Introgression of quantitative trait loci (QTLs) determining stripe rust resistance in barley: an example of marker-assisted line development

被引:98
作者
Toojinda, T
Baird, E
Booth, A
Broers, L
Hayes, P [1 ]
Powell, W
Thomas, W
Vivar, H
Young, G
机构
[1] Oregon State Univ, Dept Crop & Soil Sci, Corvallis, OR 97331 USA
[2] Scottish Crop Res Inst, Dundee DD2 5DA, Scotland
[3] Lochow Petkus France, F-28150 Allonnes, France
[4] ICARDA, CIMMYT, Mexico City 6, DF, Mexico
关键词
QTL; AFLP; marker-assisted selection; barley; Puccinia striiformis f.sp. hordei;
D O I
10.1007/s001220050718
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Genome-analysis tools are useful for dissecting complex phenotypes and manipulating determinants of these phenotypes in breeding programs. Quantitative trait locus (QTL)-analysis tools were used to map QTLs conferring adult plant resistance to stripe rust (caused by Puccinia striiformis f.sp. hordei) in barley. The resistance QTLs were introgressed into a genetic background unrelated to the mapping population with one cycle of marker-assisted backcrossing. Doubled-haploid lines were derived from selected backcross lines, phenotyped for stripe-rust resistance, and genotyped with an array of molecular markers. The resistance QTLs that were introgressed were significant determinants of resistance in the new genetic background. Additional resistance QTLs were also detected. The susceptible parent contributed resistance alleles at two of these new QTLs. We hypothesize that favorable alleles were fixed at these new QTLs in the original mapping population. Genetic background may, therefore, have an important role in QTL-transfer experiments. A breeding system is described that integrates single-copy and multiplex markers with confirmation of the target phenotype in doubled-haploid lines phenotyped in field tests. This approach may be useful for simultaneously producing agronomically useful germplasm and contributing to an understanding of quantitatively inherited traits.
引用
收藏
页码:123 / 131
页数:9
相关论文
共 27 条
[11]   RFLP MAPPING OF 5 MAJOR GENES AND 8 QUANTITATIVE TRAIT LOCI CONTROLLING FLOWERING TIME IN A WINTERXSPRING BARLEY (HORDEUM-VULGARE L) CROSS [J].
LAURIE, DA ;
PRATCHETT, N ;
BEZANT, JH ;
SNAPE, JW .
GENOME, 1995, 38 (03) :575-585
[12]   The control of adult-plant resistance to yellow rust by the translocated chromosome 5BS-7BS of bread wheat [J].
Law, CN ;
Worland, AJ .
PLANT BREEDING, 1997, 116 (01) :59-63
[13]  
Lehmann COI, 1975, P S BARLEY GENET, V3, P64
[14]  
Line R. F., 1993, Durability of disease resistance., P332
[15]  
Marc Z., 1993, Patent No. [0534858, 0534858B2]
[16]   EPIDEMIOLOGY OF STRIPE RUST, VIRULENCE OF PUCCINIA-STRIIFORMIS F-SP HORDEI, AND YIELD LOSS IN BARLEY [J].
MARSHALL, D ;
SUTTON, RL .
PLANT DISEASE, 1995, 79 (07) :732-737
[17]   PARTIAL RESISTANCE OF BARLEY TO LEAF RUST, PUCCINIA-HORDEI .2. RELATIONSHIP BETWEEN FIELD TRIALS, MICRO PLOT TESTS AND LATENT PERIOD [J].
PARLEVLIET, JE ;
VANOMMEREN, A .
EUPHYTICA, 1975, 24 (02) :293-303
[18]  
POWELL W, 1996, BARLEY GENET, V7, P174
[19]   Comparison and integration of four barley genetic maps [J].
Qi, XQ ;
Stam, P ;
Lindhout, P .
GENOME, 1996, 39 (02) :379-394
[20]  
RAMSAY G, 1992, 11 INT CHROM C ED UK