Biotechnical Faculty, Animal Science Department, Chair for Microbiology and Microbial Biotechnology, University of Ljubljana, Groblje 3, 1230, Domžale, Slovenia.
Folia Microbiol (Praha). 2012 Jul;57(4):301-6. doi: 10.1007/s12223-012-0130-9. Epub 2012 Apr 17.
Denaturant gradient gel electrophoresis (DGGE) enables insight into the diversity of the studied microbial communities on the basis of separation of PCR amplification products according to their nucleotide sequence composition. However, the success of the method is accompanied by the inherent appearance of various sequence artifacts that bias the impression of community structure by generating additional bands representing no virtual microbes. PCR-DGGE artifacts require optimization of the method when aiming at the phylogenetic identification of the selected DGGE bands. The aim of our study was to develop a procedure which will increase the reliability of the identification. Samples of rumen fluid were used for the optimization since they contain a complex microbial community that supports the generation of artifactual bands. An optimized procedure following band excision and elution of microbial DNA is proposed including nuclease treatment, selection of DNA polymerase with proofreading activity, and cloning prior to sequencing and identification analysis.
变性梯度凝胶电泳 (DGGE) 通过根据 PCR 扩增产物的核苷酸序列组成进行分离,使我们能够深入了解研究中的微生物群落多样性。然而,该方法的成功伴随着各种序列人为产物的固有出现,这些产物通过产生代表不存在的虚拟微生物的额外条带来影响群落结构的印象。当旨在对选定的 DGGE 条带进行系统发育鉴定时,需要对 PCR-DGGE 人为产物进行方法优化。我们的研究目的是开发一种能够提高鉴定可靠性的程序。由于瘤胃液样品中含有支持产生人为产物条带的复杂微生物群落,因此我们使用该样品进行优化。我们提出了一种优化程序,包括在进行测序和鉴定分析之前,对条带进行切除和洗脱微生物 DNA 后,进行核酸酶处理、选择具有校对活性的 DNA 聚合酶以及克隆。