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Development and Application of a Real-Time PCR Approach for Quantification of Uncultured Bacteria in the Central Baltic Sea

机译:实时PCR方法在波罗的海中部未培养细菌定量的开发和应用

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摘要

We have developed a highly sensitive approach to assess the abundance of uncultured bacteria in water samples from the central Baltic Sea by using a noncultured member of the “Epsilonproteobacteria” related to Thiomicrospira denitrificans as an example. Environmental seawater samples and samples enriched for the target taxon provided a unique opportunity to test the approach over a broad range of abundances. The approach is based on a combination of taxon- and domain-specific real-time PCR measurements determining the relative T. denitrificans-like 16S rRNA gene and 16S rRNA abundances, as well as the determination of total cell counts and environmental RNA content. It allowed quantification of T. denitrificans-like 16S rRNA molecules or 16S rRNA genes as well as calculation of the number of ribosomes per T. denitrificans-like cell. Every real-time measurement and its specific primer system were calibrated using environmental nucleic acids obtained from the original habitat for external standardization. These standards, as well as the respective samples to be measured, were prepared from the same DNA or RNA extract. Enrichment samples could be analyzed directly, whereas environmental templates had to be preamplified with general bacterial primers before quantification. Preamplification increased the sensitivity of the assay by more than 4 orders of magnitude. Quantification of enrichments with or without a preamplification step yielded comparable results. T. denitrificans-like 16S rRNA molecules ranged from 7.1 × 103 to 4.4 × 109 copies ml−1 or 0.002 to 49.7% relative abundance. T. denitrificans-like 16S rRNA genes ranged from 9.0 × 101 to 2.2 ×106 copies ml−1 or 0.01 to 49.7% relative abundance. Detection limits of this real-time-PCR approach were 20 16S rRNA molecules or 0.2 16S rRNA gene ml−1. The number of ribosomes per T. denitrificans-like cell was estimated to range from 20 to 200 in seawater and reached up to 2,000 in the enrichments. The results indicate that our real-time PCR approach can be used to determine cellular and relative abundances of uncultured marine bacterial taxa and to provide information about their levels of activity in their natural environment.
机译:我们已开发出一种高度敏感的方法,以非反硝化硫杆菌属(Thiomicrospira denitrificans)的“ Epsilonproteobacteria”的非培养成员为例,来评估波罗的海中部水样中未培养细菌的含量。环境海水样品和为目标分类单元富集的样品提供了一个独特的机会,可以在多种丰度范围内测试该方法。该方法基于分类和特定领域实时PCR测量的组合,可确定相对反硝化杆菌样的16S rRNA基因和16S rRNA丰度,以及确定总细胞数和环境RNA含量。它允许对反硝化衣原体样16S rRNA分子或16S rRNA基因进行定量,以及计算每个反硝化衣体样细胞中核糖体的数量。每次实时测量及其特定的引物系统均使用从原始栖息地获得的环境核酸进行校准,以进行外部标准化。这些标准品以及待测样品均从相同的DNA或RNA提取物中制备。富集样品可以直接进行分析,而在定量之前,必须使用一般的细菌引物对环境模板进行预扩增。预扩增使测定的灵敏度提高了4个数量级以上。在有或没有预扩增步骤的情况下,对富集进行定量可得到可比的结果。反硝化杆菌样16S rRNA分子的范围从7.1×10 3 到4.4×10 9 拷贝ml -1 或0.002至49.7%丰富。反硝化杆菌样16S rRNA基因的范围从9.0×10 1 到2.2×10 6 拷贝ml -1 或0.01至49.7%丰富。这种实时荧光定量PCR方法的检测限为20个16S rRNA分子或0.2 16S rRNA基因ml -1 。在海水中,每个反硝化衣藻样细胞中核糖体的数量估计为20到200,富集时可达200​​0。结果表明,我们的实时PCR方法可用于确定未培养的海洋细菌类群的细胞和相对丰度,并提供有关其在自然环境中的活性水平的信息。

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