CEA/Genoscope, CNRS-UMR 8030 and Université d'Val d'Essonne, 91057 Evry, France.
Environ Microbiol. 2008 Aug;10(8):2111-23. doi: 10.1111/j.1462-2920.2008.01632.x. Epub 2008 May 6.
We have constructed a large fosmid library from a mesophilic anaerobic digester and explored its 16S rDNA diversity using a high-density filter DNA-DNA hybridization procedure. We identified a group of 16S rDNA sequences forming a new bacterial lineage named WWE3 (Waste Water of Evry 3). Only one sequence from the public databases shares a sequence identity above 80% with the WWE3 group which hence cannot be affiliated to any known or candidate prokaryotic division. Despite representing a non-negligible fraction (5% of the 16S rDNA sequences) of the bacterial population of this digester, the WWE3 bacteria could not have been retrieved using the conventional 16S rDNA amplification procedure due to their unusual 16S rDNA gene sequence. WWE3 bacteria were detected by polymerase chain reaction (PCR) in various environments (anaerobic digesters, swine lagoon slurries and freshwater biofilms) using newly designed specific PCR primer sets. Fluorescence in situ hybridization (FISH) analysis of sludge samples showed that WWE3 microorganisms are oval-shaped and located deep inside sludge flocs. Detailed phylogenetic analysis showed that WWE3 bacteria form a distinct monophyletic group deeply branching apart from all known bacterial divisions. A new bacterial candidate division status is proposed for this group.
我们从一个嗜中温厌氧消化器构建了一个大型的 fosmid 文库,并使用高密度滤膜 DNA-DNA 杂交程序探索了其 16S rDNA 多样性。我们鉴定了一组形成新细菌谱系的 16S rDNA 序列,命名为 WWE3(埃夫里废水 3)。公共数据库中仅有一个序列与 WWE3 组的序列同一性高于 80%,因此不能归属于任何已知或候选的原核生物分类。尽管这些细菌占该消化器中细菌种群的相当大的一部分(16S rDNA 序列的 5%),但由于其不寻常的 16S rDNA 基因序列,无法使用常规的 16S rDNA 扩增程序来检索 WWE3 细菌。使用新设计的特异性 PCR 引物对,通过聚合酶链反应(PCR)在各种环境(厌氧消化器、猪粪浆和淡水生物膜)中检测到 WWE3 细菌。污泥样品的荧光原位杂交(FISH)分析表明,WWE3 微生物呈椭圆形,位于污泥絮体的内部深处。详细的系统发育分析表明,WWE3 细菌形成一个独特的单系群,与所有已知的细菌分类都有很深的分支。我们为这个群体提出了一个新的细菌候选分类地位。