Detection and localization of a single binary trait locus in experimental populations

Author:

McINTYRE LAUREN M.,COFFMAN CYNTHIA J.,DOERGE R. W.

Abstract

The advancements made in molecular technology coupled with statistical methodology have led to the successful detection and location of genomic regions (quantitative trait loci; QTL) associated with quantitative traits. Binary traits (e.g. susceptibility/resistance), while not quantitative in nature, are equally important for the purpose of detecting and locating significant associations with genomic regions. Existing interval regression methods used in binary trait analysis are adapted from quantitative trait analysis and the tests for regression coefficients are tests of effect, not detection. Additionally, estimates of recombination that fail to take into account varying penetrance perform poorly when penetrance is incomplete. In this work a complete probability model for binary trait data is developed allowing for unbiased estimation of both penetrance and recombination between a genetic marker locus and a binary trait locus for backcross and F2 experimental designs. The regression model is reparameterized allowing for tests of detection. Extensive simulations were conducted to assess the performance of estimation and testing in the proposed parameterization. The proposed parameterization was compared with interval regression via simulation. The results indicate that our parameterization shows equivalent estimation capabilities, requires less computational effort and works well with only a single marker.

Publisher

Hindawi Limited

Subject

Genetics,General Medicine

Cited by 24 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Detection of epistatic effects with logic regression and a classical linear regression model;Statistical Applications in Genetics and Molecular Biology;2014-01-01

2. Bayesian Genetic Mapping of Binary Trait Loci;Advances in Regression, Survival Analysis, Extreme Values, Markov Processes and Other Statistical Applications;2013

3. Binary Trait Mapping in Experimental Crosses With Selective Genotyping;Genetics;2009-07-01

4. Multiple-Interval Mapping for Quantitative Trait Loci With a Spike in the Trait Distribution;Genetics;2009-05-01

5. QTL Mapping in Intercross and Backcross Populations;Methods in Molecular Biology;2009

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