RESISTANCE TO STRIPE RUST IN TRITICUM-TURGIDUM, T-TAUSCHII AND THEIR SYNTHETIC HEXAPLOIDS

被引:63
|
作者
MA, H
SINGH, RP
MUJEEBKAZI, A
机构
[1] International Maize and Wheat Improvement Center (CIMMYT), 06600
关键词
TRITICUM TURGIDUM; WHEAT; TRITICUM TAUSCHII; SYNTHETIC HEXAPLOID; PUCCINIA STRIIFORMIS; STRIPE RUST; RUST RESISTANCE; YELLOW RUST; AEGILOPS SQUARROSA;
D O I
10.1007/BF00027057
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Resistance to stripe rust (caused by Puccinia striiformis Westend.) of 34 Triticum turgidum L. var.durum, 278 T. tauschii, and 267 synthetic hexaploid wheats (T. turgidum x T. tauschii) was evaluated at the seedling stage in the greenhouse and at the adult-plant stage at two field locations. Mexican pathotype 14E14 was used in all studies. Seedling resistance, expressed as low infection type, was present in all three species. One hundred and twenty-eight (46%) accessions of T. tauschii, 8 (23%) of T. turgidum and 31 (12%) of synthetic hexaploid wheats were highly resistant as seedlings. In the field tests, resistance was evaluated by estimating area under disease progress curve (AUDPC). Synthetic hexaploid wheats showed a wide range of variability for disease responses in both greenhouse and field tests, indicating the presence of a number of genes for resistance. In general, genotypes with seedling resistance were also found to be resistant as adult plants. Genotypes, which were susceptible or intermediate as seedlings but resistant as adult plants, were present in both T. turgidum and the synthetic hexaploids. Resistances from either T. turgidum or T. tauschii or both were identified in the synthetic hexaploids in this study. These new sources of resistance could be incorporated into cultivated hexaploid wheats to increase the existing gene pool of resistance to stripe rust.
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页码:117 / 124
页数:8
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