ArticleEnvironmental microbiome2024
Exploring virus-host-environment interactions in a chemotrophic-based underground estuary.
Article in Environmental microbiome, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 10 citations in OpenAlex.
- Salinity-driven adaptations and evolution of DNA viruses in estuarine-coastal ecosystems.mSystems · 2026Article
- Isolation and genomic analysis of a novel Pseudomonas phage from karst cave in China.Archives of virology · 2026Article
- Viral Diversity of Coastal Restinga Soils From Southern Brazil.Environmental microbiology reports · 2026Article
- Virus-encoded metabolism may support environmental stress adaptation of microbial hosts in an estuarine hypoxic zone.Frontiers in microbiology · 2026Article
- An Innovative Binding-Protein-Based dsRNA Extraction Method: Comparison of Cost-Effectiveness of Virus Detection Methods Using High-Throughput Sequencing.Molecular ecology resources · 2025Article
- Metagenomic analysis reveals how multiple stressors disrupt virus-host interactions in multi-trophic freshwater mesocosms.Nature communications · 2025Article
- Salinity-driven shifts in estuarine viral community composition and diversity near the Shenzhen coast.Applied and environmental microbiology · 2025Article
- Genomic analysis of the novel Stenotrophomonas phage vB_Srh_LBjhp91a, isolated from a Karst cave in China.Archives of virology · 2025Article
- Uncovering the hidden RNA virus diversity in Lake Nam Co: Evolutionary insights from an extreme high-altitude environment.Proceedings of the National Academy of Sciences of the United States of America · 2025Article
- Cave Pools in Carlsbad Caverns National Park Contain Diverse Bacteriophage Communities and Novel Viral Sequences.Microbial ecology · 2024Article
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Authors and funding
8 authors at 5 institutions in 1 country.
Funding
Abstract
backgroundViruses play important roles in modulating microbial communities and influencing global biogeochemistry. There is now growing interest in characterising their ecological roles across diverse biomes. However, little is known about viral ecology in low-nutrient, chemotrophic-based environments. In such ecosystems, virus-driven manipulation of nutrient cycles might have profound impacts across trophic levels. In particular, anchialine environments, which are low-energy underground estuaries sustained by chemotrophic processes, represent ideal model systems to study novel virus-host-environment interactions.
resultsHere, we employ metagenomic sequencing to investigate the viral community in Bundera Sinkhole, an anchialine ecosystem rich in endemic species supported by microbial chemosynthesis. We find that the viruses are highly novel, with less than 2% representing described viruses, and are hugely abundant, making up as much as 12% of microbial intracellular DNA. These highly abundant viruses largely infect important prokaryotic taxa that drive key metabolic processes in the sinkhole. Further, the abundance of viral auxiliary metabolic genes (AMGs) involved in nucleotide and protein synthesis was strongly correlated with declines in environmental phosphate and sulphate concentrations. These AMGs encoded key enzymes needed to produce sulphur-containing amino acids, and phosphorus metabolic enzymes involved in purine and pyrimidine nucleotide synthesis. We hypothesise that this correlation is either due to selection of these AMGs under low phosphate and sulphate concentrations, highlighting the dynamic interactions between viruses, their hosts, and the environment; or, that these AMGs are driving increased viral nucleotide and protein synthesis via manipulation of host phosphorus and sulphur metabolism, consequently driving nutrient depletion in the surrounding water.
conclusionThis study represents the first metagenomic investigation of viruses in anchialine ecosystems, and provides new hypotheses and insights into virus-host-environment interactions in such 'dark', low-energy environments. This is particularly important since anchialine ecosystems are characterised by diverse endemic species, both in their microbial and faunal assemblages, which are primarily supported by microbial chemosynthesis. Thus, virus-host-environment interactions could have profound effects cascading through all trophic levels.
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