Physical mapping of RFLP markers on four chromosome arms in maize using terminal deficiencies

被引:20
作者
Lin, BY
Peng, SF
Chen, YJ
Chen, HS
Kao, CF
机构
[1] Institute of Molecular Biology, National Chung Hsing University
来源
MOLECULAR & GENERAL GENETICS | 1997年 / 256卷 / 05期
关键词
physical mapping; deletion mapping; RFLP marker; terminal deficiency; r-XI;
D O I
10.1007/s004380050595
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
Terminal deficiencies (TDs) generated by the r-XI deletion system in maize were used to physically map RFLP markers on the short arm of chromosome 2 (2S) and the long arm of chromosome 6 (6L), chromosome 8 (8L), and chromosome 10 (10L). Five TDs on 2S, 8 on 6L, 10 on 8L, and 20 on 10L were isolated using the recessive morphological markers Ig1, py1, j1(g118), and sr2, respectively, for selection. Two exceptional TDs on 2S and 8L also have a second breakpoint on the long arm of chromosome 2 (2L) and 8L, respectively. The physical mapping of RFLP probes in relation to TD breakpoints was done by Southern hybridization. The five TDs on 2S divide chromosome 2 into four regions, all of which are distinguishable by RFLP markers. Likewise, three remaining chromosome arms are divided by TDs into RFLP-marked regions. 8 TDs divide 6L into five regions, 10 TDs divided 8L into seven regions, and 20 TDs divide 10L into three regions. The linear order of the physical map of 6L and 8L is consistent with that of the genetic maps, but that of 2L and 10L is not. Four groups of markers on 2S as well as 2L, and two on 10L are in reverse order in the physical map compared with the genetic maps. Other intriguing results are that breakpoints of TDs on 6L and 8L are distributed throughout the selected region, but most of those on 2L and 10L cluster in a region near the centromere; a single TD arose after fertilization.
引用
收藏
页码:509 / 516
页数:8
相关论文
共 25 条
[1]  
BLAIR DL, 1993, MAIZE GENET NEWSLETT, V67, P55
[2]  
BURR B, 1988, GENETICS, V118, P519
[3]   RFLP MAPPING OF PARTIALLY SEQUENCED LEAF CDNA CLONES IN MAIZE [J].
CHAO, S ;
BAYSDORFER, C ;
HEREDIADIAZ, O ;
MUSKET, T ;
XU, G ;
COE, EH .
THEORETICAL AND APPLIED GENETICS, 1994, 88 (6-7) :717-721
[4]  
Coe E. H. Jr., 1988, Corn and corn improvement. Third edition., P81
[5]  
COE EH, 1994, MAIZE GENET COOP NEW, V68, P157
[6]   METAPHASE-I PAIRING OF DEFICIENT CHROMOSOMES AND GENETIC-MAPPING OF DEFICIENCY BREAKPOINTS IN COMMON WHEAT [J].
CURTIS, CA ;
LUKASZEWSKI, AJ ;
CHRZASTEK, M .
GENOME, 1991, 34 (04) :553-560
[7]   GAMETOCIDAL CHROMOSOMES AND THEIR INDUCTION OF CHROMOSOME MUTATIONS IN WHEAT [J].
ENDO, TR .
JAPANESE JOURNAL OF GENETICS, 1990, 65 (03) :135-152
[9]   A TECHNIQUE FOR RADIOLABELING DNA RESTRICTION ENDONUCLEASE FRAGMENTS TO HIGH SPECIFIC ACTIVITY [J].
FEINBERG, AP ;
VOGELSTEIN, B .
ANALYTICAL BIOCHEMISTRY, 1983, 132 (01) :6-13
[10]  
GARDINER JM, 1993, GENETICS, V134, P917