Decoding Huge Phage Diversity: A Taxonomic Classification of Lak Megaphages
Cook, R.; Crisci, M. A.; Pye, H. V.; Telatin, A.; Adriaenssens, E. M.; Santini, J. M.
Show abstract
High-throughput sequencing for uncultivated viruses has accelerated the understanding of global viral diversity and uncovered viral genomes substantially larger than any that have so far been cultured. Notably, the Lak phages are an enigmatic group of viruses that present some of the largest known phage genomes identified in human and animal microbiomes, and are dissimilar to any cultivated viruses. Despite the wealth of viral diversity that exists within sequencing datasets, uncultivated viruses have rarely been used for taxonomic classification. We investigated the evolutionary relationships of 23 Lak phages and propose a taxonomy for their classification. Predicted protein analysis revealed the Lak phages formed a deeply branching monophyletic clade within the class Caudoviricetes which contained no other phage genomes. One of the interesting features of this clade is that all current members are characterised by an alternative genetic code. We propose the Lak phages belong to a new order, the "Grandevirales". Protein and nucleotide-based analyses support the creation of two families, three sub-families, and four genera within the order "Grandevirales". We anticipate that the proposed taxonomy of Lak megaphages will simplify the future classification of related viral genomes as they are uncovered. Continued efforts to classify divergent viruses are crucial to aid common analyses of viral genomes and metagenomes.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Exploring the remarkable diversity of Escherichia coli Phages in the Danish Wastewater Environment, Including 91 Novel Phage Species 98%
- Metatranscriptomic comparison of viromes in endemic and introduced passerines in New Zealand 97%
- ViralRecall: A Flexible Command-Line Tool for the Detection of Giant Virus Signatures in Omic Data 96%
Similar papers in this journal
- Host interactions of novel Crassvirales species belonging to multiple families infecting bacterial host, Bacteroides cellulosilyticus WH2 96%
- Nanopore and Illumina Sequencing Reveal Different Viral Populations from Human Gut Samples 95%
- Revisiting typing systems for group B Streptococcus (GBS) prophages: an application in prophage detection and classification in GBS isolates from Argentina 94%
Similar papers in this journal
- Novel phages of Pseudomonas syringae unveil numerous potential auxiliary metabolic genes 96%
- New viruses of Cladosporium sp. expand considerably the taxonomic structure of Gammapartitivirus genus 95%
- Newly identified genomic sequences establish benchmarks for proposed taxonomic classification of jingmenviruses 95%
Similar papers in this journal
- Genetic diversity and cross-species transmissibility of bat-associated picornaviruses from Spain 96%
- Ever-increasing viral diversity associated with the red imported fire ant Solenopsis invicta (Formicidae: Hymenoptera) 95%
- Alfalfa vein mottling virus, a novel potyvirid infecting Medicago sativa L. 94%
"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.