Fine mapping of a murine growth locus to a 1.4-cM region and resolution of linked QTL

被引:26
作者
Christians, JK [1 ]
Keightley, PD [1 ]
机构
[1] Univ Edinburgh, Inst Cell Anim & Populat Biol, Ashworth Labs, Edinburgh EH9 3JT, Midlothian, Scotland
关键词
D O I
10.1007/s00335-004-3046-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Previous work identified a QTL affecting murine size (particularly tail length) in a cross between C57BL/6J and DBA/2J mice and refined its location to an 8-cM region between D1Mit30 and D1Mit57. The present study used recombinant progeny testing to fine map this QTL. Individuals from a partially congenic strain carrying chromosomes recombinant between D1MR30 and D1Mit57 were mated to DBA/2J, generating 942 progeny. Two QTL affecting 10-week tail length were identified in this population: one at 9.7 cM distal to D1Mit30 (the position estimated in previous work), and mother of smaller effect near D1Mit30. A second population (n = 787) was generated by mating siblings from the progeny test population that were heterozygous for the same segment of chromosome including only recombinants between D1Mit265 and D1Mit57. In the latter population, two QTL were also identified: one at 10.2 cM distal to D1Mit30, and another of smaller effect at the distal end of the mapped region (at D1Mit150). When the two populations were analyzed together, the estimated location of the central QTL was 10.2 cM distal to D1Mit30 and there was marginally significant evidence of the distal QTL. The central QTL explained approximately 7% of the phenotypic variance, and the 95% confidence interval for its position (determined by bootstrapping) was a 1.4-cM region, approximately the region from D1Mit451 to D1Mit219. The central QTL also affected tail length and body mass at 3 and 6 weeks of age, but to a lesser degree than 10-week tail length.
引用
收藏
页码:482 / 491
页数:10
相关论文
共 26 条
  • [21] *SAS I, 1989, SAS STAT US GUID VER, V2
  • [22] Congenic strains of mice for verification and genetic decomposition of quantitative trait loci for femoral bone mineral density
    Shultz, KL
    Donahue, LR
    Bouxsein, ML
    Baylink, DJ
    Rosen, CJ
    Beamer, WG
    [J]. JOURNAL OF BONE AND MINERAL RESEARCH, 2003, 18 (02) : 175 - 185
  • [23] Fine scale mapping of a genetic locus for conditioned fear
    Talbot, CJ
    Radcliffe, RA
    Fullerton, J
    Hitzemann, R
    Wehner, JM
    Flint, J
    [J]. MAMMALIAN GENOME, 2003, 14 (04) : 223 - 230
  • [24] Mapping quantitative trait loci for murine growth: a closer look at genetic architecture
    Vaughn, TT
    Pletscher, LS
    Peripato, A
    King-Ellison, K
    Adams, E
    Erikson, C
    Cheverud, JM
    [J]. GENETICS RESEARCH, 1999, 74 (03) : 313 - 322
  • [25] Visscher PM, 1996, GENETICS, V143, P1013
  • [26] Using advanced intercross line for high-resolution mapping of HDL cholesterol quantitative trait loci
    Wang, XS
    Le Roy, I
    Nicodeme, E
    Li, RH
    Wagner, R
    Petros, C
    Churchill, GA
    Harris, S
    Darvasi, A
    Kirilovsky, J
    Roubertoux, PL
    Paigen, B
    [J]. GENOME RESEARCH, 2003, 13 (07) : 1654 - 1664