底漆系统的硅分析中,用于选择16S rRNA基因的V3-V4区域的引物系统,最小化嗜热原核基团的消除。使用高通量测序进行了先前公布的系统的所提出的系统的比较。基于Shannon和Chao1指标的测序结果统计分析显示了堪察加温泉分析的拟议系统的高效率。

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