Thousands-years-old deep-sea DNA viruses reveal the evolution of human pathogenic viruses.

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Main Authors: He, Tianliang, Zhang, Xinyi, Zhang, Xiaobo
Format: Artículo científico
Language:en
Published: Journal of advanced research 2026
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author He, Tianliang
Zhang, Xinyi
Zhang, Xiaobo
author_facet He, Tianliang
Zhang, Xinyi
Zhang, Xiaobo
He, Tianliang
Zhang, Xinyi
Zhang, Xiaobo
collection PubMed - marine biology
contents Thousands-years-old deep-sea DNA viruses reveal the evolution of human pathogenic viruses. He, Tianliang Zhang, Xinyi Zhang, Xiaobo Humans DNA Viruses Geologic Sediments Phylogeny Virome Evolution, Molecular Metagenomics Seawater Oceans and Seas Genome, Viral In the last two decades, outbreaks of pathogenic viruses have led to significant human mortality and economic repercussions. Despite extensive investigations into tracing these viruses in terrestrial environments, their origins remain enigmatic. The Earth's biosphere encompasses both sunlight-dependent terrestrial and surface ocean ecosystems, as well as the sunlight-independent deep-sea ecosystem. However, the traceability of human pathogenic viruses in the deep sea has not been thoroughly explored. This study aimed to investigate the presence of human pathogenic viruses in the deep sea. In this study, we performed a viral metagenomic analysis using a global deep-sea sediment virome 2.0 dataset which contained 159 deep-sea sediment samples with geologic ages from 2,500 to 7,750 years. A total of 554,664 viral operational taxonomic units (vOTUs) were identified and further obtained 2,254 potential pathogenic viruses of vertebrates. Among them, 23 vOTUs exhibited high homology with 12 species of human pathogenic viruses which belonged to 4 viral families. Notably, variola virus, the first human pathogenic virus eradicated from humans and now only found in laboratories, was discovered in the ancient deep-sea sediments. The evolution analysis showed that these DNA viruses might represent the ancestors or variants of human pathogenic viruses, suggesting that the deep sea could be a crucial reservoir for human pathogenic viruses. Our findings present all the ancient pathogenic DNA viruses of humans found in the deep sea for the first time, highlighting the source of the future epidemics. It is imperative to implement the stringent virus monitoring and management measures for human activities in marine environments to address the emerging challenges of marine biosecurity and promote sustainable use of oceans.
format Artículo científico
id pubmed_40174641
institution PubMed
language en
publishDate 2026
publisher Journal of advanced research
record_format pubmed
spellingShingle Thousands-years-old deep-sea DNA viruses reveal the evolution of human pathogenic viruses.
He, Tianliang
Zhang, Xinyi
Zhang, Xiaobo
Humans
DNA Viruses
Geologic Sediments
Phylogeny
Virome
Evolution, Molecular
Metagenomics
Seawater
Oceans and Seas
Genome, Viral
Thousands-years-old deep-sea DNA viruses reveal the evolution of human pathogenic viruses. He, Tianliang Zhang, Xinyi Zhang, Xiaobo Humans DNA Viruses Geologic Sediments Phylogeny Virome Evolution, Molecular Metagenomics Seawater Oceans and Seas Genome, Viral In the last two decades, outbreaks of pathogenic viruses have led to significant human mortality and economic repercussions. Despite extensive investigations into tracing these viruses in terrestrial environments, their origins remain enigmatic. The Earth's biosphere encompasses both sunlight-dependent terrestrial and surface ocean ecosystems, as well as the sunlight-independent deep-sea ecosystem. However, the traceability of human pathogenic viruses in the deep sea has not been thoroughly explored. This study aimed to investigate the presence of human pathogenic viruses in the deep sea. In this study, we performed a viral metagenomic analysis using a global deep-sea sediment virome 2.0 dataset which contained 159 deep-sea sediment samples with geologic ages from 2,500 to 7,750 years. A total of 554,664 viral operational taxonomic units (vOTUs) were identified and further obtained 2,254 potential pathogenic viruses of vertebrates. Among them, 23 vOTUs exhibited high homology with 12 species of human pathogenic viruses which belonged to 4 viral families. Notably, variola virus, the first human pathogenic virus eradicated from humans and now only found in laboratories, was discovered in the ancient deep-sea sediments. The evolution analysis showed that these DNA viruses might represent the ancestors or variants of human pathogenic viruses, suggesting that the deep sea could be a crucial reservoir for human pathogenic viruses. Our findings present all the ancient pathogenic DNA viruses of humans found in the deep sea for the first time, highlighting the source of the future epidemics. It is imperative to implement the stringent virus monitoring and management measures for human activities in marine environments to address the emerging challenges of marine biosecurity and promote sustainable use of oceans.
title Thousands-years-old deep-sea DNA viruses reveal the evolution of human pathogenic viruses.
topic Humans
DNA Viruses
Geologic Sediments
Phylogeny
Virome
Evolution, Molecular
Metagenomics
Seawater
Oceans and Seas
Genome, Viral
url https://pubmed.ncbi.nlm.nih.gov/40174641/