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Updated: Dec 2, 2025

Targeted DNA Methylation Analysis by Next-generation Sequencing
Published on: February 24, 2015
TreeMap: a structured approach to fine mapping of eQTL variants
Li Liu1,2, Pramod Chandrashekar1,2, Biao Zeng3
1College of Health Solutions, Arizona State University, Phoenix, AZ 85004, USA.
Motivation:
Expression quantitative trait loci (eQTL) harbor genetic variants modulating gene transcription. Fine mapping of regulatory variants at these loci is a daunting task due to the juxtaposition of causal and linked variants at a locus as well as the likelihood of interactions among multiple variants. This problem is exacerbated in genes with multiple cis-acting eQTL, where superimposed effects of adjacent loci further distort the association signals.
Results:
We developed a novel algorithm, TreeMap, that identifies putative causal variants in cis-eQTL accounting for multisite effects and genetic linkage at a locus. Guided by the hierarchical structure of linkage disequilibrium, TreeMap performs an organized search for individual and multiple causal variants. Via extensive simulations, we show that TreeMap detects co-regulating variants more accurately than current methods. Furthermore, its high computational efficiency enables genome-wide analysis of long-range eQTL. We applied TreeMap to GTEx data of brain hippocampus samples and transverse colon samples to search for eQTL in gene bodies and in 4 Mbps gene-flanking regions, discovering numerous distal eQTL. Furthermore, we found concordant distal eQTL that were present in both brain and colon samples, implying long-range regulation of gene expression.
Availability And Implementation:
TreeMap is available as an R package enabled for parallel processing at https://github.com/liliulab/treemap.
Supplementary Information:
Supplementary data are available at Bioinformatics online.
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