Development of wild barley-derived DArT markers and their integration into a barley consensus map

被引:26
作者
Alsop, B. P. [1 ]
Farre, A. [3 ]
Wenzl, P. [2 ]
Wang, J. M. [4 ]
Zhou, M. X. [5 ]
Romagosa, I. [3 ]
Kilian, A. [2 ]
Steffenson, B. J. [1 ]
机构
[1] Univ Minnesota, Dept Plant Pathol, St Paul, MN 55108 USA
[2] Triticarte PL & DArT PL, Canberra, ACT 2600, Australia
[3] Univ Lleida, Ctr UdL IRTA, Lleida 25198, Spain
[4] Zhejiang Acad Agr Sci, Inst Crop & Nucl Technol Utilizat, Hangzhou 310021, Zhejiang, Peoples R China
[5] Univ Tasmania, Tasmanian Inst Agr Res, Kings Meadows, Tas 7249, Australia
关键词
Hordeum vulgare subsp spontaneum; Synthetic map; Diversity arrays technology; ARRAYS TECHNOLOGY DART; AB-QTL ANALYSIS; DIVERSITY ARRAYS; GENETIC DIVERSITY; SPRING BARLEY; LINKAGE MAP; RESISTANCE; GENOME; SSR; CONSTRUCTION;
D O I
10.1007/s11032-010-9415-3
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Wild barley-specific genomic libraries were developed for the purpose of creating a 'comprehensive' genomic representation of the primary Hordeum genepool capable of more robust genotyping of barley. In order to enrich for wild barley-specific sequences in the DArT libraries, suppression subtraction hybridization (SSH) was performed using cultivated barley as the subtraction driver and wild barley as the tester. Four doubled-haploid populations were genotyped with the comprehensive barley DArT array, including two from wild x cultivated crosses (Damon/Harrington and Shechem/Harrington) and two from cultivated x cultivated crosses (Albacete/Barbarrouse and TX9425/Naso Nijo). Analysis of genotyping data revealed that the SSH process was somewhat ineffective at enriching for unique sequences in this application of DArT marker development. However, the addition of markers derived from wild barley proved to be an effective means for increasing the number of polymorphic markers obtainable from a single DArT assay. Genetic maps of the four component populations were developed and 607 newly developed DArT markers were integrated with a barley consensus map to create a new synthetic map of the barley genome containing 3542 markers. This significantly increased the resolution of the consensus map and improved the power of the map to provide a reference for profiling genetic diversity within the primary Hordeum genepool. The improvement in the genotyping capability of the comprehensive DArT genomic representation and the higher resolution of the synthetic map facilitates an even greater flexibility of DArT markers to be utilized as a fast, high-throughput platform for molecular marker-based barley breeding.
引用
收藏
页码:77 / 92
页数:16
相关论文
共 45 条
[1]   Diversity arrays technology (DArT) for high-throughput profiling of the hexaploid wheat genome [J].
Akbari, Mona ;
Wenzl, Peter ;
Caig, Vanessa ;
Carling, Jason ;
Xia, Ling ;
Yang, Shiying ;
Uszynski, Grzegorz ;
Mohler, Volker ;
Lehmensiek, Anke ;
Kuchel, Haydn ;
Hayden, Mathew J. ;
Howes, Neil ;
Sharp, Peter ;
Vaughan, Peter ;
Rathmell, Bill ;
Huttner, Eric ;
Kilian, Andrzej .
THEORETICAL AND APPLIED GENETICS, 2006, 113 (08) :1409-1420
[2]   QTLs for agronomic traits in the Mediterranean environment identified in recombinant inbred lines of the cross 'Arta' x H-spontaneum 41-1 [J].
Baum, M ;
Grando, S ;
Backes, G ;
Jahoor, A ;
Sabbagh, A ;
Ceccarelli, S .
THEORETICAL AND APPLIED GENETICS, 2003, 107 (07) :1215-1225
[3]  
Davies PA., 2003, Doubled Haploid Production in Crop Plants
[4]   Wild barley: a source of genes for crop improvement in the 21st century? [J].
Ellis, RP ;
Forster, BP ;
Robinson, D ;
Handley, LL ;
Gordon, DC ;
Russell, JR ;
Powell, W .
JOURNAL OF EXPERIMENTAL BOTANY, 2000, 51 (342) :9-17
[5]  
Farre A, 2008, THESIS U LLEIDA SPAI
[6]   Diversity and sources of multiple disease resistance in Hordeum spontaneum [J].
Fetch, TG ;
Steffenson, BJ ;
Nevok, E .
PLANT DISEASE, 2003, 87 (12) :1439-1448
[7]   Variation in utilization efficiency and tolerance to reduced water and nitrogen supply among wild and cultivated barleys [J].
Górny, AG .
EUPHYTICA, 2001, 117 (01) :59-66
[8]   CONSTRUCTION OF AN RFLP MAP OF BARLEY [J].
GRANER, A ;
JAHOOR, A ;
SCHONDELMAIER, J ;
SIEDLER, H ;
PILLEN, K ;
FISCHBECK, G ;
WENZEL, G ;
HERRMANN, RG .
THEORETICAL AND APPLIED GENETICS, 1991, 83 (02) :250-256
[9]   A genetic map of 1,000 SSR and DArT markers in a wide barley cross [J].
Hearnden, P. R. ;
Eckermann, P. J. ;
McMichael, G. L. ;
Hayden, M. J. ;
Eglinton, J. K. ;
Chalmers, K. J. .
THEORETICAL AND APPLIED GENETICS, 2007, 115 (03) :383-391
[10]   CONSTRUCTION OF A RESTRICTION-FRAGMENT-LENGTH-POLYMORPHISM MAP FOR BARLEY (HORDEUM-VULGARE) [J].
HEUN, M ;
KENNEDY, AE ;
ANDERSON, JA ;
LAPITAN, NLV ;
SORRELLS, ME ;
TANKSLEY, SD .
GENOME, 1991, 34 (03) :437-447