MAPPING THE GENOME OF RAPESEED (BRASSICA-NAPUS L) .1. CONSTRUCTION OF AN RFLP LINKAGE MAP AND LOCALIZATION OF QTLS FOR SEED GLUCOSINOLATE CONTENT

被引:173
作者
UZUNOVA, M [1 ]
ECKE, W [1 ]
WEISSLEDER, K [1 ]
ROBBELEN, G [1 ]
机构
[1] UNIV GOTTINGEN, INST AGRON & PLANT BREEDING, D-37075 GOTTINGEN, GERMANY
关键词
BRASSICA NAPUS L; RESTRICTION FRAGMENT LENGTH POLYMORPHISM (RFLP); LINKAGE MAP; SEED GLUCOSINOLATE CONTENT; QUANTITATIVE TRAIT LOCI (QTL);
D O I
10.1007/BF00222202
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
A linkage map of the rapeseed genome comprising 204 RFLP markers, 2 RAPD markers, and 1 phenotypic marker was constructed using a F-1 derived doubled haploid population obtained from a cross between the winter rapeseed varieties 'Mansholt's Hamburger Raps' and 'Samourai'. The mapped markers were distributed on 19 linkage groups covering 1441 cM. About 43% of these markers proved to be of dominant nature; 36% of the mapped marker loci were duplicated, and conserved link-age arrangements indicated duplicated regions in the rapeseed genome. Deviation from Mendelian segregation ratios was observed for 27.8% of the markers. Most of these markers were clustered in 7 large blocks on 7 linkage groups, indicating an equal number of effective factors responsible for the skewed segregations. Using cDNA probes for the genes of acyl-carrier-protein (ACP) and beta-ketoacyl-ACP-synthase I(KASI) we were able to map three and two loci, respectively, for these genes. The linkage man was used to localize QTLs for seed, glucosinolate content by interval mapping. Four QTLs could be mapped on four linkage groups, giving a minimum number of factors involved in the genetic control of this trait. The estimated effects of the mapped QTLs explain about 74% of the difference between both parental lines and about 61.7% of the phenotypic variance observed in the doubled haploid mapping population.
引用
收藏
页码:194 / 204
页数:11
相关论文
共 56 条
[1]   MAP-BASED CLONING OF A GENE CONTROLLING OMEGA-3-FATTY-ACID DESATURATION IN ARABIDOPSIS [J].
ARONDEL, V ;
LEMIEUX, B ;
HWANG, I ;
GIBSON, S ;
GOODMAN, HM ;
SOMERVILLE, CR .
SCIENCE, 1992, 258 (5086) :1353-1355
[2]  
ASHIKAWA I, 1993, 17TH INT C GEN, P184
[3]   CYTOGENETIC RELATIONSHIP WITHIN CULTIVATED BRASSICA ANALYZED IN AMPHIHAPLOIDS FROM THE 3 DIPLOID ANCESTORS [J].
ATTIA, T ;
ROBBELEN, G .
CANADIAN JOURNAL OF GENETICS AND CYTOLOGY, 1986, 28 (03) :323-329
[4]   LOCALIZATION BY RESTRICTION-FRAGMENT-LENGTH-POLYMORPHISM MAPPING IN POTATO OF A MAJOR DOMINANT GENE CONFERRING RESISTANCE TO THE POTATO CYST NEMATODE GLOBODERA-ROSTOCHIENSIS [J].
BARONE, A ;
RITTER, E ;
SCHACHTSCHABEL, U ;
DEBENER, T ;
SALAMINI, F ;
GEBHARDT, C .
MOLECULAR & GENERAL GENETICS, 1990, 224 (02) :177-182
[5]  
BERNATZKY R, 1986, GENETICS, V112, P887
[6]  
BONIERBALE MW, 1988, GENETICS, V120, P1095
[7]  
BOTSTEIN D, 1980, AM J HUM GENET, V32, P314
[8]  
CHEW FS, 1988, ACS SYM SER, V380, P155
[9]   A GENETIC-LINKAGE MAP OF RESTRICTION-FRAGMENT-LENGTH-POLYMORPHISM LOCI FOR BRASSICA-RAPA (SYN CAMPESTRIS) [J].
CHYI, YS ;
HOENECKE, ME ;
SERNYK, JL .
GENOME, 1992, 35 (05) :746-757
[10]   A TECHNIQUE FOR RADIOLABELING DNA RESTRICTION ENDONUCLEASE FRAGMENTS TO HIGH SPECIFIC ACTIVITY [J].
FEINBERG, AP ;
VOGELSTEIN, B .
ANALYTICAL BIOCHEMISTRY, 1983, 132 (01) :6-13