A second-generation linkage map of the sheep genome

被引:153
作者
de Gortari, MJ
Freking, BA
Cuthbertson, RP
Kappes, SM
Keele, JW
Stone, RT
Leymaster, KA
Dodds, KG
Crawford, AM
Beattie, CW
机构
[1] USDA ARS, Meat Anim Res Ctr, Clay Ctr, NE 68933 USA
[2] Univ Otago, AgRes Mol Biol Unit, Dept Biochem, Dunedin, New Zealand
[3] AgRres Invermay Agr Ctr, Mosgiel, New Zealand
关键词
D O I
10.1007/s003359900726
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
A genetic map of Ovis aries (haploid n = 27) was developed with 519 markers (504 microsatellites) spanning similar to 3063 cM in 26 autosomal linkage groups and 127 cM (female specific) of the X Chromosome (Chr). Genotypic data were merged from the IMF flock (Crawford et al., Genetics 140, 703, 1995) and the USDA mapping flock. Seventy-three percent (370/504) of the mic microsatellite markers on the map are common to the USDA-ARS MARC cattle linkage map, with 27 of the common markers derived from sheep. The number of common markers per homologous linkage group ranges from 5 to 22 and spans a total of 2866 cM (sex average) in sheep and 2817 cM in cattle. Marker order within a linkage group was consistent between the two species with limited exceptions. The reported translocation between the telomeric end of bovine Chr 9 (BTA 9) and BTA 14 to form ovine Chr 9 is represented by a 15-cM region containing 5 common markers. The significant genomic conservation of marker order will allow use of linkage maps in both species to facilitate the search for quantitative trait loci (QTLs) in cattle and sheep.
引用
收藏
页码:204 / 209
页数:6
相关论文
共 19 条
[1]   A GENETIC-LINKAGE MAP OF THE BOVINE GENOME [J].
BARENDSE, W ;
ARMITAGE, SM ;
KOSSAREK, LM ;
SHALOM, A ;
KIRKPATRICK, BW ;
RYAN, AM ;
CLAYTON, D ;
LI, L ;
NEIBERGS, HL ;
ZHANG, N ;
GROSSE, WM ;
WEISS, J ;
CREIGHTON, P ;
MCCARTHY, F ;
RON, M ;
TEALE, AJ ;
FRIES, R ;
MCGRAW, RA ;
MOORE, SS ;
GEORGES, M ;
SOLLER, M ;
WOMACK, JE ;
HETZEL, DJS .
NATURE GENETICS, 1994, 6 (03) :227-235
[2]   A medium-density genetic linkage map of the bovine genome [J].
Barendse, W ;
Vaiman, D ;
Kemp, SJ ;
Sugimoto, Y ;
Armitage, SM ;
Williams, JL ;
Sun, HS ;
Eggen, A ;
Agaba, M ;
Aleyasin, SA ;
Band, M ;
Bishop, MD ;
Buitkamp, J ;
Byrne, K ;
Collins, F ;
Cooper, L ;
Coppettiers, W ;
Denys, B ;
Drinkwater, RD ;
Easterday, K ;
Elduque, C ;
Ennis, S ;
Erhardt, G ;
Ferretti, L ;
Flavin, N ;
Gao, Q ;
Georges, M ;
Gurung, R ;
Harlizius, B ;
Hawkins, G ;
Hetzel, J ;
Hirano, T ;
Hulme, D ;
Jorgensen, C ;
Kessler, M ;
Kirkpatrick, BW ;
Konfortov, B ;
Kostia, S ;
Kuhn, C ;
Lenstra, JA ;
Leveziel, H ;
Lewin, HA ;
Leyhe, B ;
Lil, L ;
Burriel, IM ;
McGraw, RA ;
Miller, JR ;
Moody, DE ;
Moore, SS ;
Nakane, S .
MAMMALIAN GENOME, 1997, 8 (01) :21-28
[3]  
BISHOP MD, 1994, GENETICS, V136, P619
[4]   CHROMOSOME MORPHOLOGY DURING MEIOSIS OF NORMAL AND ROBERTSONIAN TRANSLOCATION-CARRYING RAMS (OVIS-ARIES) [J].
CHAPMAN, HM ;
BRUERE, AN .
CANADIAN JOURNAL OF GENETICS AND CYTOLOGY, 1977, 19 (01) :93-102
[5]  
CRAWFORD AM, 1995, GENETICS, V140, P703
[6]   Extensive genomic conservation of cattle microsatellite heterozygosity in sheep [J].
deGortari, MJ ;
Freking, BA ;
Kappes, SM ;
Leymaster, KA ;
Crawford, AM ;
Stone, RT ;
Beattie, CW .
ANIMAL GENETICS, 1997, 28 (04) :274-290
[7]   Cosmid-derived markers anchoring the bovine genetic map to the physical map [J].
Ferretti, L ;
Urquhart, BGD ;
Eggen, A ;
Olsaker, I ;
Harlizius, B ;
Castiglioni, B ;
Mezzelani, A ;
Toldo, SS ;
Thieven, U ;
Zhang, Y ;
Morgan, ALG ;
Teres, VM ;
Schwerin, M ;
MartinBurriel, I ;
Chowdhary, BP ;
Erhardt, G ;
Nijman, IJ ;
Cribiu, EP ;
Barendse, W ;
Leveziel, H ;
Fries, R ;
Williams, JL .
MAMMALIAN GENOME, 1997, 8 (01) :29-36
[8]  
FREKING BA, 1997, IN PRESS ANIM GENET
[9]  
Green P., 1990, DOCUMENTATION CRI MA
[10]   Directed cosmid isolation of bovine markers for physical assignment by fish [J].
Heaton, MP ;
LopezCorrales, NL ;
Smith, TPL ;
Kappes, SM ;
Beattie, CW .
ANIMAL BIOTECHNOLOGY, 1997, 8 (02) :167-177