Genetic mapping of a new race specific resistance allele effective to Puccinia hordei at the Rph9/Rph12 locus on chromosome 5HL in barley

被引:12
作者
Dracatos, Peter M. [1 ]
Khatkar, Mehar S. [2 ]
Singh, Davinder [1 ]
Park, Robert F. [1 ]
机构
[1] Univ Sydney, Plant Breeding Inst Cobbitty, Private Bag 4011, Narellan, NSW 2567, Australia
[2] Univ Sydney, Fac Vet Sci, Camden, NSW 2570, Australia
关键词
Resistance; Puccinia hordei; Genetic mapping;
D O I
10.1186/s12870-014-0382-4
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: Barley is an important cereal crop cultivated for malt and ruminant feed and in certain regions it is used for human consumption. It is vulnerable to numerous foliar diseases including barley leaf rust caused by the pathogen Puccinia hordei. Results: A temporarily designated resistance locus RphCantala (RphC) identified in the Australian Hordeum vulgare L. cultivar `Cantala' displayed an intermediate to low infection type (";12 = N") against the P. hordei pathotype 253P- (virulent on Rph1, Rph2, Rph4, Rph6, Rph8 and RphQ). Phenotypic assessment of a 'CI 9214' (susceptible) x 'Stirling' (RphC) (CI 9214/Stirling) doubled haploid (DH) population at the seedling stage using P. hordei pathotype 253P-, confirmed that RphC was monogenically inherited. Marker-trait association analysis of RphC in the CI 9214/Stirling DH population using 4,500 DArT-seq markers identified a highly significant (-log(10)Pvalue > 17) single peak on the long arm of chromosome 5H (5HL). Further tests of allelism determined that RphC was genetically independent of Rph3, Rph7, Rph11, Rph13 and Rph14, and was an allele of Rph12 (Rph9.z), which also maps to 5HL. Conclusion: Multipathotype tests and subsequent pedigree analysis determined that 14 related Australian barley varieties (including 'Stirling' and 'Cantala') carry RphC and that the likely source of this resistance is via a Czechoslovakian landrace LV-Kvasice-NA-Morave transferred through common ancestral cultivars 'Hanna' and 'Abed Binder'. RphC is an allele of Rph12 (Rph9.z) and is therefore designated Rph9.am. Bioinformatic analysis using sequence arrays from DArT-seq markers in linkage disequilibrium with Rph9.am identified possible candidates for further gene cloning efforts and marker development at the Rph9/Rph12/Rph9.am locus.
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页数:12
相关论文
共 32 条
[1]   GOLD - Graphical Overview of Linkage Disequilibrium [J].
Abecasis, GR ;
Cookson, WOC .
BIOINFORMATICS, 2000, 16 (02) :182-183
[2]   Haploview: analysis and visualization of LD and haplotype maps [J].
Barrett, JC ;
Fry, B ;
Maller, J ;
Daly, MJ .
BIOINFORMATICS, 2005, 21 (02) :263-265
[3]   Chromosomal location and genetic relationship of leaf rust resistance genes Rph9 and Rph12 in barley [J].
Borovkova, IG ;
Jin, Y ;
Steffenson, BJ .
PHYTOPATHOLOGY, 1998, 88 (01) :76-80
[4]  
Clifford BC., 1985, The cereal rusts, P173
[5]   RESPONSE OF AUSTRALIAN BARLEY CULTIVARS TO LEAF RUST (PUCCINIA-HORDEI) [J].
COTTERILL, PJ ;
REES, RG ;
PLATZ, GJ .
AUSTRALIAN JOURNAL OF EXPERIMENTAL AGRICULTURE, 1994, 34 (06) :783-788
[6]   Genome-Wide Association Mapping of Root Traits in a Japonica Rice Panel [J].
Courtois, Brigitte ;
Audebert, Alain ;
Dardou, Audrey ;
Roques, Sandrine ;
Ghneim-Herrera, Thaura ;
Droc, Gaetan ;
Frouin, Julien ;
Rouan, Lauriane ;
Goze, Eric ;
Kilian, Andrzej ;
Ahmadi, Nourollah ;
Dingkuhn, Michael .
PLOS ONE, 2013, 8 (11)
[7]   Analysis of Stem Rust Resistance in Australian Barley Cultivars [J].
Derevnina, L. ;
Fetch, T. ;
Singh, D. ;
Brueggeman, R. ;
Dong, C. ;
Park, R. F. .
PLANT DISEASE, 2014, 98 (11) :1485-1493
[8]   Molecular characterisation and genetic mapping of candidate genes for qualitative disease resistance in perennial ryegrass (Lolium perenne L.) [J].
Dracatos, Peter M. ;
Cogan, Noel O. I. ;
Sawbridge, Timothy I. ;
Gendall, Anthony R. ;
Smith, Kevin F. ;
Spangenberg, German C. ;
Forster, John W. .
BMC PLANT BIOLOGY, 2009, 9
[9]  
Franckowiak J.D., 1997, Barley Genet. Newsl, V27, P36
[10]   MICROPREP PROTOCOL FOR EXTRACTION OF DNA FROM TOMATO AND OTHER HERBACEOUS PLANTS [J].
FULTON, TM ;
CHUNWONGSE, J ;
TANKSLEY, SD .
PLANT MOLECULAR BIOLOGY REPORTER, 1995, 13 (03) :207-209