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◆ Molecular genetics and genomics : MGG2026-09-09

Discovery and evolution of endogenous retroviruses in the genome of crab-eating macaque (Macaca fascicularis).

Wenhui Shi, Lichen Mao, Yaning Chen, Ndjekadom Alfred, Yutong Fu, Yingying Bao, Xiaochun Wang, Yuwei Liu, Shixing Yang, Likai Ji, Chenglin Zhou, Juan Xu, Wang Li, Tongling Shan, Jiangqiang Wang, Wen Zhang, Quan Shen

原始摘要(英文原文)· Original abstract
Endogenous retroviruses (ERVs) are a dynamic and biologically significant component of vertebrate genomes, with integration events spanning deep evolutionary time. The crab-eating macaque (Macaca fascicularis) is an important non-human primate model for biomedical research because of its close phylogenetic relationship to humans and its conservation status as an endangered species. However, the ERV complement of its genome has not been systematically characterized. Using the current highest-quality chromosome-level genome assembly for this species, we performed a genome-wide, homology-based survey of relatively intact ERV proviruses in M. fascicularis. We identified 106 proviral loci distributed across all chromosomes. Phylogenetic reconstruction based on conserved reverse transcriptase domains classified these elements into β-, γ-, and unclassified lineages, with β- and γ-retroviral lineages predominating. LTR divergence-based dating indicated that these proviruses represent multiple waves of historical retroviral activity and span a broad range of integration ages. This curated dataset provides a high-confidence reference set for investigating the evolutionary history and genomic impact of preserved ERV proviruses in an endangered primate model; however, it does not include degraded ERV fragments or solo LTRs.
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Discovery and evolution of endogenous retroviruses in the genome of crab-eating macaque (Macaca fascicularis). — 科研速览 Science Skim