Identification of expression quantitative trait loci by the interaction analysis using genetic algorithm

被引:0
|
作者
Junghyun Namkung
Jin-Wu Nam
Taesung Park
机构
[1] Seoul National University,Bioinformatics Program at College of Natural Science
[2] San 56-1,Department of Statistics
[3] Sillim-dong,undefined
[4] Seoul National University,undefined
[5] 56-1 Shillim-Dong,undefined
关键词
Genetic Algorithm; Local Search; Acute Lymphocytic Leukemia; Exhaustive Search; Linkage Disequilibrium Block;
D O I
10.1186/1753-6561-1-S1-S69
中图分类号
学科分类号
摘要
Many genes with major effects on quantitative traits have been reported to interact with other genes. However, finding a group of interacting genes from thousands of SNPs is challenging. Hence, an efficient and robust algorithm is needed. The genetic algorithm (GA) is useful in searching for the optimal solution from a very large searchable space. In this study, we show that genome-wide interaction analysis using GA and a statistical interaction model can provide a practical method to detect biologically interacting loci. We focus our search on transcriptional regulators by analyzing gene × gene interactions for cancer-related genes. The expression values of three cancer-related genes were selected from the expression data of the Genetic Analysis Workshop 15 Problem 1 data set. We implemented a GA to identify the expression quantitative trait loci that are significantly associated with expression levels of the cancer-related genes. The time complexity of the GA was compared with that of an exhaustive search algorithm. As a result, our GA, which included heuristic methods, such as archive, elitism, and local search, has greatly reduced computational time in a genome-wide search for gene × gene interactions. In general, the GA took one-fifth the computation time of an exhaustive search for the most significant pair of single-nucleotide polymorphisms.
引用
收藏
相关论文
共 50 条
  • [41] Identification of context-dependent expression quantitative trait loci in whole blood
    Daria V Zhernakova
    Patrick Deelen
    Martijn Vermaat
    Maarten van Iterson
    Michiel van Galen
    Wibowo Arindrarto
    Peter van 't Hof
    Hailiang Mei
    Freerk van Dijk
    Harm-Jan Westra
    Marc Jan Bonder
    Jeroen van Rooij
    Marijn Verkerk
    P Mila Jhamai
    Matthijs Moed
    Szymon M Kielbasa
    Jan Bot
    Irene Nooren
    René Pool
    Jenny van Dongen
    Jouke J Hottenga
    Coen D A Stehouwer
    Carla J H van der Kallen
    Casper G Schalkwijk
    Alexandra Zhernakova
    Yang Li
    Ettje F Tigchelaar
    Niek de Klein
    Marian Beekman
    Joris Deelen
    Diana van Heemst
    Leonard H van den Berg
    Albert Hofman
    André G Uitterlinden
    Marleen M J van Greevenbroek
    Jan H Veldink
    Dorret I Boomsma
    Cornelia M van Duijn
    Cisca Wijmenga
    P Eline Slagboom
    Morris A Swertz
    Aaron Isaacs
    Joyce B J van Meurs
    Rick Jansen
    Bastiaan T Heijmans
    Peter A C 't Hoen
    Lude Franke
    Nature Genetics, 2017, 49 : 139 - 145
  • [42] Comparison of strategies for identification of regulatory quantitative trait loci of transcript expression traits
    Nora Franceschini
    Mary K Wojczynski
    Harald HH Göring
    Juan Manuel Peralta
    Thomas D Dyer
    Xia Li
    Hao Li
    Kari E North
    BMC Proceedings, 1 (Suppl 1)
  • [43] Identification of quantitative trait loci for carcass and growth traits in swine using principal components analysis
    Stearns, T. M.
    Rodriguez-Zas, S. L.
    Beever, J. E.
    Ellis, M.
    McKeith, F.
    Southey, B. R.
    Hartschuh, J.
    Feltes, R. J.
    JOURNAL OF DAIRY SCIENCE, 2004, 87 : 379 - 379
  • [44] Identification of quantitative trait loci for carcass and growth traits in swine using principal components analysis
    Stearns, T. M.
    Rodriguez-Zas, S. L.
    Beever, J. E.
    Ellis, M.
    McKeith, F.
    Southey, B. R.
    Hartschuh, J.
    Feltes, R. J.
    POULTRY SCIENCE, 2004, 83 : 379 - 379
  • [45] Identification of quantitative trait loci for carcass and growth traits in swine using principal components analysis
    Stearns, T. M.
    Rodriguez-Zas, S. L.
    Beever, J. E.
    Ellis, M.
    McKeith, F.
    Southey, B. R.
    Hartschuh, J.
    Feltes, R. J.
    JOURNAL OF ANIMAL SCIENCE, 2004, 82 : 379 - 379
  • [46] Quantitative trait loci and gene interaction: the quantitative genetics of metapopulations
    Goodnight, CJ
    HEREDITY, 2000, 84 (05) : 587 - 598
  • [47] Quantitative trait loci and gene interaction: the quantitative genetics of metapopulations
    Charles J Goodnight
    Heredity, 2000, 84 : 587 - 598
  • [48] Expression Quantitative Trait Loci in Human Myocardium
    Muehlschlegel, Jochen
    Liu, Kuang-Yu
    Aranki, Sary
    Seidman, Christine E.
    Body, Simon C.
    Seidman, Jon
    CIRCULATION, 2012, 126 (21)
  • [49] Quantitative Trait Loci Analysis in Animals
    C Haley
    Heredity, 2002, 88 (6) : 486 - 486
  • [50] EXPRESSION QUANTITATIVE TRAIT LOCI AND THE PHENOGEN DATABASE
    Saba, Laura
    Hoffman, Paula L.
    Hornbaker, Cheryl
    Bhave, Sanjiv V.
    Tabakoff, Boris
    ALCOHOL RESEARCH & HEALTH, 2008, 31 (03) : 272 - 274