Poitelon Jean-Baptiste, Joyeux Michel, Welté Bénédicte, Duguet Jean-Pierre, Prestel Eric, Lespinet Olivier, DuBow Michael S
EAU DE PARIS, 9 rue Schoelcher, 75014 Paris, France.
Water Res. 2009 Sep;43(17):4197-206. doi: 10.1016/j.watres.2009.07.020. Epub 2009 Jul 18.
We examined chlorinated drinking water samples from three different surface water treatment plants for bacterial 16S rDNA diversity using the serial analysis of V6 ribosomal sequence tag (SARST-V6) method. A considerable degree of diversity was observed in each sample, with an estimated richness ranging from 173 to 333 phylotypes. The community structure shows that there are differences in bacterial evenness between sampled sites. The taxonomic composition of the microbial communities was found to be dominated by members of the Proteobacteria (57.2-77.4%), broadly distributed among the classes Alphaproteobacteria, Betaproteobacteria, Gammaproteobacteria, and Deltaproteobacteria. Additionally, a large proportion of sequences (6.3-36.5%) were found to be distantly related to database sequences of unknown phylogenetic affiliation. Given the apparent significance of this bacterial group in drinking water, a 16S rDNA analysis was performed and confirmed their presence and phylogeny. Notwithstanding the potential under-representation of certain bacterial phyla using the SARST-V6 primer pairs, as revealed by a refined computer algorithm, our results suggest that 16S rDNA corresponding to a variety of eubacterial groups can be detected in finished drinking water, suggesting that this water may contain a higher level of bacterial diversity than previously observed.
我们使用V6核糖体序列标签的序列分析(SARST-V6)方法,检测了来自三个不同地表水净化厂的氯化饮用水样本中的细菌16S rDNA多样性。在每个样本中均观察到相当程度的多样性,估计丰富度范围为173至333个系统型。群落结构表明,采样地点之间细菌的均匀度存在差异。发现微生物群落的分类组成以变形菌门成员为主(57.2-77.4%),广泛分布于α-变形菌纲、β-变形菌纲、γ-变形菌纲和δ-变形菌纲中。此外,发现很大一部分序列(6.3-36.5%)与系统发育归属未知的数据库序列关系较远。鉴于该细菌群在饮用水中的明显重要性,进行了16S rDNA分析并确认了它们的存在和系统发育。尽管如一种改进的计算机算法所揭示的,使用SARST-V6引物对可能会使某些细菌门的代表性不足,但我们的结果表明,在成品饮用水中可以检测到对应于多种真细菌群的16S rDNA,这表明这种水中的细菌多样性水平可能比之前观察到的更高。