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Investigation of candidate division TM7, a recently recognized major lineage of the domain bacteria with no known pure-culture representatives

机译:调查候选区TM7,这是最近发现的领域细菌的主要谱系,尚无纯培养代表

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摘要

A molecular approach was used to investigate a recently described candidate division of the domain Bacteria, TM7, currently known only from environmental 16S ribosomal DNA sequence data, A number of TM7-specific primers and probes were designed and evaluated. Fluorescence in situ hybridization (FISH) of a laboratory scale bioreactor using two independent TM7-specific probes revealed a conspicuous sheathed-filament morphotype, fortuitously enriched in the reactor. Morphologically, the filament matched the description of the Eikelboom morphotype 0041-0675 widely associated with bulking problems in activated-sludge wastewater treatment systems. Transmission electron microscopy of the bioreactor sludge demonstrated that the sheathed-filament morphotype had a typical gram-positive cell envelope ultrastructure. Therefore, TM7 is only the third bacterial lineage recognized to have gram-positive representatives. TM7-specific FISH analysis of two full-scale wastewater treatment plant sludges, including the one used to seed the laboratory scale reactor, indicated the presence of a number of morphotypes, including sheathed filaments. TM7-specific PCR clone libraries prepared from the two full-scale sludges yielded 23 novel TM7 sequences. Three subdivisions could be defined based on these data and publicly available sequences. Environmental sequence data and TM7-specific FISH analysis indicate that members of the TM7 division are present in a variety of terrestrial, aquatic, and clinical habitats. A highly atypical base substitution (Escherichia coli position 912; C to U) for bacterial 16S rRNAs was present in almost all TM7 sequences, suggesting that TM7 bacteria, like Archaea, may be streptomycin resistant at the ribosome level.
机译:目前仅从环境16S核糖体DNA序列数据中已知使用分子方法研究最近描述的结构域细菌TM7的候选分裂,设计并评估了许多TM7特异性引物和探针。使用两个独立的TM7特异性探针的实验室规模生物反应器的荧光原位杂交(FISH)显示了明显的鞘丝形态型,偶然地富集在反应器中。从形态上讲,这种长丝与Eikelboom 0041-0675形态的描述相符,该形态广泛与活性污泥废水处理系统中的膨胀问题有关。生物反应器污泥的透射电子显微镜表明,鞘丝形态具有典型的革兰氏阳性细胞包膜超微结构。因此,TM7只是公认的第三个具有革兰氏阳性代表的细菌谱系。 TM7的FISH分析对两种满规模废水处理厂污泥(包括用于实验室规模反应堆的污泥进行的FISH分析)表明存在许多形态型,包括带鞘的细丝。由两种大规模污泥制备的TM7特异性PCR克隆文库产生了23个新颖的TM7序列。根据这些数据和公开可用的序列,可以定义三个细分。环境序列数据和TM7特定的FISH分析表明,TM7部门的成员存在于各种陆地,水生和临床栖息地中。几乎所有TM7序列中都存在细菌16S rRNA的高度非典型碱基取代(大肠杆菌912位;从C到U),这表明TM7细菌(如古细菌)在核糖体水平上可能对链霉素具有抗性。

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