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Viral Niche-partitioning: Comparative Genomics of Giant Viruses Across Environmental Gradients in a High Arctic Freshwater-saltwater Lake

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Journal ISME Commun
Date 2025 Jan 21
PMID 39834781
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Abstract

Giant viruses (GVs; ) impact the biology and ecology of a wide range of eukaryotic hosts, with implications for global biogeochemical cycles. Here, we investigated GV niche separation in highly stratified Lake A at the northern coast of Ellesmere Island, Nunavut, Canada. This lake is composed of a layer of ice-covered freshwater that overlies saltwater derived from the ancient Arctic Ocean, and it therefore provides a broad gradient of environmental conditions and ecological habitats, each with a distinct protist community and rich assemblages of associated GVs. The upper layer (mixolimnion) had measurable light and oxygen, and contained diverse GVs linked to photosynthetic protists, indicating adaptation to surface biotic and abiotic conditions. In contrast, the saline lower layer (monimolimnion), lacking oxygen and light, hosted GVs associated with predicted heterotrophic protists, some of which are known for a predatory lifestyle, and with several viral genes suggesting adaptation to deep-water anaerobic conditions. Our observations underscore the coupling between physical and chemical gradients, microeukaryotes and their associated GVs in Lake A, and provide insight into the potential for GVs to directly and indirectly impact host metabolism. There were similarities between the genetic composition of GVs and the metabolic processes of their potential hosts, implying co-evolution and niche-adaptation within the lake habitats. Notably, we found a greater presence of viral rhodopsins in deeper water layers, suggesting an evolutionary relationship with potential hosts capable of supplementing their energetic needs to thrive in low energy, anoxic conditions.

References
1.
Charvet S, Vincent W, Comeau A, Lovejoy C . Pyrosequencing analysis of the protist communities in a High Arctic meromictic lake: DNA preservation and change. Front Microbiol. 2012; 3:422. PMC: 3526917. DOI: 10.3389/fmicb.2012.00422. View

2.
Felipe Benites L, Stephens T, Van Etten J, James T, Christian W, Barry K . Hot springs viruses at Yellowstone National Park have ancient origins and are adapted to thermophilic hosts. Commun Biol. 2024; 7(1):312. PMC: 11003980. DOI: 10.1038/s42003-024-05931-1. View

3.
Besemer J, Lomsadze A, Borodovsky M . GeneMarkS: a self-training method for prediction of gene starts in microbial genomes. Implications for finding sequence motifs in regulatory regions. Nucleic Acids Res. 2001; 29(12):2607-18. PMC: 55746. DOI: 10.1093/nar/29.12.2607. View

4.
Roy A, Wang S, Meschede-Krasa B, Breffle J, Van Hooser S . An early phase of instructive plasticity before the typical onset of sensory experience. Nat Commun. 2020; 11(1):11. PMC: 6940391. DOI: 10.1038/s41467-019-13872-1. View

4.
Philosof A, Beja O . Bacterial, archaeal and viral-like rhodopsins from the Red Sea. Environ Microbiol Rep. 2013; 5(3):475-82. DOI: 10.1111/1758-2229.12037. View