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Development of a fluorophore-ribosomal DNA restriction typing method for monitoring structural shifts of microbial communities

机译:荧光团-核糖体DNA限制性酶切分型方法的开发,用于监测微生物群落的结构变化

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DNA restriction fragment polymorphism technologies such as amplified ribosomal DNA restriction analysis (ARDRA) and terminal restriction fragment length polymorphism (T-RFLP) have been widely used in investigating microbial community structures. However, these methods are limited due to either the low resolution or sensitivity. In this study, a fluorophore-ribosomal DNA restriction typing (f-DRT) approach is developed for structural profiling of microbial communities. 16S rRNA genes are amplified from the community DNA and digested by a single restriction enzyme Msp I. All restriction fragments are end-labeled with a fluorescent nucleotide Cy5-dCTP via a one-step extension reaction and detected with an automated DNA sequencer. All 50 predicted restriction fragments between 100 and 600 bp were detected when twelve single 16S rRNA gene sequences were analyzed using f-DRT approach; 92% of these fragments were determined with accuracy of ±2 bp. In the defined model communities containing five components with different ratios, relative abundance of each component was correctly revealed by this method. The f-DRT analysis also showed structural shifts of intestinal microbiota in carcinogen-treated rats during the formation of precancerous lesions in the colon, as sensitive as multiple digestion-based T-RFLP analysis. This study provides a labor and cost-saving new method for monitoring structural shifts of microbial communities.
机译:DNA限制性片段多态性技术,例如扩增核糖体DNA限制性分析(ARDRA)和末端限制性片段长度多态性(T-RFLP),已广泛用于研究微生物群落结构。但是,由于分辨率低或灵敏度低,这些方法受到限制。在这项研究中,开发了一种荧光团-核糖体DNA限制性分型(f-DRT)方法,用于微生物群落的结构分析。从群落DNA扩增16S rRNA基因,并用单个限制性酶Msp I消化。所有限制性片段均通过一步延伸反应用荧光核苷酸Cy5-dCTP末端标记,并用自动DNA测序仪检测。当使用f-DRT方法分析十二个16S rRNA基因序列时,检测到了100到600 bp之间的所有50个预测的限制性片段。确定的这些片段中有92%的准确度为±2 bp。在包含五个比例不同的成分的定义模型社区中,此方法可以正确显示每个成分的相对丰度。 f-DRT分析还显示,在结肠癌前病变形成过程中,用致癌物处理的大鼠中肠道菌群的结构变化与基于多次消化的T-RFLP分析一样敏感。这项研究为监测微生物群落的结构变化提供了一种节省劳动力和成本的新方法。

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