Molecular mapping of gene Gm-6(t) which confers resistance against four biotypes of Asian rice gall midge in China

被引:28
作者
Katiyar, SK
Tan, Y
Huang, B
Chandel, G
Xu, Y
Zhang, Y
Xie, Z
Bennett, J
机构
[1] Int Rice Res Inst, Div Plant Breeding Genet & Biochem, Manila 1099, Philippines
[2] Indira Gandhi Agr Univ, Raipur, Madhya Pradesh, India
[3] Guangdong Acad Agr Sci, Plant Protect Res Inst, Guangzhou, Peoples R China
关键词
rice (Oryza sativa); gall midge; Orseolia oryzae; RAPD; mapping; sequence tagged sites;
D O I
10.1007/s001220100633
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The Chinese rice cultivar Duokang #1 carries a single dominant gene Gm-6(t) that confers resistance to the four biotypes of Asian rice gall midge (Orseolia oryzae Wood-Mason) known in China. Bulked segregant analysis was performed on progeny of a cross between Duokang #1 and the gall midge-susceptible cultivar Feng Yin Zhan using the RAPD method. The RAPD marker OPM06((1400)) amplified a locus linked to Gm-6(t). The locus was subsequently mapped to rice chromosome 4 in a region flanked by cloned RFLP markers RG214 and RG163. Fine mapping of Gm-6(t) revealed that markers RG214 and RG476 flanked the gene at distances of LO and 2.3 cM, respectively. Another gall midge resistance gene, Gm-2, mapped previously to chromosome 4. is located about 16 cM from Gm-6(t). to judge by data from a segregating population derived from a cross between Duokang #1 and the Indian cultivar Phalguna that carries Gm-2. We developed a PCR-based marker-assisted selection kit for transfer of the Gm-6(t) gene into Ming Hui 63 and IR50404, two parental lines commonly used in hybrid rice production in China. The kit contains PCR primer pairs based on the terminal sequences of the RG214 and RG476 clones. Polymorphism between Duokang #1 and the hybrid parental lines was found at these markers after digestion of the PCR products with specific restriction endonucleases. The kit will accelerate introduction of gall midge resistance into hybrid rice in China.
引用
收藏
页码:953 / 961
页数:9
相关论文
共 44 条
[21]  
Khush G. S., 1995, Geojournal, V35, P329, DOI 10.1007/BF00989140
[22]   EFFECTS OF T2BS.2RL WHEAT-RYE TRANSLOCATION ON BREADMAKING QUALITY IN WHEAT [J].
KNACKSTEDT, MA ;
SEARS, RG ;
ROGERS, DE ;
LOOKHART, GL .
CROP SCIENCE, 1994, 34 (04) :1066-1070
[23]   The estimation of map distances from recombination values [J].
Kosambi, DD .
ANNALS OF EUGENICS, 1943, 12 :172-175
[24]  
Kudagamage C., 1989, Tropical Agriculturist, V145, P129
[25]   CONSERVATION OF GENOME STRUCTURE BETWEEN RICE AND WHEAT [J].
KURATA, N ;
MOORE, G ;
NAGAMURA, Y ;
FOOTE, T ;
YANO, M ;
MINOBE, Y ;
GALE, M .
BIO-TECHNOLOGY, 1994, 12 (03) :276-278
[26]  
Lai K.-c., 1984, International Rice Research Newsletter, V9, P17
[27]  
LANDER E S, 1987, Genomics, V1, P174, DOI 10.1016/0888-7543(87)90010-3
[28]   Genomic organization of disease and insect resistance genes in maize [J].
McMullen, MD ;
Simcox, KD .
MOLECULAR PLANT-MICROBE INTERACTIONS, 1995, 8 (06) :811-815
[29]  
MICHELMORE R, 1995, ANNU REV PHYTOPATHOL, V33, P393, DOI 10.1146/annurev.py.33.090195.002141
[30]   Clusters of resistance genes in plants evolve by divergent selection and a birth-and-death process [J].
Michelmore, RW ;
Meyers, BC .
GENOME RESEARCH, 1998, 8 (11) :1113-1130