Boutte C, Grubisic S, Balthasart P, Wilmotte A
Center for Protein Engineering, Institute of Chemistry B6, University of Liège, Belgium.
J Microbiol Methods. 2006 Jun;65(3):542-50. doi: 10.1016/j.mimet.2005.09.017. Epub 2005 Nov 14.
Denaturing Gradient Gel electrophoresis (DGGE) is a PCR-based technique which is widely used in the study of microbial communities. Here, the use of the three specific 16S rRNA cyanobacterial specific primers CYA359F, CYA781R(a) and CYA781R(b) on the assessment of the molecular diversity of cyanobacterial communities is examined. Assignments of the reverse primers CYA781R(a) and CYA781R(b) with cyanobacterial strain sequences showed that the former preferentially targets filamentous cyanobacteria whereas the latter targets unicellular cyanobacteria. The influence of the GC clamp position on the forward or on reverse primer and the use of the two reverse primers separately or in equimolar mixture were investigated. Three environmental samples were subjected to amplification with 6 combinations of primers. The 6 banding patterns as well as the sequences of the bands extracted were analysed and compared. In addition, to assess the effect of the position of the GC clamp, the melting profiles of the sequences of Aphanizomenon flos-aquae PMC9707 and Synechococcus sp. MH305 were determined, with the GC clamp in the 3' or 5' position. Results showed that the use of two separate amplifications allowed a more complete study of the molecular diversity of the cyanobacterial community investigated. Furthermore, similar richness and identical phylogenetic assignments of extracted bands were obtained irrespective of the positioning of the GC clamp.
变性梯度凝胶电泳(DGGE)是一种基于聚合酶链反应(PCR)的技术,广泛应用于微生物群落研究。本文研究了使用三种特异性16S rRNA蓝藻特异性引物CYA359F、CYA781R(a)和CYA781R(b)评估蓝藻群落分子多样性的情况。将反向引物CYA781R(a)和CYA781R(b)与蓝藻菌株序列进行比对,结果表明前者优先靶向丝状蓝藻,而后者靶向单细胞蓝藻。研究了GC夹在正向或反向引物上的位置影响,以及单独使用或等摩尔混合使用两种反向引物的情况。对三个环境样本进行了6种引物组合的扩增。分析并比较了6种条带模式以及提取条带的序列。此外,为了评估GC夹位置的影响,测定了水华束丝藻PMC9707和聚球藻属MH305序列在GC夹位于3'或5'位置时的解链曲线。结果表明,进行两次单独扩增能够更全面地研究所调查蓝藻群落的分子多样性。此外,无论GC夹的位置如何,提取条带的丰富度相似且系统发育归属相同。