Complex genomes of early nucleocytoviruses revealed by ancient origins of viral aminoacyl-tRNA synthetases
Kijima, S.; Hikida, H.; Delmont, T. O.; Gaia, M.; Ogata, H.
Show abstract
Aminoacyl-tRNA synthetases (aaRSs), also known as tRNA ligases, are essential enzymes in translation. Owing to their functional essentiality, these enzymes are conserved in all domains of life and used as informative markers to trace the evolutionary history of cellular organisms. Unlike cellular organisms, viruses generally lack aaRSs because of their obligate parasitic nature, but several large and giant DNA viruses in the phylum Nucleocytoviricota encode aaRSs in their genomes. The discovery of viral aaRSs led to the idea that the phylogenetic analysis of aaRSs can shed light on ancient viral evolution. However, conflicting results have been reported from previous phylogenetic studies: one posited that nucleocytoviruses recently acquired their aaRSs from their host eukaryotes, while another hypothesized that the viral aaRSs have ancient origins. Here, we investigated 4,168 nucleocytovirus genomes, including metagenome-assembled genomes derived from large-scale metagenomic studies. In total, we identified 780 viral aaRS sequences in 273 viral genomes. We generated and examined phylogenetic trees of these aaRSs with a large set of cellular sequences to trace evolutionary relationships between viral and cellular aaRSs. The analyses firmly establish that the origins of some viral aaRSs predate the last common eukaryotic ancestor. Inside viral aaRS clades, we identify intricate evolutionary trajectories of viral aaRSs with horizontal transfers, losses, and displacements. Overall, these results suggest that ancestral nucleocytoviruses already developed complex genomes with an expanded set of aaRSs in the proto-eukaryotic era.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A Phylogenomic Framework for Charting the Diversity and Evolution of Giant Viruses 97%
- Identifying and prioritizing potential human-infecting viruses from their genome sequences 95%
- Completing the BASEL phage collection to unlock hidden diversity for systematic exploration of phage-host interactions 93%
Similar papers in this journal
Similar papers in this journal
- Genomic transfers help to decipher the ancient evolution of filoviruses and interactions with vertebrate hosts 96%
- Deep mining of the Sequence Read Archive reveals bipartite coronavirus genomes and inter-family Spike glycoprotein recombination 96%
- Calicivirus assembly and stability are mediated by the N-terminal domain of the capsid protein with the involvement of the viral genome 94%
Similar papers in this journal
- Evolution and Genetic Diversity of the Retroviral Envelope in Anamniotes 96%
- Multiple infiltration and cross-species transmission of foamy viruses across Paleozoic to Cenozoic era 95%
- Accumulated metagenomic studies reveal recent migration, whole genome evolution, and undiscovered diversity of orthomyxoviruses 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.