Identification of molecular markers linked to ant28-484, a mutation that eliminates proanthocyanidin production in barley seeds

被引:18
作者
Garvin, DF
Miller-Garvin, JE
Viccars, EA
Jacobsen, JV
Brown, AHD
机构
[1] USDA ARS, US Plant Soil & Nutr Lab, Ithaca, NY 14853 USA
[2] Cornell Univ, Dept Plant Breeding, Ithaca, NY 14853 USA
[3] CSIRO, Div Plant Ind, Canberra, ACT 2601, Australia
关键词
D O I
10.2135/cropsci1998.0011183X003800050023x
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Barley (Hordeum vulgare L,) seed proanthocyanidins play a primary role in beer colloidal haze formation. The barley ant28-484 mutation eliminates proanthocyanidin synthesis and beer brewed with barley homozygous for ant28-484 exhibits intrinsic haze stability. The recessive nature of this mutation, coupled with the fact that the proanthocyanidin-free phenotype it confers is discernable only in maternal tissues of the seed, makes introgression of ant28-484 into new cultivars arduous. The goal of this study was to identify molecular markers for use in marker-assisted selection of ant28-484, An F-2 barley population derived from the cross Arapiles x Caminant was scored for ant28-484 segregation. DNA pools from F-2 plants homozygous for ant28-484 or the contrasting wild-type allele were used for bulked segregant RAPD analysis. RAPD bands differentiating the two DNA pools were then analyzed for linkage to ant28-484 in the F-2 population, Five linked RAPD markers were identified, with Linkage estimates to ant28-484 ranging from 0 to 11 centimorgans (cM). Three of the markers were linked in cis to ant28-484 and two were linked in trans. The three most tightly linked RAPD markers were cloned, and southern analysis indicated that they represent low or single copy sequences. The ant28-484 mutation was localized to barley chromosome arm 3HL, on the basis of results of southern analysis with wheat-barley ditelosomic addition lines probed with the cloned RAPD markers and on the basis of linkage to the previously mapped isozyme locus Est4. These markers will enhance the efficiency with which ant28-484 can be introgressed into barley germplasm.
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页码:1250 / 1255
页数:6
相关论文
共 27 条
[1]   LOCATION OF THE PROANTHOCYANIDINS IN THE BARLEY-GRAIN [J].
AASTRUP, S ;
OUTTRUP, H ;
ERDAL, K .
CARLSBERG RESEARCH COMMUNICATIONS, 1984, 49 (01) :105-109
[2]   IDENTIFICATION OF RAPD MARKERS LINKED TO A RHYNCHOSPORIUM-SECALIS RESISTANCE LOCUS IN BARLEY USING NEAR-ISOGENIC LINES AND BULKED SEGREGANT ANALYSIS [J].
BARUA, UM ;
CHALMERS, KJ ;
HACKETT, CA ;
THOMAS, WTB ;
POWELL, W ;
WAUGH, R .
HEREDITY, 1993, 71 :177-184
[3]  
BREGITZER P, 1995, J AM SOC BREW CHEM, V53, P191
[4]  
Brown A. H. D., 1983, Isozymes in plant genetics and breeding. Part B., P57
[5]   IDENTIFICATION OF RAPD MARKERS LINKED TO GENETIC-FACTORS CONTROLLING THE MILLING ENERGY REQUIREMENT OF BARLEY [J].
CHALMERS, KJ ;
BARUA, UM ;
HACKETT, CA ;
THOMAS, WTB ;
WAUGH, R ;
POWELL, W .
THEORETICAL AND APPLIED GENETICS, 1993, 87 (03) :314-320
[6]   PROANTHOCYANIDIN-FREE BARLEY - MALTING AND BREWING [J].
ERDAL, K .
JOURNAL OF THE INSTITUTE OF BREWING, 1986, 92 (03) :220-224
[7]  
ERDAL K, 1983, P 19 EUR BREW C EB C, P557
[8]  
FIGUEROA J D C, 1989, Journal of the American Society of Brewing Chemists, V47, P44
[9]  
Gramshaw J. W., 1969, Technical Quarterly, Master Brewers Association of America, V6, P239
[10]   EFFECTS OF GENE ANT13 ON AGRONOMIC AND MALT QUALITY TRAITS OF BARLEY [J].
HORSLEY, RD ;
SCHWARZ, PB ;
FOSTER, AE .
CROP SCIENCE, 1991, 31 (03) :593-598