ArticleSystematic biology2022
Phase Resolution of Heterozygous Sites in Diploid Genomes is Important to Phylogenomic Analysis under the Multispecies Coalescent Model.
Article in Systematic biology, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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15 citing papers in PubMed, 25 citations in OpenAlex.
- Scaling up Bayesian population phylogenomics through virtual dimension reduction.Nature communications · 2026Article
- Selecting a Window Size for Phylogenomic Analyses of Whole Genome Alignments Using AIC.Systematic biology · 2026Article
- Impact of Data Error on Phylogenetic Network Inference from Gene Trees Under the Multispecies Network Coalescent.Methods in molecular biology (Clifton, N.J.) · 2026Article
- Inference of Cross-Species Gene Flow Using Genomic Data Depends on the Methods: Case Study of Gene Flow in Drosophila.Systematic biology · 2025Article
- The Impact of Sequencing and Genotyping Errors on Bayesian Analysis of Genomic Data under the Multispecies Coalescent Model.Molecular biology and evolution · 2025Article
- Article
- European farmhouse brewing yeasts form a distinct genetic group.Applied microbiology and biotechnology · 2024Article
- Speciation on the Roof of the World: Parallel Fast Evolution of Cryptic Mole Vole Species in the Pamir-Alay-Tien Shan Region.Life (Basel, Switzerland) · 2023Article
- Estimation of species divergence times in presence of cross-species gene flow.Systematic biology · 2023Article
- Power of Bayesian and Heuristic Tests to Detect Cross-Species Introgression with Reference to Gene Flow in the Tamias quadrivittatus Group of North American Chipmunks.Systematic biology · 2023Article
- Genome Evolution and the Future of Phylogenomics of Non-Avian Reptiles.Animals : an open access journal from MDPI · 2023Review
- Full-Likelihood Genomic Analysis Clarifies a Complex History of Species Divergence and Introgression: The Example of the erato-sara Group of Heliconius Butterflies.Systematic biology · 2022Article
- Bayesian Phylogenetic Inference using Relaxed-clocks and the Multispecies Coalescent.Molecular biology and evolution · 2022Article
- Geographic Mosaic of Extensive Genetic Variations in Subterranean Mole VolesLife (Basel, Switzerland) · 2022Article
- Estimation of Cross-Species Introgression Rates Using Genomic Data Despite Model Unidentifiability.Molecular biology and evolution · 2022Article
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Authors and funding
5 authors at 4 institutions in 3 countries.
Funding
Abstract
Genome sequencing projects routinely generate haploid consensus sequences from diploid genomes, which are effectively chimeric sequences with the phase at heterozygous sites resolved at random. The impact of phasing errors on phylogenomic analyses under the multispecies coalescent (MSC) model is largely unknown. Here, we conduct a computer simulation to evaluate the performance of four phase-resolution strategies (the true phase resolution, the diploid analytical integration algorithm which averages over all phase resolutions, computational phase resolution using the program PHASE, and random resolution) on estimation of the species tree and evolutionary parameters in analysis of multilocus genomic data under the MSC model. We found that species tree estimation is robust to phasing errors when species divergences were much older than average coalescent times but may be affected by phasing errors when the species tree is shallow. Estimation of parameters under the MSC model with and without introgression is affected by phasing errors. In particular, random phase resolution causes serious overestimation of population sizes for modern species and biased estimation of cross-species introgression probability. In general, the impact of phasing errors is greater when the mutation rate is higher, the data include more samples per species, and the species tree is shallower with recent divergences. Use of phased sequences inferred by the PHASE program produced small biases in parameter estimates. We analyze two real data sets, one of East Asian brown frogs and another of Rocky Mountains chipmunks, to demonstrate that heterozygote phase-resolution strategies have similar impacts on practical data analyses. We suggest that genome sequencing projects should produce unphased diploid genotype sequences if fully phased data are too challenging to generate, and avoid haploid consensus sequences, which have heterozygous sites phased at random. In case the analytical integration algorithm is computationally unfeasible, computational phasing prior to population genomic analyses is an acceptable alternative. [BPP; introgression; multispecies coalescent; phase; species tree.].
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