The transmission/disequilibrium test: history, subdivision, and admixture.
- 1 August 1995
- journal article
- Vol. 57 (2) , 455-64
Abstract
Disease association with a genetic marker is often taken as a preliminary indication of linkage with disease susceptibility. However, population subdivision and admixture may lead to disease association even in the absence of linkage. In a previous paper, we described a test for linkage (and linkage disequilibrium) between a genetic marker and disease susceptibility; linkage is detected by this test only if association is also present. This transmission/disequilibrium test (TDT) is carried out with data on transmission of marker alleles from parents heterozygous for the marker to affected offspring. The TDT is a valid test for linkage and association, even when the association is caused by population subdivision and admixture. In the previous paper, we did not explicitly consider the effect of recent history on population structure. Here we extend the previous results by examining in detail the effects of subdivision and admixture, viewed as processes in population history. We describe two models for these processes. For both models, we analyze the properties of (a) the TDT as a test for linkage (and association) between marker and disease and (b) the conventional contingency statistic used with family data to test for population association. We show that the contingency test statistic does not have a chi 2 distribution if subdivision or admixture is present. In contrast, the TDT remains a valid chi 2 statistic for the linkage hypothesis, regardless of population history.This publication has 15 references indexed in Scilit:
- Insulin gene region–encoded susceptibility to type 1 diabetes is not restricted to HLA–DR4–positive individualsNature Genetics, 1992
- A Haplotype-Based Haplotype Relative Risk’ Approach to Detecting Allelic AssociationsHuman Heredity, 1992
- Insulin-IGF2 region on chromosome 11p encodes a gene implicated in HLA-DR4-dependent diabetes susceptibilityNature, 1991
- Statistical properties of the haplotype relative riskGenetic Epidemiology, 1989
- The insulin gene and susceptibility to IDDMGenetic Epidemiology, 1989
- Genetic analysis of IDDM: Summary of GAW5 IDDM resultsGenetic Epidemiology, 1989
- HLA DISEASE ASSOCIATIONS: Models for Insulin Dependent Diabetes Mellitus and the Study of Complex Human Genetic DisordersAnnual Review of Genetics, 1988
- Haplotype relative risks: an easy reliable way to construct a proper control sample for risk calculationsAnnals of Human Genetics, 1987
- HLA-DR effects in a large German IDDM datasetGenetic Epidemiology, 1986
- A Polymorphic Locus Near the Human Insulin Gene Is Associated with Insulin-dependent Diabetes MelliitusDiabetes, 1984