Construction of an integrated map of rose with AFLP, SSR, PK, RGA, RFLP, SCAR and morphological markers

被引:113
作者
Yan, Z
Denneboom, C
Hattendorf, A
Dolstra, O
Debener, T
Stam, P
Visser, PB
机构
[1] Univ Wageningen & Res Ctr, Plant Res Int, NL-6700 AA Wageningen, Netherlands
[2] Fed Ctr Breeding Res Cultivated Plants, Inst Ornamental Plant Breeding, D-22926 Ahrensburg, Germany
[3] Leibniz Univ Hannover, Dept Hort, D-30419 Hannover, Germany
[4] Univ Wageningen & Res Ctr, Lab Plant Breeding, NL-6700 AJ Wageningen, Netherlands
关键词
rose; parental maps; integrated map; molecular marker;
D O I
10.1007/s00122-004-1903-6
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
A high-density genetic map with a number of anchor markers has been created to be used as a tool to dissect genetic variation in rose. Linkage maps for the diploid 94/1 population consisting of 88 individuals were constructed using a total of 520 molecular markers including AFLP, SSR, PK, RGA, RFLP, SCAR and morphological markers. Seven linkage groups, putatively corresponding to the seven haploid rose chromosomes, were identified for each parent, spanning 487 cM and 490 cM, respectively. The average length of 70 cM may cover more than 90% of the rose genome. An integrated map was constructed by incorporating the homologous parental linkage groups, resulting in seven linkage groups with a total length of 545 cM. The present linkage map is currently the most advanced map in rose with regard to marker density, genome coverage and with robust markers, giving good perspectives for QTL mapping and marker-assisted breeding in rose. The SSR markers, together with RFLP markers, provide good anchor points for future map alignment studies in rose and related species. Codominantly scored AFLP markers were helpful in the integration of the parental maps.
引用
收藏
页码:766 / 777
页数:12
相关论文
共 49 条
[31]  
Pan QL, 2000, GENETICS, V155, P309
[32]   Comparative analysis of genetic similarity among maize inbred lines detected by RFLPs, RAPDs, SSRs, and AFLPs [J].
Pejic, I ;
Ajmone-Marsan, P ;
Morgante, M ;
Kozumplick, V ;
Castiglioni, P ;
Taramino, G ;
Motto, M .
THEORETICAL AND APPLIED GENETICS, 1998, 97 (08) :1248-1255
[33]  
Piepho HP, 2000, GENETICS, V155, P1459
[34]   Comparison and integration of four barley genetic maps [J].
Qi, XQ ;
Stam, P ;
Lindhout, P .
GENOME, 1996, 39 (02) :379-394
[35]   Development of RGA-CAPS markers and genetic mapping of candidate genes for sugarcane mosaic virus resistance in maize [J].
Quint, M ;
Mihaljevic, R ;
Dussle, CM ;
Xu, ML ;
Melchinger, AE ;
Lübberstedt, T .
THEORETICAL AND APPLIED GENETICS, 2002, 105 (2-3) :355-363
[36]   Two genetic linkage maps of tetraploid roses [J].
Rajapakse, S ;
Byrne, DH ;
Zhang, L ;
Anderson, N ;
Arumuganathan, K ;
Ballard, RE .
THEORETICAL AND APPLIED GENETICS, 2001, 103 (04) :575-583
[37]  
RAJAPAKSE S, 2003, ENCY ROSE SCI, P326
[38]   Sequence-based genetic markers for genes and gene families: Single-strand conformational polymorphisms for the fatty acid synthesis genes of Cuphea [J].
Slabaugh, MB ;
Huestis, GM ;
Leonard, J ;
Holloway, JL ;
Rosato, C ;
Hongtrakul, V ;
Martini, N ;
Toepfer, R ;
Voetz, M ;
Schell, J ;
Knapp, SJ .
THEORETICAL AND APPLIED GENETICS, 1997, 94 (3-4) :400-408
[39]   Use of AFLP and RFLP markers to create a combined linkage map in peach [Prunus persica (L.) Batsch] for use in marker assisted selection [J].
Sosinski, B ;
Sossey-Alaoui, K ;
Rajapakse, S ;
Glassmoyer, K ;
Ballard, RE ;
Abbott, AG ;
Lu, ZX ;
Baird, WV ;
Reighard, G ;
Tabb, A ;
Scorza, R .
FOURTH INTERNATIONAL PEACH SYMPOSIUM, VOLS 1-2, 1998, (465) :61-68
[40]   CONSTRUCTION OF INTEGRATED GENETIC-LINKAGE MAPS BY MEANS OF A NEW COMPUTER PACKAGE - JOINMAP [J].
STAM, P .
PLANT JOURNAL, 1993, 3 (05) :739-744