The global virome: How much diversity and how many independent origins?
- PMID: 36097140
- DOI: 10.1111/1462-2920.16207
The global virome: How much diversity and how many independent origins?
Abstract
Viruses are considered to be the most abundant biological entities on earth. They also display striking genetic diversity as emphatically demonstrated by the recent advances of metagenomics and metatranscriptomics. But what are the limits of this diversity, that is, how many virus species in the earth virome? By combining the available estimates of the number of prokaryote species with those of the virome size, we obtain back-of-the-envelope estimates of the total number of distinct virus species, which come out astronomically large, from about 107 to about 109 . The route of virus origins apparently involved non-viral replicators capturing and exapting various cellular proteins to become virus capsid subunits. How many times in the history of life has this happened? In other words, how many realms of viruses, the highest rank taxa that are supposed to be monophyletic, comprise the global virome? We argue that viruses emerged on a number (even if far from astronomical) independent occasions, so the number of realms will considerably increase from the current 6, by splitting some of the current realms, giving the realm status to some of the currently unclassified groups of viruses and discovery of new distinct groups.
© 2022 Society for Applied Microbiology and John Wiley & Sons Ltd.
References
REFERENCES
-
- Curtis, T.P., Sloan, W.T. & Scannell, J.W. (2002) Estimating prokaryotic diversity and its limits. Proceedings of the National Academy of Sciences of the United States of America, 99, 10494-10499.
-
- Dolja, V.V. & Koonin, E.V. (2018) Metagenomics reshapes the concepts of RNA virus evolution by revealing extensive horizontal virus transfer. Virus Research, 244, 36-52.
-
- Dutilh, B.E. (2014) Metagenomic ventures into outer sequence space. Bacteriophage, 4, e979664.
-
- Edgar, R.C., Taylor, J., Lin, V., Altman, T., Barbera, P., Meleshko, D. et al. (2022) Petabase-scale sequence alignment catalyses viral discovery. Nature, 602, 142-147.
-
- Gaïa, M., Meng, L., Pelletier, E., Forterre, P., Vanni, C., Fernandez-Guerra, A. et al. (2022) Plankton-infecting relatives of herpesviruses clarify the evolutionary trajectory of giant viruses. bioRxiv. https://doi.org/10.1101/2021.12.27.474232v2
Publication types
MeSH terms
LinkOut - more resources
Full Text Sources