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◆ Virus evolution2026-01-01

Shared quasispecies architecture in experimental and natural RNA virus populations.

Samuel Martínez-Alcalá, Iker Atienza-Diez, Pilar Somovilla, Brenda Martínez-González, Celia Perales, Luis F Seoane, Ester Lázaro, Susanna Manrubia

原始摘要(英文原文)· Original abstract
RNA viruses form genetically diverse populations structured as mutant spectra, or quasispecies, whose internal organization influences their evolutionary and adaptive dynamics. While genetic diversity has been extensively characterized, the structural organization of viral populations in sequence space remains less explored. Here, we compare genotype network architectures in two RNA viruses with markedly different evolutionary contexts: bacteriophage Qβ evolving in controlled laboratory conditions and severe acute respiratory syndrome coronavirus 2 evolving within infected human hosts. Using deep sequencing data, we reconstruct the genotype network of mutationally coupled variants within viral populations and analyse their topological properties. Despite large differences in genome size, mutation rate, and ecological setting, both viruses exhibit a common organization: a highly abundant central haplotype surrounded by layers of variants of diminishing abundance as Hamming distance to the central haplotype increases. All reconstructed networks share qualitative and quantitative topological features, displaying a hierarchical structure. The robust organization of both populations under multiple conditions suggests that RNA viruses may share a common genotype network architecture governed by fundamental properties of sequence space and the generic mechanisms of replication and mutation. Genotype networks provide a unifying framework to describe viral population structure beyond conventional diversity measures and, by revealing how local constraints shape mutational search, offers insights into the predictability of viral evolution.
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Shared quasispecies architecture in experimental and natural RNA virus populations. — 科研速览 Science Skim