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首页> 外文期刊>FEMS Microbiology Ecology >16S rRNA gene-based primer pair showed high specificity and quantification accuracy in detecting freshwater Brocadiales anammox bacteria
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16S rRNA gene-based primer pair showed high specificity and quantification accuracy in detecting freshwater Brocadiales anammox bacteria

机译:16S rRNA基因的引物对在检测淡水组织厌氧菌细菌中显示出高特异性和定量准确度

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摘要

Anaerobic ammonium oxidizing (anammox) bacteria are widely distributed and contribute significantly to the global nitrogen cycle. Traditionally, identification and quantification based on the 16S rRNA gene were considered not reliable because of low 16S rRNA gene sequence identity within Brocadiales. Here we hypothesize that by using appropriate primers and methodology, 16S-based detection and quantification of anammox bacteria can be accurate. We modified an existing 16S rRNA gene-based primer pair (Amx694F-Amx960R) by changing one nucleotide (Amx694F position 18, G→C) (Amx694PF-Amx960R) so that they match the sequences of most Brocadiales anammox bacteria, and evaluated the modified primer pair with 29 freshwater samples from microcosms, anammox reactors and wastewater treatment plants of various geographical origins. The primer pair showed high specificity in detection and quantification of anammox populations in samples that contained >0.1% anammox bacteria. Quantification of anammox abundance by quantitative real-time PCR and delineation of anammox species by denaturing gradient gel electrophoresis agreed well with amplicon sequencing results. A clear shift of anammox population towards ‘Candidatus Kuenenia' was observed under laboratory cultivation conditions. With the help of amplicon sequencing, we demonstrated that 16S rRNA gene-based anammox-specific primers are able to achieve qualitative and quantitative monitoring of anammox communities in wastewater treatment plants and natural freshwater environments.2007;73:5261-7.
机译:厌氧铵氧化(厌氧毒素)细菌被广泛分布并显着贡献到全局氮循环。传统上,基于16S rRNA基因的鉴定和定量被认为是不可靠的,因为中腺内的16S rRNA基因序列同一性。在这里,我们假设通过使用适当的引物和方法,16s的厌氧细菌的检测和定量可以准确。我们通过改变一种核苷酸(AMX694F位置18,G→C)(AMX694PF-AMX960R)来修饰现有16S rRNA基因的引物对(AMX694F-AMX960R),使得它们与大多数女性的厌氧菌细菌的序列相匹配,并评估改进的引物对具有来自微观的29个淡水样品,厌氧反应器和各种地理起源的废水处理厂。引物对在含有> 0.1%厌氧菌细菌的样品中检测和定量厌氧群的检测和定量高特异性。通过定量实时PCR定量厌氧丰富通过使梯度凝胶电泳通过扩增子测序结果进行良好掺入厌氧物质的血清毒性。在实验室培养条件下,观察到厌氧人群对“Candidatus Kuenenia”的清晰转移。在扩增子测序的帮助下,我们证明了16S rRNA基因的厌氧毒素特异性引物能够在废水处理厂和天然淡水环境中实现对厌氧社区的定性和定量监测.2007; 73:5261-7。

著录项

  • 来源
    《FEMS Microbiology Ecology》 |2020年第3期|共11页
  • 作者单位

    Helmholtz Centre for Environmental Research - UFZ Isotope Biogeochemistry Leipzig Germany;

    Helmholtz Centre for Environmental Research - UFZ Isotope Biogeochemistry Leipzig Germany;

    National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology Beijing University of Technology Beijing China;

    Department of Civil and Environmental Engineering National University of Singapore Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

    anammox; primer; specificity; DGGE; qPCR; amplicon sequencing;

    机译:anammox;底漆;特异性;DGGE;QPCR;扩增子测序;

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