Meta-analysis of whole genome sequencing/whole exome sequencing (WGS/WES) studies provides an attractive solution to the problem of collecting large sample sizes for discovering rare variants associated with complex phenotypes. Existing rare variant meta-analysis approaches are not scalable to biobank-scale WGS data. Here we present MetaSTAAR, a powerful and resource-efficient rare variant meta-analysis framework for large-scale WGS/WES studies. MetaSTAAR accounts for relatedness and population structure, can analyze both quantitative and dichotomous traits and boosts the power of rare variant tests by incorporating multiple variant functional annotations. Through meta-analysis of four lipid traits in 30,138 ancestrally diverse samples from...
There is heightened interest in using next-generation sequencing technologies to identify rare varia...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Meta-analysis of whole genome sequencing/whole exome sequencing (WGS/WES) studies provides an attrac...
Large-scale whole-genome sequencing studies have enabled the analysis of rare variants (RVs) associa...
There is heightened interest in using next-generation sequencing technologies to identify rare varia...
We propose a general statistical framework for meta-analysis of gene- or region-based multimarker ra...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Recent advances in sequencing technologies have made it possible to explore the influence of rare va...
Advances in exome sequencing and the development of exome genotyping arrays are enabling exploration...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
The majority of reported complex disease associations for common genetic variants have been identifi...
There is heightened interest in using next-generation sequencing technologies to identify rare varia...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Meta-analysis of whole genome sequencing/whole exome sequencing (WGS/WES) studies provides an attrac...
Large-scale whole-genome sequencing studies have enabled the analysis of rare variants (RVs) associa...
There is heightened interest in using next-generation sequencing technologies to identify rare varia...
We propose a general statistical framework for meta-analysis of gene- or region-based multimarker ra...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Recent advances in sequencing technologies have made it possible to explore the influence of rare va...
Advances in exome sequencing and the development of exome genotyping arrays are enabling exploration...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
The majority of reported complex disease associations for common genetic variants have been identifi...
There is heightened interest in using next-generation sequencing technologies to identify rare varia...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...
Meta-analysis of genome-wide association studies (GWASs) has led to the discoveries of many common v...