Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Estimating effective population size changes from preferentially sampled genetic sequences

Domain:

healthcare

Record type:

paper
Creator:
KarSuchard, Marc A.Dudas, GytisMin
Publisher:
arXiv
Host:avatar
Coalescent theory combined with statistical modeling allows us to estimate effective population size fluctuations from molecular sequences of individuals sampled from a population of interest. When sequences are sampled serially through time and the distribution of the sampling times depends on the effective population size, explicit statistical modeling of sampling times improves population size estimation. Previous work assumed that the genealogy relating sampled sequences is known and modeled sampling times as an inhomogeneous Poisson process with log-intensity equal to a linear function of the log-transformed effective population size. We improve this approach in two ways. First, we extend the method to allow for joint Bayesian estimation of the genealogy, effective population size trajectory, and other model parameters. Next, we improve the sampling time model by incorporating additional sources of information in the form of time-varying covariates. We validate our new modeling framework using a simulation study and apply our new methodology to analyses of population dynamics of seasonal influenza and to the recent Ebola virus outbreak in West Africa. 47 pages

Visit

doi.orgarxiv.org

Tags

Populations and Evolution (q-bio.PE)Methodology (stat.ME)FOS: Biological sciencesFOS: Biological sciencesFOS: Computer and information sciencesFOS: Computer and information sciences

Licenses

arXiv.org perpetual, non-exclusive licensehttp://arxiv.org/licenses/nonexclusive-distrib/1.0/

Similar

Recent human effective population size estimated from linkage disequilibriumHerpes simplex virus genomes from an under-sampled population in Namibia reveal novel genetic diversityUganda chicken genetic resources: II. genetic diversity and population demographic history inferred from mitochondrial DNA D-loop sequencesHorseshoe-based Bayesian nonparametric estimation of effective population size trajectoriesSmall Area Population Estimation: Estimating Population Size at Ward Level 2014 in South AfricaLinkage disequilibrium and past effective population size in native Tunisian cattle

Recent human effective population size estimated from linkage disequilibrium

Effective population size ( N e ) determines the amount of genetic variation, genetic drift, and li

Herpes simplex virus genomes from an under-sampled population in Namibia reveal novel genetic diversity

Abstract Herpes simplex virus (HSV) is an endemic pathogen, infecting most adults

Uganda chicken genetic resources: II. genetic diversity and population demographic history inferred from mitochondrial DNA D-loop sequences

The genetic diversity of indigenous chickens, which comprise over 80% of the chicken resources in Ug

Horseshoe-based Bayesian nonparametric estimation of effective population size trajectories

Phylodynamics is an area of population genetics that uses genetic sequence data to estimate past pop

Small Area Population Estimation: Estimating Population Size at Ward Level 2014 in South Africa

The census is the traditional source of population figures at various levels. Census figures however

Linkage disequilibrium and past effective population size in native Tunisian cattle

International audience To carry out effective genome-wide association studies, inform