Quantitative trait loci for Fusarium head blight resistance in a recombinant inbred population of Wangshuibai/Wheaton

被引:75
|
作者
Yu, J. -B. [2 ]
Bai, G. -H. [1 ]
Zhou, W. -C. [3 ]
Dong, Y. -H. [4 ]
Kolb, F. L. [5 ]
机构
[1] USDA ARS, Plant Soil & Entomol Res Unit, Manhattan, KS 66506 USA
[2] Kansas State Univ, Dept Agron, Manhattan, KS 66506 USA
[3] Univ Alberta, Dept Biol Sci, Edmonton, AB T6G 2E9, Canada
[4] Univ Minnesota, Dept Plant Pathol, St Paul, MN 55108 USA
[5] Univ Illinois, Dept Crop Sci, Urbana, IL 61801 USA
关键词
simple-sequence repeats;
D O I
10.1094/PHYTO-98-1-0087
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Use of diverse sources of Fusarium head blight (FHB)-resistant germplasm in breeding may significantly improve wheat resistance to FHB. Wangshuibai is an FHB-resistant Chinese landrace unrelated to cv. Sumai 3, the most commonly used FHB-resistant source. In all, 139 F-6 recombinant inbred lines were developed from a cross between Wangshuibai and an FHB-susceptible cultivar, Wheaton, to map quantitative trait loci (QTL) for wheat resistance to initial infection (type I resistance), spread of FHB symptoms within a spike (type II resistance), and deoxynivalenol (DON) accumulation (type III resistance) in infected grain. The experiments were conducted in a greenhouse at Manhattan, KS from 2003 to 2005. More than 1,300 simple-sequence repeat and amplified fragment length polymorphism markers were analyzed in this population. Five QTL for type I resistance were detected on chromosomes 3AS, 3BS, 4B, 5AS, and 5DL after spray inoculation; seven QTL for type II resistance were identified on chromosomes 1A, 3BS, 3DL, 5AS, 5DL, and 7AL after point inoculation; and seven QTL for type Ill resistance were detected on chromosomes 1A, 1BL, 3BS, 5AS, 5DL, and 7AL with the data from both inoculation methods. These QTL jointly explained up to 31.7, 64, and 52.8% of the phenotypic variation for the three types of FHB resistance, respectively. The narrow-sense heritabilities were low for type I resistance (0.37 to 0.41) but moderately high for type II resistance (0.45 to 0.61) and type III resistance (0.44 to 0.67). The QTL on the distal end of 3BS, 5AS, and 5DL contributed to all three types of resistance. Two QTL, on 7AL and 1A, as well as one QTL near the centromere of 3BS (3BSc), showed effects on both type II and type III resistance. Selection for type II resistance may simultaneously improve type I and type III resistance as well. The QTL for FHB resistance identified in Wangshuibai have potential to be used to pyramid FHB-resistance QTL from different sources.
引用
收藏
页码:87 / 94
页数:8
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