McIlroy Simon J, Kirkegaard Rasmus H, Dueholm Morten S, Fernando Eustace, Karst Søren M, Albertsen Mads, Nielsen Per H
The Centre for Microbial Communities, Department of Chemistry and Bioscience, Aalborg UniversityAalborg, Denmark.
Front Microbiol. 2017 Jun 23;8:1134. doi: 10.3389/fmicb.2017.01134. eCollection 2017.
Anaerobic digestion for biogas production is reliant on the tightly coupled synergistic activities of complex microbial consortia. Members of the uncultured A6 phylotype, within the phylum Chloroflexi, are among the most abundant genus-level-taxa of mesophilic anaerobic digester systems treating primary and surplus sludge from wastewater treatment plants, yet are known only by their 16S rRNA gene sequence. This study applied metagenomics to obtain a complete circular genome (2.57 Mbp) from a representative of the A6 taxon. Preliminary annotation of the genome indicates these organisms to be anaerobic chemoorganoheterotrophs with a fermentative metabolism. Given their observed abundance, they are likely important primary fermenters in digester systems. Application of fluorescence hybridisation probes designed in this study revealed their morphology to be short filaments present within the flocs. The A6 were sometimes co-located with the filamentous Archaea spp. suggesting potential undetermined synergistic relationships. Based on its genome sequence and morphology we propose the species name gen. nov. sp. nov.
用于生物气生产的厌氧消化依赖于复杂微生物群落紧密耦合的协同活动。绿弯菌门中未培养的A6系统型成员,是处理来自污水处理厂的原污泥和剩余污泥的中温厌氧消化器系统中最丰富的属级分类群之一,但仅通过其16S rRNA基因序列为人所知。本研究应用宏基因组学从A6分类群的一个代表中获得了一个完整的环状基因组(2.57 Mbp)。基因组的初步注释表明这些生物是具有发酵代谢的厌氧化学有机异养生物。鉴于它们观察到的丰度,它们可能是消化器系统中重要的初级发酵菌。应用本研究设计的荧光杂交探针显示它们的形态为存在于絮体中的短丝。A6有时与丝状古菌属共定位,表明可能存在未确定的协同关系。基于其基因组序列和形态我们提出新物种名gen. nov. sp. nov.