Computational constraints currently limit exact multipoint linkage analysis to pedigrees of moderate size. We introduce new algorithms that allow analysis of larger pedigrees by reducing the time and memory requirements of the computation. We use the observed pedigree genotypes to reduce the number of inheritance patterns that need to be considered. The algorithms are implemented in a new version (version 2.1) of the software package GENEHUNTER. Performance gains depend on marker heterozygosity and on the number of pedigree members available for genotyping, but typically are 10–1,000-fold, compared with the performance of the previous release (version 2.0). As a result, families with up to 30 bits of inheritance information have been analyz...
Linkage disequilibrium arising from the recent admixture of genetically distinct populations can be ...
SummaryPrior to performance of linkage analysis, elimination of all Mendelian inconsistencies in the...
Motivation: Unravelling the genetic architecture of complex traits requires large amounts of data, s...
Single-nucleotide polymorphisms (SNPs) are rapidly replacing microsatellites as the markers of choic...
The new paradigm in genetics is more sequence analysis driven, but linkage studies are frequently ad...
Utilizing large pedigrees in linkage analysis is a computationally challenging task. The pedigree si...
Transition of genotyping methods from the use of sparse microsatellite markers to the use of high-de...
SummaryMultipoint linkage analysis of quantitative-trait loci (QTLs) has previously been restricted ...
Dense sets of hundreds of thousands of markers have been developed for genome-wide association studi...
Dense sets of hundreds of thousands of markers have been developed for genome-wide association studi...
The existence of new technologies, implemented in efficient platforms and workflows has made massive...
Methods based on variance components are powerful tools for linkage analysis of quantitative traits,...
We present a method for improving the power of linkage analysis by detecting chromosome segments sha...
The rapid decrease in the cost of DNA sequencing will enable its use for novel applications. Here, w...
Methods based on variance components are powerful tools for linkage analysis of quantitative traits,...
Linkage disequilibrium arising from the recent admixture of genetically distinct populations can be ...
SummaryPrior to performance of linkage analysis, elimination of all Mendelian inconsistencies in the...
Motivation: Unravelling the genetic architecture of complex traits requires large amounts of data, s...
Single-nucleotide polymorphisms (SNPs) are rapidly replacing microsatellites as the markers of choic...
The new paradigm in genetics is more sequence analysis driven, but linkage studies are frequently ad...
Utilizing large pedigrees in linkage analysis is a computationally challenging task. The pedigree si...
Transition of genotyping methods from the use of sparse microsatellite markers to the use of high-de...
SummaryMultipoint linkage analysis of quantitative-trait loci (QTLs) has previously been restricted ...
Dense sets of hundreds of thousands of markers have been developed for genome-wide association studi...
Dense sets of hundreds of thousands of markers have been developed for genome-wide association studi...
The existence of new technologies, implemented in efficient platforms and workflows has made massive...
Methods based on variance components are powerful tools for linkage analysis of quantitative traits,...
We present a method for improving the power of linkage analysis by detecting chromosome segments sha...
The rapid decrease in the cost of DNA sequencing will enable its use for novel applications. Here, w...
Methods based on variance components are powerful tools for linkage analysis of quantitative traits,...
Linkage disequilibrium arising from the recent admixture of genetically distinct populations can be ...
SummaryPrior to performance of linkage analysis, elimination of all Mendelian inconsistencies in the...
Motivation: Unravelling the genetic architecture of complex traits requires large amounts of data, s...