Department of Earth and Planetary Sciences, University of California, Berkeley, California, United States.
Department of Plant and Microbial Biology, University of California, Berkeley, California, United States.
Sci Rep. 2017 Jan 9;7:40101. doi: 10.1038/srep40101.
The Candidate Phyla Radiation (CPR) is a large group of bacteria, the scale of which approaches that of all other bacteria. CPR organisms are inferred to depend on other community members for many basic cellular building blocks and all appear to be obligate anaerobes. To date, there has been no evidence for any significant respiratory capacity in an organism from this radiation. Here we report a curated draft genome for 'Candidatus Parcunitrobacter nitroensis' a member of the Parcubacteria (OD1) superphylum of the CPR. The genome encodes versatile energy pathways, including fermentative and respiratory capacities, nitrogen and fatty acid metabolism, as well as the first complete electron transport chain described for a member of the CPR. The sequences of all of these enzymes are highly divergent from sequences found in other organisms, suggesting that these capacities were not recently acquired from non-CPR organisms. Although the wide respiration-based repertoire points to a different lifestyle compared to other CPR bacteria, we predict similar obligate dependence on other organisms or the microbial community. The results substantially expand the known metabolic potential of CPR bacteria, although sequence comparisons indicate that these capacities are very rare in members of this radiation.
候选菌门辐射(CPR)是一个庞大的细菌群体,其规模接近所有其他细菌。据推测,CPR 生物依赖于其他群落成员来获取许多基本的细胞构建块,而且似乎都是严格的厌氧菌。迄今为止,在该辐射中还没有任何生物体具有重要呼吸能力的证据。在这里,我们报告了候选 Parcunitrobacter nitroensis 的精心编辑的草图基因组,它是 Parcubacteria(OD1)超门的 CPR 的成员。基因组编码了多种能量途径,包括发酵和呼吸能力、氮和脂肪酸代谢,以及为 CPR 的成员描述的第一个完整的电子传递链。所有这些酶的序列与其他生物体中发现的序列高度不同,这表明这些能力不是最近从非 CPR 生物体中获得的。尽管基于广泛呼吸的能力与其他 CPR 细菌的生活方式不同,但我们预测它们仍然需要严格依赖其他生物体或微生物群落。尽管序列比较表明,在这个辐射的成员中,这些能力非常罕见,但这些结果大大扩展了 CPR 细菌的已知代谢潜力。