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首页> 外文期刊>Journal of Microbiological Methods >Development of a dual-internal-reference technique to improve accuracy when determining bacterial 16S rRNA:16S rRNA gene ratio with application to Escherichia coli liquid and aerosol samples
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Development of a dual-internal-reference technique to improve accuracy when determining bacterial 16S rRNA:16S rRNA gene ratio with application to Escherichia coli liquid and aerosol samples

机译:开发双内参技术以提高测定细菌16S rRNA:16S rRNA基因比率的准确性,并应用于大肠杆菌液体和气溶胶样品

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摘要

Accurate enumeration of rRNA content in microbial cells, e.g. by using the 16S rRNA:16S rRNA gene ratio, is critical to properly understand its relationship to microbial activities. However, few studies have considered possible methodological artifacts that may contribute to the variability of rRNA analysis results. In this study, a technique utilizing genomic DNA and 16S rRNA from an exogenous species (Pseudomonas fluorescens) as dual internal references was developed to improve accuracy when determining the 16S rRNA:165 rRNA gene ratio of a target organism, Escherichia colt This technique was able to adequately control the variability in sample processing and analysis procedures due to nucleic acid (DNA and RNA) losses, inefficient reverse transcription of RNA, and inefficient PCR amplification. The measured 16S rRNA:16S rRNA gene ratio of E. coil increased by 2-3 fold when E. coli 165 rRNA gene and 16S rRNA quantities were normalized to the sample-specific fractional recoveries of reference (P. fluorescens) 16S rRNA gene and 16S rRNA, respectively. In addition, the intra-sample variation of this ratio, represented by coefficients of variation from replicate samples, decreased significantly after normalization. This technique was applied to investigate the temporal variation of 16S rRNA:16S rRNA gene ratio of E. coil during its non-steady-state growth in a complex liquid medium, and to E. coil aerosols when exposed to particle-free air after their collection on a filter. The 16S rRNA:16S rRNA gene ratio of E. coil increased significantly during its early exponential phase of growth; when E. coli aerosols were exposed to extended filtration stress after sample collection, the ratio also increased. In contrast, no significant temporal trend in E. coil 165 rRNA:16S rRNA gene ratio was observed when the determined ratios were not normalized based on the recoveries of dual references. The developed technique could be widely applied in studies of relationship between cellular rRNA abundance and bacterial activity. (C) 2015 Elsevier B.V. All rights reserved.
机译:准确计数微生物细胞中rRNA的含量,例如通过使用16S rRNA:16S rRNA基因比率,对于正确了解其与微生物活性的关系至关重要。但是,很少有研究考虑可能有助于rRNA分析结果变异性的方法学假象。在这项研究中,开发了一种利用外源物种(荧光假单胞菌)的基因组DNA和16S rRNA作为双重内部参照的技术,以提高确定目标生物体埃希氏菌的16S rRNA:165 rRNA基因比率时的准确性。以充分控制由于核酸(DNA和RNA)丢失,RNA逆转录效率低下和PCR扩增效率低下而造成的样品处理和分析过程中的变异性。当将大肠杆菌165 rRNA基因和16S rRNA量标准化为参考样品(P. fluorescens)和16S rRNA基因的样品特异性分数回收率归一化后,测得的大肠杆菌的16S rRNA:16S rRNA基因比率增加了2-3倍。 16S rRNA分别。此外,归一化后,该比率的样本内变异(以重复样本的变异系数表示)显着降低。这项技术被用来研究大肠杆菌在复杂的液体培养基中非稳态生长过程中16S rRNA:16S rRNA基因比率的时间变化,以及当它们暴露于无颗粒的空气中后在大肠杆菌气溶胶中的变化。在过滤器上收集。大肠埃希菌的16S rRNA:16S rRNA基因比例在其指数增长的早期阶段显着增加。样品收集后,当大肠杆菌气溶胶暴露于扩展的过滤应力时,该比例也增加了。相反,当基于双重参照物的回收率未将确定的比率归一化时,在大肠杆菌165 rRNA:16S rRNA基因比率中未观察到明显的时间趋势。所开发的技术可以广泛应用于细胞rRNA丰度与细菌活性之间关系的研究。 (C)2015 Elsevier B.V.保留所有权利。

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