首页> 外文期刊>Journal of Bioscience and Bioengineering >Denaturing Gradient Gel Electrophoresis Polymorphism for Rapid 16S rDNA Clone Screening and Microbial Diversity Study
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Denaturing Gradient Gel Electrophoresis Polymorphism for Rapid 16S rDNA Clone Screening and Microbial Diversity Study

机译:变性梯度凝胶电泳多态性用于16S rDNA快速克隆筛选和微生物多样性研究

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摘要

A method based on denaturing gradient gel electrophoresis (DGGE) banding polymorphism was developed for rapid small-subunit (SSU) rDNA clone screening and microbial diversity estimation. Clones with correct rDNA insertion were initially identified using whole-cell PCR with vector-specific primers. Subsequently, the correct PCR products were re-amplified with nested primers in a DGGE analysis. An average of five to 10 individual DGGE-PCR products could be mixed together and loaded into a DGGE well, and at least 125 to 250 clones could be screened and compared within one DGGE gel. This approach eliminated the reproducibility problem associated with DGGE, increased the ability to screen a large set of clones at a relatively affordable cost, and was shown to be more sensitive than the restriction fragment length polymorphism method in identifying 10 different but phylogenetically closely related 16S rDNA fragments from 126 clones obtained from an anaerobic sludge sample.
机译:建立了基于变性梯度凝胶电泳(DGGE)条带多态性的快速小亚基(SSU)rDNA克隆筛选和微生物多样性估计的方法。最初使用带有载体特异性引物的全细胞PCR鉴定了正确rDNA插入的克隆。随后,在DGGE分析中,用嵌套引物重新扩增正确的PCR产物。可以将平均5至10个单独的DGGE-PCR产物混合在一起,并加载到DGGE孔中,并且可以在一个DGGE凝胶中筛选和比较至少125至250个克隆。该方法消除了与DGGE相关的可再现性问题,以相对可承受的成本提高了筛选大量克隆的能力,并且在鉴定10种不同但在系统发育上密切相关的16S rDNA方面比限制性片段长度多态性方法更敏感。来自厌氧污泥样品的126个克隆的片段。

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