This project focuses on the development of new methodology for the statistical genetic analysis of quantitative traits. During the past year work has continued on the development of a method that can be used to accurately measure the heritability attributable to specific single locus effects (ROMP/ROOP). This method is being applied in several ongoing collaborative projects. Work has also focused on the development of a new method that can be used to empirically estimate the type I error rate in genomic screening data without performing extensive simulations or theoretical approximations. This method uses the existing family structure and marker characteristics to obtain an appropriate estimate of the type I error rate of the genomic screen. In brief, a marker with a known chromosomal location can be used to generate a ?pseudo-trait? and tested for linkage to the remaining markers in the genomic screen that are non-syntenic. The distribution of the test statistic of the ?pseudo-trait? under the null hypothesis provides the basis for critical values derived as a percentage of this distribution that are then applied to a genomic screen between the actual trait and the markers used in the genomic screen. Other efforts include the development of a new method to measure the consistency of the estimates of heritability in longitudinal studies, evaluation of the variance components method under different ascertainment schemes, the use of single nucleotide polymorphisms (SNPs) as an alternative for micro-satellite markers in linkage analysis, and the use of moving averages and clustered markers as an alternative to multi-point linkage analysis.

Agency
National Institute of Health (NIH)
Institute
National Human Genome Research Institute (NHGRI)
Type
Intramural Research (Z01)
Project #
1Z01HG000200-02
Application #
6830517
Study Section
(IDRB)
Project Start
Project End
Budget Start
Budget End
Support Year
2
Fiscal Year
2003
Total Cost
Indirect Cost
Name
Human Genome Research
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Sung, Heejong; Ji, Fei; Levy, Deborah L et al. (2009) The power of linkage analysis of a disease-related endophenotype using asymmetrically ascertained sib pairs. Comput Stat Data Anal 53:1829-1842
Lekman, Magnus; Laje, Gonzalo; Charney, Dennis et al. (2008) The FKBP5-gene in depression and treatment response--an association study in the Sequenced Treatment Alternatives to Relieve Depression (STAR*D) Cohort. Biol Psychiatry 63:1103-10
Herrera-Galeano, J Enrique; Becker, Diane M; Wilson, Alexander F et al. (2008) A novel variant in the platelet endothelial aggregation receptor-1 gene is associated with increased platelet aggregability. Arterioscler Thromb Vasc Biol 28:1484-90
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Mandal, Diptasri M; Sorant, Alexa J M; Atwood, Larry D et al. (2006) Allele frequency misspecification: effect on power and Type I error of model-dependent linkage analysis of quantitative traits under random ascertainment. BMC Genet 7:21

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