Pithoviruses are invaded by repeats that contribute to their evolution and divergence from cedratviruses

Author:

Rigou SofiaORCID,Schmitt AlainORCID,Alempic Jean-MarieORCID,Lartigue AudreyORCID,Vendloczki Peter,Abergel ChantalORCID,Claverie Jean-MichelORCID,Legendre MatthieuORCID

Abstract

AbstractPithoviridaeare amoeba-infecting giant viruses possessing the largest viral particles known so far. Since the discovery ofPithovirus sibericum, recovered from a 30,000-y-old permafrost sample, other pithoviruses, and related cedratviruses, were isolated from various terrestrial and aquatic samples. Here we report the isolation and genome sequencing of twoPithoviridaefrom soil samples, in addition to three other recent isolates. Using the 12 available genome sequences, we conducted a thorough comparative genomics study of thePithoviridaefamily to decipher the organization and evolution of their genomes. Our study reveals a non-uniform genome organization in two main regions: one concentrating core genes, and another gene duplications. We also found thatPithoviridaegenomes are more conservative than other families of giant viruses, with a low and stable proportion (5% to 7%) of genes originating from horizontal transfers. Genome size variation within the family is mainly due to variations in gene duplication rates (from 14% to 28%) and massive invasion by inverted repeats. While these repeated elements are absent from cedratviruses, repeat-rich regions cover as much as a quarter of the pithoviruses genomes. These regions, identified using a dedicated pipeline, are hotspots of mutations, gene capture events and genomic rearrangements, that contribute to their evolution.

Publisher

Cold Spring Harbor Laboratory

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