Kisand Veljo, Wikner Johan
Umeå Marine Sciences Center, Umeå University, Norrbyn, SE-910 20, Hörnefors, Sweden.
J Microbiol Methods. 2003 Aug;54(2):183-91. doi: 10.1016/s0167-7012(03)00038-1.
The phylogenetic affiliation of 91 operational taxonomic units, randomly sampled from three aquatic microcosm experiments, was investigated by two PCR based and one culture dependent method. The occurrence of multiple melting domains and poor coupling between Tm and DGGE retardation was demonstrated to cause poor resolution at the species level in PCR-DGGE analysis of microbial communities. We also showed that the problem of multiple melting domains was particularly prone for brackish water bacterioplankton in the Flavobacterium genus, providing characteristic band morphology for this genus. Banding patterns from DGGE analysis may therefore be misinterpreted in terms of the species richness in natural bacterial communities, when using commonly applied universal primers.
通过两种基于聚合酶链式反应(PCR)的方法和一种基于培养的方法,对从三个水生微宇宙实验中随机抽取的91个操作分类单元的系统发育归属进行了研究。结果表明,在微生物群落的PCR-变性梯度凝胶电泳(DGGE)分析中,多个解链结构域的出现以及解链温度(Tm)与DGGE阻滞之间的耦合不佳,导致在物种水平上分辨率较低。我们还表明,黄杆菌属的咸淡水浮游细菌特别容易出现多个解链结构域的问题,为该属提供了特征性的条带形态。因此,当使用常用的通用引物时,DGGE分析的条带模式可能会在自然细菌群落的物种丰富度方面被误解。