Isolate-specific and broad-spectrum QTLs are involved in the control of clubroot in Brassica oleracea

被引:93
作者
Rocherieux, J
Glory, P
Giboulot, A
Boury, S
Barbeyron, G
Thomas, G
Manzanares-Dauleux, MJ
机构
[1] UMR INRA ENSAR Ameliorat Plantes & Biotechnol Veg, F-35653 Le Rheu, France
[2] Bretagne Biotechnol Vegetales, F-29250 St Pol De Leon, France
关键词
D O I
10.1007/s00122-003-1580-x
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Clubroot, caused by Plasmodiophora brassicae, is one of the most damaging diseases of vegetable Brassica crops in the world. In this study, genetic control and mapping of loci implied in quantitative resistance against five isolates of P. brassicae were studied in the F-1 and F-2/3 progenies of the cross C10 (resistant kale)xHDEM (susceptible broccoli). A genetic map was constructed using RFLP, random and specific PCR-based markers. The 199 loci were assembled into nine linkage groups covering 1,226.3 cM. The F-3 families were assessed for resistance under controlled conditions with four single-spore isolates and one field isolate. A total of nine genomic regions were detected for clubroot resistance. Depending on the isolate, two to five QTLs were identified. The total phenotypic variation accounted for by QTLs ranged from 70% to 88% depending on the isolate. One of the QTLs (Pb-Bo1) was detected in all isolates and explained 20.7-80.7% of the phenotypic variation. Pb-Bo1 had a major effect on three isolates but this effect was weaker for the last two. Five QTLs with minor effect were identified in only one isolate. To construct clubroot resistant varieties, the existence of both broad-spectrum and isolate-specific QTLs should be taken into account for the choice of genomic regions to use in a marker-assisted selection strategy.
引用
收藏
页码:1555 / 1563
页数:9
相关论文
共 56 条
[1]  
[Anonymous], 1989, SAS STAT US GUID VER
[2]   Isolate-specific QTLs of resistance to leaf stripe (Pyrenophora graminea) in the 'Steptoe' x 'Morex' spring barley cross [J].
Arru, L ;
Francia, E ;
Pecchioni, N .
THEORETICAL AND APPLIED GENETICS, 2003, 106 (04) :668-675
[3]   Localisation of genes for resistance against Blumeria graminis f.sp hordei and Puccinia graminis in a cross between a barley cultivar and a wild barley (Hordeum vulgare ssp spontaneum) line [J].
Backes, G ;
Madsen, LH ;
Jaiser, H ;
Stougaard, J ;
Herz, M ;
Mohler, V ;
Jahoor, A .
THEORETICAL AND APPLIED GENETICS, 2003, 106 (02) :353-362
[4]  
Basten CJ., 1997, QTL CARTOGRAPHER REF
[5]   Comparative genetic analysis of quantitative traits in sunflower (Helianthus annuus L.) 1.: QTL involved in resistance to Sclerotinia sclerotiorum and Diaporthe helianthi [J].
Bert, PF ;
Jouan, I ;
de Labrouhe, DT ;
Serre, F ;
Nicolas, P ;
Vear, F .
THEORETICAL AND APPLIED GENETICS, 2002, 105 (6-7) :985-993
[6]   Development of amplified consensus genetic markers (ACGM) in Brassica napus from Arabidopsis thaliana sequences of known biological function [J].
Brunel, D ;
Froger, N ;
Pelletier, G .
GENOME, 1999, 42 (03) :387-402
[7]   STUDY OF PHYSIOLOGIC SPECIALIZATION IN PLASMODIOPHORA-BRASSICAE - PROPOSALS FOR ATTEMPTED RATIONALIZATION THROUGH AN INTERNATIONAL APPROACH [J].
BUCZACKI, ST ;
TOXOPEUS, H ;
MATTUSCH, P ;
JOHNSTON, TD ;
DIXON, GR ;
HOBOLTH, LA .
TRANSACTIONS OF THE BRITISH MYCOLOGICAL SOCIETY, 1975, 65 (OCT) :295-303
[8]   Polygenic resistance of pepper to potyviruses consists of a combination of isolate-specific and broad-spectrum quantitative trait loci [J].
Caranta, C ;
Lefebvre, V ;
Palloix, A .
MOLECULAR PLANT-MICROBE INTERACTIONS, 1997, 10 (07) :872-878
[9]   Comparative analyses of genomic locations and race specificities of loci for quantitative resistance to Pyricularia grisea in rice and barley [J].
Chen, H ;
Wang, SP ;
Xing, YZ ;
Xu, CG ;
Hayes, PM ;
Zhang, QF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (05) :2544-2549
[10]   Comparison of the genetic maps of Brassica napus and Brassica oleracea [J].
Cheung, WY ;
Champagne, G ;
Hubert, N ;
Landry, BS .
THEORETICAL AND APPLIED GENETICS, 1997, 94 (05) :569-582