Genomic insights into versatile lifestyle of three new bacterial candidate phyla

念珠菌 生物 基因组 进化生物学 水平基因转移 谱系(遗传) 系统发育学 基因组 细菌门 生态学 基因 遗传学 厚壁菌 16S核糖体RNA
作者
Xinxu Zhang,Zongbao Liu,Wei Xü,Jie Pan,Yuhan Huang,Mingwei Cai,Zengwei Luo,Meng Li
出处
期刊:Science China-life Sciences [Springer Nature]
卷期号:65 (8): 1547-1562 被引量:6
标识
DOI:10.1007/s11427-021-2037-x
摘要

Metagenomic explorations of the Earth's biosphere enable the discovery of previously unknown bacterial lineages of phylogenetic and ecological significance. Here, we retrieved 11 metagenomic-assembled genomes (MAGs) affiliated to three new monophyletic bacterial lineages from the seawater of the Yap Trench. Phylogenomic analysis revealed that each lineage is a new bacterial candidate phylum, subsequently named Candidatus Qinglongiota, Candidatus Heilongiota, and Candidatus Canglongiota. Metabolic reconstruction of genomes from the three phyla suggested that they adopt a versatile lifestyle, with the potential to utilize various types of sugars, proteins, and/or short-chain fatty acids through anaerobic pathways. This was further confirmed by a global distribution map of the three phyla, indicating a preference for oxygen-limited or particle-attached niches, such as anoxic sedimentary environments. Of note, Candidatus Canglongiota genomes harbor genes for the complete Wood- Ljungdahl pathway and sulfate reduction that are similar to those identified in some sulfate-reducing bacteria. Evolutionary analysis indicated that gene gain and loss events, and horizontal gene transfer (HGT) play important roles in shaping the genomic and metabolic features of the three new phyla. This study presents the genomic insight into the ecology, metabolism, and evolution of three new phyla, which broadens the phylum-level diversity within the domain Bacteria.
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