Genetic mapping on fully sequenced individuals is transforming understanding of the relationship between molecular variation and variation in complex traits. Here we report a combined sequence and genetic mapping analysis in outbred rats that maps 355 quantitative trait loci for 122 phenotypes. We identify 35 causal genes involved in 31 phenotypes, implicating new genes in models of anxiety, heart disease and multiple sclerosis. The relationship between sequence and genetic variation is unexpectedly complex: at approximately 40% of quantitative trait loci, a single sequence variant cannot account for the phenotypic effect. Using comparable sequence and mapping data from mice, we show that the extent and spatial pattern of variation in inbre...
Large numbers of inbred laboratory rat strains have been developed for a range of complex disease ph...
Progress in complex trait mapping in mice has been accelerated by the development of new populations...
More than a thousand quantitative trait loci (QTLs) relevant to many aspects of complex human diseas...
Genetic mapping on fully sequenced individuals is transforming understanding of the relationship bet...
Genetic mapping on fully sequenced individuals is transforming understanding of the relationship bet...
The fundamental theme my thesis explores is the relationship between genetic variation and phenotypi...
Finding genetic variants that contribute to phenotypic variation is one of the main challenges of mo...
The laboratory rat (Rattus norvegicus) is a key tool for the study of medicine and pharmacology for ...
The laboratory rat (Rattus norvegicus) is a key tool for the study of medicine and pharmacology for ...
Behavioral differences between inbred strains of mice and rats have a genetic basis that can now be ...
Exploring the relation between genotype and phenotype is essential in understanding the mechanisms u...
Heterogeneous Stock (HS) populations allow for fine-resolution genetic mapping of a variety of compl...
Large numbers of inbred laboratory rat strains have been developed for a range of complex disease ph...
Large numbers of inbred laboratory rat strains have been developed for a range of complex disease ph...
Progress in complex trait mapping in mice has been accelerated by the development of new populations...
More than a thousand quantitative trait loci (QTLs) relevant to many aspects of complex human diseas...
Genetic mapping on fully sequenced individuals is transforming understanding of the relationship bet...
Genetic mapping on fully sequenced individuals is transforming understanding of the relationship bet...
The fundamental theme my thesis explores is the relationship between genetic variation and phenotypi...
Finding genetic variants that contribute to phenotypic variation is one of the main challenges of mo...
The laboratory rat (Rattus norvegicus) is a key tool for the study of medicine and pharmacology for ...
The laboratory rat (Rattus norvegicus) is a key tool for the study of medicine and pharmacology for ...
Behavioral differences between inbred strains of mice and rats have a genetic basis that can now be ...
Exploring the relation between genotype and phenotype is essential in understanding the mechanisms u...
Heterogeneous Stock (HS) populations allow for fine-resolution genetic mapping of a variety of compl...
Large numbers of inbred laboratory rat strains have been developed for a range of complex disease ph...
Large numbers of inbred laboratory rat strains have been developed for a range of complex disease ph...
Progress in complex trait mapping in mice has been accelerated by the development of new populations...
More than a thousand quantitative trait loci (QTLs) relevant to many aspects of complex human diseas...