Linkage- and association-based methods have been proposed for mapping disease-causing rare variants. Based on the family information provided in the Genetic Analysis Workshop 17 data set, we formulate a two-pronged approach that combines both methods. Using the identity-by-descent information provided for eight extended pedigrees (n = 697) and the simulated quantitative trait Q1, we explore various traditional nonparametric linkage analysis methods; the best result is obtained by assuming between-family heterogeneity and applying the Haseman-Elston regression to each pedigree separately. We discover strong signals from two genes in two different families and weaker signals for a third gene from two other families. As an exploratory appro...
Biological and empirical evidence suggests that rare variants account for a large proportion of the ...
Recent breakthroughs in next-generation sequencing technologies allow cost-effective methods for mea...
Recent advances in next-generation sequencing technologies have made it possible to generate large a...
Rare genetic variants are thought to be important components in the causality of many diseases but d...
Recent breakthroughs in next-generation sequencing technologies allow cost-effective methods for mea...
In the quest for the missing heritability of most complex diseases, rare variants have received incr...
Genetic association analyses have successfully identified thousands of genetic variants contributing...
Rare variants are becoming the new candidates in the search for genetic variants that predispose ind...
Sequencing and exome-chip technologies have motivated development of novel statistical tests to iden...
© 2016 The Author(s). Both population-based and family-based designs are commonly used in genetic as...
Genome-wide association studies have been able to identify disease associations with many common var...
Rare genetic variants are thought to be important components in the causality of many diseases but d...
Current rare-variant, gene-based tests of association often suffer from a lack of statistical power ...
Biological and empirical evidence suggests that rare variants account for a large proportion of the ...
The advance of high-throughput next-generation sequencing technology makes possible the analysis of ...
Biological and empirical evidence suggests that rare variants account for a large proportion of the ...
Recent breakthroughs in next-generation sequencing technologies allow cost-effective methods for mea...
Recent advances in next-generation sequencing technologies have made it possible to generate large a...
Rare genetic variants are thought to be important components in the causality of many diseases but d...
Recent breakthroughs in next-generation sequencing technologies allow cost-effective methods for mea...
In the quest for the missing heritability of most complex diseases, rare variants have received incr...
Genetic association analyses have successfully identified thousands of genetic variants contributing...
Rare variants are becoming the new candidates in the search for genetic variants that predispose ind...
Sequencing and exome-chip technologies have motivated development of novel statistical tests to iden...
© 2016 The Author(s). Both population-based and family-based designs are commonly used in genetic as...
Genome-wide association studies have been able to identify disease associations with many common var...
Rare genetic variants are thought to be important components in the causality of many diseases but d...
Current rare-variant, gene-based tests of association often suffer from a lack of statistical power ...
Biological and empirical evidence suggests that rare variants account for a large proportion of the ...
The advance of high-throughput next-generation sequencing technology makes possible the analysis of ...
Biological and empirical evidence suggests that rare variants account for a large proportion of the ...
Recent breakthroughs in next-generation sequencing technologies allow cost-effective methods for mea...
Recent advances in next-generation sequencing technologies have made it possible to generate large a...