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Main Authors: Wang, Xiaojun, Feng, Xiaoyuan, Zhou, Zhichao, Li, Meng, Zhang, Rui
Format: Artículo científico
Language:en
Published: Molecular phylogenetics and evolution 2026
Subjects:
Online Access:https://pubmed.ncbi.nlm.nih.gov/41802644/
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author Wang, Xiaojun
Feng, Xiaoyuan
Zhou, Zhichao
Li, Meng
Zhang, Rui
author_facet Wang, Xiaojun
Feng, Xiaoyuan
Zhou, Zhichao
Li, Meng
Zhang, Rui
Wang, Xiaojun
Feng, Xiaoyuan
Zhou, Zhichao
Li, Meng
Zhang, Rui
collection PubMed - marine biology
contents A pre-LECA origin of giant viruses as revealed by polymerase-based time tree. Wang, Xiaojun Feng, Xiaoyuan Zhou, Zhichao Li, Meng Zhang, Rui Phylogeny Giant Viruses Evolution, Molecular Eukaryota DNA-Directed DNA Polymerase Fossils DNA-Directed RNA Polymerases The viral phylum Nucleocytoviricota (NCLDV) infects a wide range of eukaryotic hosts and exhibits genome complexities and virion sizes comparable to prokaryotes, blurring the boundaries between cellular life and viral entities. Despite significant advances from large-scale metagenomic surveys and identification of endogenous viral elements that expand our understanding of NCLDV's genomic diversity and host range, their evolutionary origin remains contentious. Here, we utilize DNA-directed DNA polymerase (DNAP) and RNA polymerase (RNAP), conserved markers across eukaryotes, prokaryotes, and NCLDVs, to leverage abundant eukaryotic fossils for dating the origins of NCLDVs. Phylogenetic analyses showed that NCLDV's DNAP and RNAP consistently form deep branches separate from their eukaryotic homologs. Molecular dating analyses further indicated that both DNAP and RNAP in NCLDV originated before the emergence of last eukaryotic common ancestor (LECA), findings which are robust across various dating settings. Notably, the estimated origin based on RNAP was older compared to DNAP, underscoring the need to identify additional orthologues shared with eukaryotes. Collectively, our findings represent the first attempt, to the best of our knowledge, to establish a reliable temporal framework for NCLDV evolution, supporting a pre-LECA origin of ancestral NCLDVs and suggesting a prolonged co-evolutionary history with their (proto-)eukaryotic hosts during eukaryogenesis.
format Artículo científico
id pubmed_41802644
institution PubMed
language en
publishDate 2026
publisher Molecular phylogenetics and evolution
record_format pubmed
spellingShingle A pre-LECA origin of giant viruses as revealed by polymerase-based time tree.
Wang, Xiaojun
Feng, Xiaoyuan
Zhou, Zhichao
Li, Meng
Zhang, Rui
Phylogeny
Giant Viruses
Evolution, Molecular
Eukaryota
DNA-Directed DNA Polymerase
Fossils
DNA-Directed RNA Polymerases
A pre-LECA origin of giant viruses as revealed by polymerase-based time tree. Wang, Xiaojun Feng, Xiaoyuan Zhou, Zhichao Li, Meng Zhang, Rui Phylogeny Giant Viruses Evolution, Molecular Eukaryota DNA-Directed DNA Polymerase Fossils DNA-Directed RNA Polymerases The viral phylum Nucleocytoviricota (NCLDV) infects a wide range of eukaryotic hosts and exhibits genome complexities and virion sizes comparable to prokaryotes, blurring the boundaries between cellular life and viral entities. Despite significant advances from large-scale metagenomic surveys and identification of endogenous viral elements that expand our understanding of NCLDV's genomic diversity and host range, their evolutionary origin remains contentious. Here, we utilize DNA-directed DNA polymerase (DNAP) and RNA polymerase (RNAP), conserved markers across eukaryotes, prokaryotes, and NCLDVs, to leverage abundant eukaryotic fossils for dating the origins of NCLDVs. Phylogenetic analyses showed that NCLDV's DNAP and RNAP consistently form deep branches separate from their eukaryotic homologs. Molecular dating analyses further indicated that both DNAP and RNAP in NCLDV originated before the emergence of last eukaryotic common ancestor (LECA), findings which are robust across various dating settings. Notably, the estimated origin based on RNAP was older compared to DNAP, underscoring the need to identify additional orthologues shared with eukaryotes. Collectively, our findings represent the first attempt, to the best of our knowledge, to establish a reliable temporal framework for NCLDV evolution, supporting a pre-LECA origin of ancestral NCLDVs and suggesting a prolonged co-evolutionary history with their (proto-)eukaryotic hosts during eukaryogenesis.
title A pre-LECA origin of giant viruses as revealed by polymerase-based time tree.
topic Phylogeny
Giant Viruses
Evolution, Molecular
Eukaryota
DNA-Directed DNA Polymerase
Fossils
DNA-Directed RNA Polymerases
url https://pubmed.ncbi.nlm.nih.gov/41802644/