Scinovex
articleTop 1% cited

Statistical confidence for likelihood‐based paternity inference in natural populations

Molecular Ecology · 1998 · Vol. 7(5) · pp. 639–655
Tristan MarshallJon SlateLoeske E. B. KruukJ. M. Pemberton

Abstract

Paternity inference using highly polymorphic codominant markers is becoming common in the study of natural populations. However, multiple males are often found to be genetically compatible with each offspring tested, even when the probability of excluding an unrelated male is high. While various methods exist for evaluating the likelihood of paternity of each nonexcluded male, interpreting these likelihoods has hitherto been difficult, and no method takes account of the incomplete sampling and error-prone genetic data typical of large-scale studies of natural systems. We derive likelihood ratios for paternity inference with codominant markers taking account of typing error, and define a statistic delta for resolving paternity. Using allele frequencies from the study population in question, a simulation program generates criteria for delta that permit assignment of paternity to the most likely male with a known level of statistical confidence. The simulation takes account of the number of candidate males, the proportion of males that are sampled and gaps and errors in genetic data. We explore the potentially confounding effect of relatives and show that the method is robust to their presence under commonly encountered conditions. The method is demonstrated using genetic data from the intensively studied red deer (Cervus elaphus) population on the island of Rum, Scotland. The Windows-based computer program, CERVUS, described in this study is available from the authors. CERVUS can be used to calculate allele frequencies, run simulations and perform parentage analysis using data from all types of codominant markers.

Wildlife Ecology and ConservationGenetic and phenotypic traits in livestockGenetic diversity and population structureBiologyInferenceStatisticsPopulationStatisticStatistical inferenceAllele frequencyAlleleGeneticsDemography

MeSH terms

AnimalsComputer SimulationDeerFathersGene FrequencyLod ScoreMaleScotlandLikelihood FunctionsMicrosatellite Repeats

Funding

  • Scottish Natural Heritage
Citations
4,265
FWCI
53.66
field-weighted impact
References
64
Percentile
100%
vs. same field & year
Citations per year
References
Hybrid Zones and the Evolutionary Process.
Evolution · 1995 · 886 citations
Red Deer. Behavior and Ecology of Two Sexes
Journal of Animal Ecology · 1983 · 2,478 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.