Quantitative trait loci for resistance to stripe rust of wheat revealed using global field nurseries and opportunities for stacking resistance genes

被引:21
作者
Bokore, Firdissa E. [1 ]
Cuthbert, Richard D. [1 ]
Knox, Ron E. [1 ]
Randhawa, Harpinder S. [2 ]
Hiebert, Colin W. [3 ]
DePauw, Ron M. [4 ]
Singh, Asheesh K. [5 ]
Singh, Arti [5 ]
Sharpe, Andrew G. [6 ]
N'Diaye, Amidou [7 ]
Pozniak, Curtis J. [7 ]
McCartney, Curt [3 ]
Ruan, Yuefeng [1 ]
Berraies, Samia [1 ]
Meyer, Brad [1 ]
Munro, Catherine [8 ]
Hay, Andy [8 ]
Ammar, Karim [9 ]
Huerta-Espino, Julio [10 ]
Bhavani, Sridhar [11 ]
机构
[1] Agr & Agri Food Canada, Swift Current Res & Dev Ctr, Swift Current, SK S9H 3X2, Canada
[2] Agr & Agri Food Canada, Lethbridge Res & Dev Ctr, 5403 1st Ave South, Lethbridge, AB T1J 4B1, Canada
[3] Agr & Agri Food Canada, Morden Res & Dev Ctr, 101 Route 100, Morden, MB R6M 1Y5, Canada
[4] Adv Wheat Technol, 870 Field Dr, Swift Current, SK S9H 4N5, Canada
[5] Iowa State Univ, Dept Agron, Ames, IA USA
[6] Natl Res Council Canada, 110 Gymnasium Pl, Saskatoon, SK S7N 0W9, Canada
[7] Univ Saskatchewan, Dept Plant Sci, Saskatoon, SK S7N 5A8, Canada
[8] Plant & Food Res Canterbury Agr & Sci Ctr, Gerald St, Lincoln 7608, New Zealand
[9] CIMMYT, Int Maize & Wheat Improvement Ctr, Apdo Postal 6-6-41, Mexico City 06600, DF, Mexico
[10] Campo Expt Valle Mexico INIFAP, Apdo Postal 10, Chapingo 56230, Mexico
[11] CIMMYT, Int Maize & Wheat Improvement Ctr, Nairobi, Kenya
关键词
ADULT-PLANT RESISTANCE; RED SPRING WHEAT; F-SP TRITICI; MULTIPLE FUNGAL PATHOGENS; LEAF RUST; POWDERY MILDEW; BREAD WHEAT; DURABLE RESISTANCE; YELLOW RUST; PROTEIN-CONTENT;
D O I
10.1007/s00122-017-2980-7
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Quantitative trait loci controlling stripe rust resistance were identified in adapted Canadian spring wheat cultivars providing opportunity for breeders to stack loci using marker-assisted breeding. Stripe rust or yellow rust, caused by Puccinia striiformis Westend. f. sp. tritici Erikss., is a devastating disease of common wheat (Triticum aestivum L.) in many regions of the world. The objectives of this research were to identify and map quantitative trait loci (QTL) associated with stripe rust resistance in adapted Canadian spring wheat cultivars that are effective globally, and investigate opportunities for stacking resistance. Doubled haploid (DH) populations from the crosses Vesper/Lillian, Vesper/Stettler, Carberry/Vesper, Stettler/Red Fife and Carberry/AC Cadillac were phenotyped for stripe rust severity and infection response in field nurseries in Canada (Lethbridge and Swift Current), New Zealand (Lincoln), Mexico (Toluca) and Kenya (Njoro), and genotyped with SNP markers. Six QTL for stripe rust resistance in the population of Vesper/Lillian, five in Vesper/Stettler, seven in Stettler/Red Fife, four in Carberry/Vesper and nine in Carberry/AC Cadillac were identified. Lillian contributed stripe rust resistance QTL on chromosomes 4B, 5A, 6B and 7D, AC Cadillac on 2A, 2B, 3B and 5B, Carberry on 1A, 1B, 4A, 4B, 7A and 7D, Stettler on 1A, 2A, 3D, 4A, 5B and 6A, Red Fife on 2D, 3B and 4B, and Vesper on 1B, 2B and 7A. QTL on 1A, 1B, 2A, 2B, 3B, 4A, 4B, 5B, 7A and 7D were observed in multiple parents. The populations are compelling sources of recombination of many stripe rust resistance QTL for stacking disease resistance. Gene pyramiding should be possible with little chance of linkage drag of detrimental genes as the source parents were mostly adapted cultivars widely grown in Canada.
引用
收藏
页码:2617 / 2635
页数:19
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