ArticleProceedings. Biological sciences2026
Characterizing the informativeness of pathogen genome sequence datasets about transmission between population groups.
Article in Proceedings. Biological sciences, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.
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1 citing paper in PubMed.
- Characterizing the informativeness of pathogen genome sequence datasets about transmission between population groups.Proceedings. Biological sciences · 2026Article
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4 authors.
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Abstract
Pathogen genome analysis helps characterize transmission between population groups. The information carried by pathogen sequences comes from the accumulation of mutations within their genomes; thus, the pace at which mutations accumulate should determine the granularity of transmission processes that pathogen sequences can characterize. Here, we investigate how the complex interplay between mutation, transmission, population mixing and sampling impacts study power. First, we develop a conceptual probabilistic framework to quantify the ability of pairs of sequences in capturing between-group transmission history. This allows us to comprehensively explore the space of possible phylogeographic analyses by explicitly considering the pace at which mutations accumulate and the pace at which between-group transmission events occur. Using this framework, we identify a pathogen-intrinsic limit in the mixing scale at which their sequence data remain informative, with faster mutating pathogens enabling finer spatial characterization. Second, we perform a simulation study exploring a range of assumptions regarding sequencing intensity. The sample size further imposes a limit on the characterization of between-group transmission processes. This work highlights inherent horizons of resolvability for population mixing processes that depend on the interaction between evolution, transmission, mixing and sampling. Such considerations are important for the design of pathogen genomic studies.
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