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Updated: Jan 14, 2026

Infinium Assay for Large-scale SNP Genotyping Applications
Published on: November 19, 2013
Identification of significant SNPs and the quantification of correlation using genomic informational field theory
Scott Gadsby1, Cyril Rauch2, Jonathan Ad Wattis1
1Cenre for Mathematical Medicine and Biology, School of Mathematical Sciences, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.
Abstract:
Given data on genotypes and phenotypes from a sample population, we show how ordering the data by phenotype and analysing the information contained in the corresponding list of genotypes can identify those SNPs which have a significant correlation with phenotype. We derive formulae for p-values to quantify the significance of each SNP, and show how to analyse the correlations between different SNPs. As well as using classical covariance and correlations, we introduce an information-theoretic measure of correlation which is based on Shannon's informational entropy. This variational formulation also gives rise to other ways of determining the strength of a SNP's influence on phenotype in a biallelic population using 'field' functions which account for the relationship between phenotype and genotype. By computing this field for each SNP, we are able to quantify the correlations between SNPs. The results are shown to depend on the number of each genostate (aa, Aa and AA) in the population in a predictable manner. The methods are illustrated using data on horse height.
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