Crossover clustering and rapid decay of linkage disequilibrium in the Xp/Yp pseudoautosomal gene SHOX

被引:82
作者
May, CA
Shone, AC
Kalaydjieva, L
Sajantila, A
Jeffreys, AJ
机构
[1] Univ Leicester, Dept Genet, Leicester LE1 7RH, Leics, England
[2] Edith Cowan Univ, Ctr Human Genet, Perth, WA, Australia
[3] Western Australia Inst Med Res, Perth, WA, Australia
[4] Univ Helsinki, Dept Forens Med, SF-00300 Helsinki, Finland
基金
英国惠康基金; 英国医学研究理事会;
关键词
D O I
10.1038/ng918
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Crossover between the human sex chromosomes during male meiosis is restricted to the terminal pseudoautosomal pairing regions. An obligatory exchange occurs in PAR1, an Xp/Yp pseudoautosomal region of 2.6 Mb, which creates a male-specific recombination 'hot domain' with a recombination rate that is about 20 times higher than the genome average(1-3). Low-resolution analysis of PART suggests that crossovers are distributed fairly randomly(4). By contrast, linkage disequilibrium (LD)(5) and sperm crossover analyses(6) indicate that crossovers in autosomal regions tend to duster into 'hot spots' of 1-2 kb that lie between islands of disequilibrium of tens to hundreds of kilobases(7). To determine whether at high resolution this autosomal pattern also applies to PAR1, we have examined linkage disequilibrium over an interval of 43 kb around the gene SHOX8. Here we show that in northern European populations, disequilibrium decays rapidly with physical distance, which is consistent with this interval of PAR1 being recombination ally active in male meiosis. Analysis of a subregion of 9.9 kb in sperm shows, however, that crossovers are not distributed randomly, but instead cluster into an intense recombination hot spot that is very similar in morphology to autosomal hot spots. Thus, PAR1 crossover activity may be influenced by male-specific hot spots that are highly suitable for characterization by sperm DNA analysis.
引用
收藏
页码:272 / 275
页数:4
相关论文
共 29 条
[1]   MECHANISMS UNDERLYING TELOMERE REPEAT TURNOVER, REVEALED BY HYPERVARIABLE VARIANT REPEAT DISTRIBUTION PATTERNS IN THE HUMAN XP/YP TELOMERE [J].
BAIRD, DM ;
JEFFREYS, AJ ;
ROYLE, NJ .
EMBO JOURNAL, 1995, 14 (21) :5433-5443
[2]   Characterization of single-nucleotide polymorphisms in coding regions of human genes [J].
Cargill, M ;
Altshuler, D ;
Ireland, J ;
Sklar, P ;
Ardlie, K ;
Patil, N ;
Lane, CR ;
Lim, EP ;
Kalyanaraman, N ;
Nemesh, J ;
Ziaugra, L ;
Friedland, L ;
Rolfe, A ;
Warrington, J ;
Lipshutz, R ;
Daley, GQ ;
Lander, ES .
NATURE GENETICS, 1999, 22 (03) :231-238
[3]   High-resolution haplotype structure in the human genome [J].
Daly, MJ ;
Rioux, JD ;
Schaffner, SE ;
Hudson, TJ ;
Lander, ES .
NATURE GENETICS, 2001, 29 (02) :229-232
[4]   PHOG, a candidate gene for involvement in the short stature of Turner syndrome [J].
Ellison, JW ;
Wardak, Z ;
Young, MF ;
Robey, PG ;
LaigWebster, M ;
Chiong, W .
HUMAN MOLECULAR GENETICS, 1997, 6 (08) :1341-1347
[5]   Islands of linkage disequilibrium [J].
Goldstein, DB .
NATURE GENETICS, 2001, 29 (02) :109-111
[6]   Patterns of single-nucleotide polymorphisms in candidate genes for blood-pressure homeostasis [J].
Halushka, MK ;
Fan, JB ;
Bentley, K ;
Hsie, L ;
Shen, NP ;
Weder, A ;
Cooper, R ;
Lipshutz, R ;
Chakravarti, A .
NATURE GENETICS, 1999, 22 (03) :239-247
[7]  
HILL W G, 1968, Theoretical and Applied Genetics, V38, P226, DOI 10.1007/BF01245622
[8]   COMPLEX GENE CONVERSION EVENTS IN GERMLINE MUTATION AT HUMAN MINISATELLITES [J].
JEFFREYS, AJ ;
TAMAKI, K ;
MACLEOD, A ;
MONCKTON, DG ;
NEIL, DL ;
ARMOUR, JAL .
NATURE GENETICS, 1994, 6 (02) :136-145
[9]   High resolution analysis of haplotype diversity and meiotic crossover in the human TAP2 recombination hotspot [J].
Jeffreys, AJ ;
Ritchie, A ;
Neumann, R .
HUMAN MOLECULAR GENETICS, 2000, 9 (05) :725-733
[10]   Intensely punctate meiotic recombination in the class II region of the major histocompatibility complex [J].
Jeffreys, AJ ;
Kauppi, L ;
Neumann, R .
NATURE GENETICS, 2001, 29 (02) :217-222