Kadnikov Vitaly V, Mardanov Andrey V, Beletsky Alexey V, Karnachuk Olga V, Ravin Nikolai V
Institute of Bioengineering, Research Center of Biotechnology of the Russian Academy of Sciences, 119071 Moscow, Russia.
Laboratory of Biochemistry and Molecular Biology, Tomsk State University, 634050 Tomsk, Russia.
Microorganisms. 2020 Feb 25;8(3):320. doi: 10.3390/microorganisms8030320.
The candidate phyla radiation is a large monophyletic lineage comprising unculturable bacterial taxa with small cell and genome sizes, mostly known from genomes obtained from environmental sources without cultivation. Here, we present the closed complete genome of a member of the superphylum Microgenomates obtained from the metagenome of a deep subsurface thermal aquifer. Phylogenetic analysis indicates that the new bacterium, designated Ch65, represents a novel phylum-level lineage within the Microgenomates group, sibling to the candidate phylum Collierbacteria. The Ch65 genome has a highly unusual nucleotide composition with one strand of highly enriched in cytosine versus guanine throughout the whole length. Such nucleotide composition asymmetry, also detected in the members of Ca. Collierbacteria and Ca. Beckwithbacteria, suggests that most of the Ch65 chromosome is replicated in one direction. A genome analysis predicted that the Ch65 bacterium has fermentative metabolism and could produce acetate and lactate. It lacks respiratory capacity, as well as complete pathways for the biosynthesis of lipids, amino acids, and nucleotides. The Embden-Meyerhof glycolytic pathway and nonoxidative pentose phosphate pathway are mostly complete, although glucokinase, 6-phosphofructokinase, and transaldolase were not found. The Ch65 bacterium lacks secreted glycoside hydrolases and conventional transporters for importing sugars and amino acids. Overall, the metabolic predictions imply that Ch65 adopts the lifestyle of a symbiont/parasite, or a scavenger, obtaining resources from the lysed microbial biomass. We propose the provisional taxonomic assignment ' Chazhemtobacterium aquaticus', genus '', family '' in the Microgenomates group.
候选门辐射是一个大型单系谱系,由细胞和基因组较小的不可培养细菌类群组成,主要从环境来源获得的未培养基因组中得知。在此,我们展示了从深层地下热水含水层宏基因组中获得的超门微基因组成员的封闭完整基因组。系统发育分析表明,这种新细菌命名为Ch65,代表了微基因组组内一个新的门级谱系,与候选门科利尔细菌是姐妹关系。Ch65基因组具有高度不寻常的核苷酸组成,一条链在整个长度上胞嘧啶相对于鸟嘌呤高度富集。在类科利尔细菌和类贝克威细菌的成员中也检测到这种核苷酸组成不对称,这表明Ch65染色体的大部分是单向复制的。基因组分析预测,Ch65细菌具有发酵代谢,可产生乙酸盐和乳酸盐。它缺乏呼吸能力,以及脂质、氨基酸和核苷酸生物合成的完整途径。尽管未发现葡萄糖激酶、6-磷酸果糖激酶和转醛醇酶,但糖酵解途径和非氧化戊糖磷酸途径大多是完整的。Ch65细菌缺乏分泌型糖苷水解酶和用于导入糖和氨基酸的传统转运蛋白。总体而言,代谢预测表明Ch65采用共生体/寄生虫或清道夫的生活方式,从裂解的微生物生物量中获取资源。我们提议在微基因组组中暂定分类为“水生查热姆杆菌”,属名“”,科名“”。