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首页> 外文期刊>Applied Microbiology and Biotechnology >Two-step denaturing gradient gel electrophoresis (2S-DGGE), a gel-based strategy to capture full-length 16S rRNA gene sequences
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Two-step denaturing gradient gel electrophoresis (2S-DGGE), a gel-based strategy to capture full-length 16S rRNA gene sequences

机译:两步变性梯度凝胶电泳(2S-DGGE),一种基于凝胶的捕获全长16S rRNA基因序列的策略

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摘要

Obtaining full-length 16S rRNA gene sequences is important for generating accurate taxonomy assignments of bacteria, which normally is realized via clone library construction. However, the application of clone library has been hindered due to its limitations in sample throughput and in capturing minor populations (<1 % of total microorganisms). To overcome these limitations, a new strategy, two-step denaturing gradient gel electrophoresis (2S-DGGE), is developed to obtain full-length 16S rRNA gene sequences. 2S-DGGE can compare microbial communities based on its first-round DGGE profiles and generate partial 16S rRNA gene sequences (8-534 bp, Escherichia coli numbering). Then, strain-specific primers can be designed based on sequence information of bacteria of interest to PCR amplify their remaining 16S rRNA gene sequences (515-1541 bps, E. coli numbering). The second-round DGGE can confirm DNA sequence purity of these PCR products. Finally, the full-length 16S rRNA gene sequences can be obtained through combining the two partial DNA sequences. By employing 2S-DGGE, taxonomies of a group of dehalogenating bacteria have been assigned based on their full-length 16S rRNA gene sequences, several of which existed in dehalogenating microcosms as minor populations. In all, 2S-DGGE can be utilized as a medium throughput method for taxonomic identification of interested/minor populations from single or multiple microbial consortia.
机译:获得全长的16S rRNA基因序列对于产生细菌的准确分类法分配很重要,这通常是通过克隆文库的构建来实现的。但是,由于克隆文库在样品通量和捕获少量种群(占总微生物的<1%)方面的局限性,因此其应用受到了阻碍。为了克服这些限制,开发了一种新的策略,即两步变性梯度凝胶电泳(2S-DGGE),以获得全长16S rRNA基因序列。 2S-DGGE可以根据其第一轮DGGE图谱比较微生物群落,并生成部分16S rRNA基因序列(8-534 bp,大肠杆菌编号)。然后,可以根据目标细菌的序列信息设计菌株特异性引物,以PCR扩增其剩余的16S rRNA基因序列(515-1541 bps,大肠杆菌编号)。第二轮DGGE可以确认这些PCR产物的DNA序列纯度。最后,通过结合两个部分DNA序列可以获得全长16S rRNA基因序列。通过使用2S-DGGE,已根据其全长16S rRNA基因序列指定了一组脱卤细菌的分类法,其中一些以脱菌种群的形式存在于脱卤的微观世界中。总而言之,2S-DGGE可用作中等通量方法,用于从单个或多个微生物联盟中对感兴趣的/未成年人群进行分类学鉴定。

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