Linkage disequilibrium on the bovine X chromosome: Characterization and use in quantitative trait locus mapping

被引:21
|
作者
Sandor, Cynthia
Farnir, Frederic
Hansoul, Sarah
Coppieters, Wouter
Meuwissen, Theo
Georges, Michel
机构
[1] Univ Liege, Fac Vet Med, Unit Anim Genom, Dept Anim Prod, B-4000 Liege, Belgium
[2] Univ Liege, CBIG, B-4000 Liege, Belgium
[3] Norwegian Univ Life Sci, Dept Anim & Aquacultural Sci, N-1432 As, Norway
关键词
D O I
10.1534/genetics.106.059329
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
We herein demonstrate that in the Holstein-Friesian dairy cattle population, microsatellites are as polymorphic on the X chromosome as on the autosomes but that the level of linkage disequilibrium between these markers is higher on the X chromosome than on the autosomes. The latter observation is not compatible with the small male-to-female ratio that prevails in this population and results in a higher gonosomal than autosomal effective population size. It suggests that the X chromosome undergoes distinct selective or mutational forces. We describe and characterize a novel Markovian approach to exploit this linkage disequilibrium to compute the probability that two chromosomes are identical-by-descent conditional on flanking marker data. We use the ensuing probabilities in a restricted maximum-likelihood approach to search for quantitative trait loci (QTL) affecting 48 traits of importance to the dairy industry and provide evidence for the presence of QTL affecting 5 of these traits on the bovine X chromosome.
引用
收藏
页码:1777 / 1786
页数:10
相关论文
共 50 条
  • [41] A quantitative trait locus for live weight maps to bovine Chromosome 23
    Elo, KT
    Vilkki, J
    de Koning, DJ
    Velmala, RJ
    Mäki-Tanila, AV
    MAMMALIAN GENOME, 1999, 10 (08) : 831 - 835
  • [42] A quantitative trait locus for live weight maps to bovine Chromosome 23
    Kari T. Elo
    Johanna Vilkki
    Dirk-Jan de Koning
    Riikka J. Velmala
    Asko V. Mäki-Tanila
    Mammalian Genome, 1999, 10 : 831 - 835
  • [43] Linkage disequilibrium mapping of psoriasis susceptibility locus PSORS1 on chromosome 6
    Nair, R
    Stuart, P
    Henseler, T
    Jenisch, S
    Chia, N
    Westphal, E
    Arndt, J
    Epperson, J
    Christophers, E
    Voorhees, J
    Eldet, J
    JOURNAL OF INVESTIGATIVE DERMATOLOGY, 1999, 112 (04) : 640 - 640
  • [44] Fine mapping of multiple interacting quantitative trait loci using combined linkage disequilibrium and linkage information
    LEE Sang Hong
    VAN DER WERF J.H.Julius
    Journal of Zhejiang University(Science B:An International Biomedicine & Biotechnology Journal), 2007, (11) : 787 - 791
  • [45] The efficiency of designs for fine-mapping of quantitative trait loci using combined linkage disequilibrium and linkage
    Lee, SH
    van der Werf, JHJ
    GENETICS SELECTION EVOLUTION, 2004, 36 (02) : 145 - 161
  • [46] The efficiency of designs for fine-mapping of quantitative trait loci using combined linkage disequilibrium and linkage
    Sang Hong Lee
    Julius HJ van der Werf
    Genetics Selection Evolution, 36 (2)
  • [47] Fine mapping of a quantitative trait locus for osteochondrosis on horse chromosome 2
    Dierks, C.
    Komm, K.
    Lampe, V.
    Distl, O.
    ANIMAL GENETICS, 2010, 41 : 87 - 90
  • [48] Mapping a quantitative trait locus for growth and backfat on porcine chromosome 18
    Wu, XL
    Lee, C
    Jiang, J
    Peng, YL
    Yang, SL
    Xiao, BN
    Liu, XC
    Shi, QS
    ASIAN-AUSTRALASIAN JOURNAL OF ANIMAL SCIENCES, 2001, 14 (12): : 1665 - 1669
  • [49] Fine mapping of quantitative trait loci using linkage disequilibrium in inbred plant populations
    M.C.A.M. (Marco) Bink
    T.H.E. (Theo) Meuwissen
    Euphytica, 2004, 137 : 95 - 99
  • [50] Linkage disequilibrium mapping of novel lung tumor susceptibility quantitative trait loci in mice
    Wang, DL
    Lemon, WJ
    You, M
    ONCOGENE, 2002, 21 (44) : 6858 - 6865