Genetic mapping of the barley Rrs14 scald resistance gene with RFLP, isozyme and seed storage protein markers

被引:44
作者
Garvin, DF
Brown, AHD
Raman, H
Read, BJ
机构
[1] CSIRO, Ctr Plant Biodivers Res, Canberra, ACT 2601, Australia
[2] CRC Plant Sci, Canberra, ACT 2601, Australia
[3] NSW Agr, Inst Agr, Wagga Wagga, NSW 2650, Australia
关键词
Hordeum vulgare ssp spontaneum; Rhynchosporium secalis; hordeins; molecular markers; pyramiding resistance genes; scald disease;
D O I
10.1046/j.1439-0523.2000.00456.x
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The scald susceptible barley cultivar 'Clipper' and a third-backcross (BC;) line homozygous for the Rrs14 scald resistance gene that originally came from Hordeum vulgare ssp. spontaneum were grown in replicated field trials. The level of resistance that Rrs14 confers against field populations of the pathogen Rhynchosporium secalis, the causal agent of scald disease, was evaluated. The Rrs14 BC3 line exhibited 80% and 88% less leaf damage than 'Clipper' in 1995 and 1996, respectively. Given this effectiveness of Rrs14, research was undertaken to identify a linked marker locus suitable for indirect selection of Rrs14. Based on linkage to a set of previously mapped loci, Rrs14 was positioned to barley chromosome 1H between the seed storage protein (hordein) loci Hor1 and Hor2, approximately 1.8cM from the latter locus. The Hor2 locus is thus an ideal codominant molecular marker for Rrs14. The tight linkage between Rrs14 and Hor2 and the availability of alternative biochemical and molecular techniques for scoring Hor2 genotypes, permits simple indirect selection of Rrs14 in barley scald resistance breeding programmes.
引用
收藏
页码:193 / 196
页数:4
相关论文
共 20 条
[1]   THE RELATIONSHIP BETWEEN SEEDLING INFECTION TYPES AND FIELD REACTIONS TO LEAF SCALD IN CLIPPER BARLEY BACKCROSS LINES [J].
ABBOTT, DC ;
BURDON, JJ ;
JAROSZ, AM ;
BROWN, AHD ;
MULLER, WJ ;
READ, BJ .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 1991, 42 (05) :801-809
[2]  
ABBOTT DC, 1992, EUPHYTICA, V61, P225, DOI 10.1007/BF00039662
[3]   IDENTIFICATION OF RAPD MARKERS LINKED TO A RHYNCHOSPORIUM-SECALIS RESISTANCE LOCUS IN BARLEY USING NEAR-ISOGENIC LINES AND BULKED SEGREGANT ANALYSIS [J].
BARUA, UM ;
CHALMERS, KJ ;
HACKETT, CA ;
THOMAS, WTB ;
POWELL, W ;
WAUGH, R .
HEREDITY, 1993, 71 :177-184
[4]   TRISOMIC ANALYSIS OF GENES FOR RESISTANCE TO SCALD AND NET BLOTCH IN SEVERAL BARLEY CULTIVARS [J].
BOCKELMAN, HE ;
SHARP, EL ;
ESLICK, RF .
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE, 1977, 55 (15) :2142-2148
[5]  
Brown A. H. D., 1983, Isozymes in plant genetics and breeding. Part B., P57
[6]  
Brown AHD, 1996, THEOR APPL GENET, V93, P361, DOI 10.1007/BF00223177
[7]   PATHOGENIC VARIATION AMONG ISOLATES OF RHYNCHOSPORIUM-SECALIS FROM BARLEY GRASS GROWING IN SOUTH EASTERN AUSTRALIA [J].
BROWN, JS .
EUPHYTICA, 1990, 50 (01) :81-89
[8]   THE POLYMORPHISM AND STRUCTURAL HOMOLOGY OF STORAGE POLYPEPTIDES (HORDEIN) CODED BY THE HOR-2 LOCUS IN BARLEY (HORDEUM-VULGARE-L) [J].
FAULKS, AJ ;
SHEWRY, PR ;
MIFLIN, BJ .
BIOCHEMICAL GENETICS, 1981, 19 (9-10) :841-858
[9]  
GARVIN DF, 1997, THEOR APPL GENET, V94, P1087
[10]  
Graner A, 1996, THEOR APPL GENET, V93, P421, DOI 10.1007/BF00223185