Time-series metaproteogenomics of a high-CO2 aquifer reveals active viruses with fluctuating abundances and broad host ranges

Author:

Moore Carrie Julia1,Bornemann Till L V12,Figueroa-Gonzalez Perla Abigail1,Esser Sarah P1,Moraru Cristina1,Soares André Rodrigues12,Hinzke Tjorven34,Trautwein-Schult Anke5,Maaß Sandra5,Becher Dörte5,Starke Joern1,Plewka Julia1,Rothe Lousia2,Probst Alexander J12

Affiliation:

1. Environmental Metagenomics, Research Centre One Health Ruhr of the University Alliance Ruhr, Faculty of Chemistry, University Duisburg-Essen , 45141 Essen , Germany

2. Centre of Water and Environmental Research (ZWU), University of Duisburg-Essen, Universitätsstraße 5 , 45141 Essen , Germany

3. Department for Microbial Physiology and Molecular Biology, Institute of Microbiology, University of Greifswald , 17489 Greifswald , Germany

4. Department of Pathogen Evolution, Helmholtz Institute for One Health , 17489 Greifswald , Germany

5. Microbial Proteomics, Institute of Microbiology, University of Greifswald , 17489 Greifswald , Germany

Abstract

Abstract Ecosystems subject to mantle degassing are of particular interest for understanding global biogeochemistry, as their microbiomes are shaped by prolonged exposure to high CO2 and have recently been suggested to be highly active. While the genetic diversity of bacteria and archaea in these deep biosphere systems have been studied extensively, little is known about how viruses impact these microbial communities. Here, we show that the viral community in a high-CO2 cold-water geyser (Wallender Born, Germany) undergoes substantial fluctuations over a period of 12 days, although the corresponding prokaryotic community remains stable, indicating a newly observed “infect to keep in check” strategy that maintains prokaryotic community structure. We characterized the viral community using metagenomics and metaproteomics, revealing 8 654 viral operational taxonomic units (vOTUs). CRISPR spacer-to-protospacer matching linked 278 vOTUs to 32 hosts, with many vOTUs sharing hosts from different families. High levels of viral structural proteins present in the metaproteome (several structurally annotated based on AlphaFold models) indicate active virion production at the time of sampling. Viral genomes expressed many proteins involved in DNA metabolism and manipulation, and encoded for auxiliary metabolic genes, which likely bolster phosphate and sulfur metabolism of their hosts. The active viral community encodes genes to facilitate acquisition and transformation of host nutrients, and appears to consist of many nutrient-demanding members, based on abundant virion proteins. These findings indicate viruses are inextricably linked to the biogeochemical cycling in this high-CO2 environment and substantially contribute to prokaryotic community stability in the deep biosphere hotspots.

Funder

Ministerium für Kultur und Wissenschaft des Landes Nordrhein-Westfalen

German Research Foundation

University of Duisburg-Essen

Publisher

Oxford University Press (OUP)

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