Mapping of quantitative trait locus related to submergence tolerance in rice with aid of chromosome walking

被引:15
作者
Kamolsukyunyong, W
Ruanjaichon, V
Siangliw, M
Kawasaki, S
Sasaki, T
Vanavichit, A
Tragoonrung, S
机构
[1] Kasetsart Univ, Natl Ctr Genet Engn & Biotechnol, Nakorn Pathom 73140, Thailand
[2] Natl Inst Agrobiol Resources, Tsukuba, Ibaraki 3058602, Japan
[3] Natl Inst Agrobiol Resource, Rice Genome Res Program, Tsukuba, Ibaraki 305, Japan
[4] Kasetsart Univ, Dept Agron, Nakorn Pathom 73140, Thailand
关键词
rice (Oryza sativa L.); submergence tolerance; positional cloning; physical mapping; bacterial artificial chromosome (BAC); yeast artificial chromosome (YAC);
D O I
10.1093/dnares/8.4.163
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The major QTL for submergence tolerance was locate in the 5.9 cM interval between flanking RFLP markers. To narrow down this region, a physical map was constructed using YAC and BAC clones. A 400-kb YAC was identified in this region and later its end fragments were used to screen a rice BAC library. Through chromosome walking, 24 positive BAC clones formed two contigs around linked-RFLP markers, R1164 and RZ698. Using one YAC end, six BAC ends and three RFLP markers, a fine-scale map was constructed of the 6.8-cM interval of S10709-RZ698 on rice chromosome 9. The submergence tolerance and related trait were located in a small, well-defined region around BAC-end marker 180D1R and RFLP marker R1164. The physical-to-map distance ratio in this region is as small as 172.5 kb/cM, showing that this region is a hot spot for recombination in the rice genome.
引用
收藏
页码:163 / 171
页数:9
相关论文
共 51 条
[1]   SUBMERGENCE TOLERANCE OF RICE - A NEW GLASSHOUSE METHOD FOR THE EXPERIMENTAL SUBMERGENCE OF PLANTS [J].
ADKINS, SW ;
SHIRAISHI, T ;
MCCOMB, JA .
PHYSIOLOGIA PLANTARUM, 1990, 80 (04) :642-646
[2]  
[Anonymous], P NATL ACAD SCI USA
[3]  
[Anonymous], 1981, Sabrao J
[4]   Human BAC library: Construction and rapid screening [J].
Asakawa, S ;
Abe, I ;
Kudoh, Y ;
Kishi, N ;
Wang, YM ;
Kubota, R ;
Kudoh, J ;
Kawasaki, K ;
Minoshima, S ;
Shimizu, N .
GENE, 1997, 191 (01) :69-79
[5]   Genetic and physical mapping of the RPP13 locus, in arabidopsis, responsible for specific recognition of several Peronospora parasitica (downy mildew) isolates [J].
Bittner-Eddy, P ;
Can, C ;
Gunn, N ;
Pinel, M ;
Tör, M ;
Crute, I ;
Holub, EB ;
Beynon, J .
MOLECULAR PLANT-MICROBE INTERACTIONS, 1999, 12 (09) :792-802
[6]   A SIMPLE METHOD FOR RAPID ISOLATION OF MICROSATELLITES FROM YEAST ARTIFICIAL CHROMOSOMES [J].
BROWN, J ;
HARDWICK, LJ ;
WRIGHT, AF .
MOLECULAR AND CELLULAR PROBES, 1995, 9 (01) :53-57
[7]  
CAUSSE MA, 1994, GENETICS, V138, P1251
[8]   Identification of AFLP molecular markers for resistance against Melampsora larici-populina in Populus [J].
Cervera, MT ;
Gusmao, J ;
Steenackers, M ;
Peleman, J ;
Storme, V ;
VandenBroeck, A ;
VanMontagu, M ;
Boerjan, W .
THEORETICAL AND APPLIED GENETICS, 1996, 93 (5-6) :733-737
[9]   MATS - A RAPID AND EFFICIENT METHOD FOR THE DEVELOPMENT OF MICROSATELLITE MARKERS FROM YACS [J].
CHEN, H ;
PULIDO, JC ;
DUYK, GM .
GENOMICS, 1995, 25 (01) :1-8
[10]   IDENTIFICATION OF A CA REPEAT AT THE TCRA LOCUS USING YEAST ARTIFICIAL CHROMOSOMES - A GENERAL-METHOD FOR GENERATING HIGHLY POLYMORPHIC MARKERS AT CHOSEN LOCI [J].
CORNELIS, F ;
HASHIMOTO, L ;
LOVERIDGE, J ;
MACCARTHY, A ;
BUCKLE, V ;
JULIER, C ;
BELL, J .
GENOMICS, 1992, 13 (03) :820-825