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Diversity, taxonomy, and evolution of archaeal viruses of the class Caudoviricetes.

Authors :
Liu, Ying
Demina, Tatiana A.
Roux, Simon
Aiewsakun, Pakorn
Kazlauskas, Darius
Simmonds, Peter
Prangishvili, David
Oksanen, Hanna M.
Krupovic, Mart
Source :
PLoS Biology. 11/9/2021, Vol. 19 Issue 11, p1-26. 26p. 6 Diagrams, 1 Chart.
Publication Year :
2021

Abstract

The archaeal tailed viruses (arTV), evolutionarily related to tailed double-stranded DNA (dsDNA) bacteriophages of the class Caudoviricetes, represent the most common isolates infecting halophilic archaea. Only a handful of these viruses have been genomically characterized, limiting our appreciation of their ecological impacts and evolution. Here, we present 37 new genomes of haloarchaeal tailed virus isolates, more than doubling the current number of sequenced arTVs. Analysis of all 63 available complete genomes of arTVs, which we propose to classify into 14 new families and 3 orders, suggests ancient divergence of archaeal and bacterial tailed viruses and points to an extensive sharing of genes involved in DNA metabolism and counter defense mechanisms, illuminating common strategies of virus–host interactions with tailed bacteriophages. Coupling of the comparative genomics with the host range analysis on a broad panel of haloarchaeal species uncovered 4 distinct groups of viral tail fiber adhesins controlling the host range expansion. The survey of metagenomes using viral hallmark genes suggests that the global architecture of the arTV community is shaped through recurrent transfers between different biomes, including hypersaline, marine, and anoxic environments. Comparative genomics and host range analysis reveals the remarkable diversity and evolution of tailed archaeal viruses of the order Caudoviricetes, which together with their bacterial relatives arguably represent the most abundant and widespread virus group on our planet. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15449173
Volume :
19
Issue :
11
Database :
Academic Search Index
Journal :
PLoS Biology
Publication Type :
Academic Journal
Accession number :
153477511
Full Text :
https://doi.org/10.1371/journal.pbio.3001442