GrainGenes Home

 
Query (optional)   in Class 

GrainGenes Marker Report: vrn-A1-5A

[ Printable Version ]  [ Submit comment/correction ]

Locus
vrn-A1-5A
Map
CS/SQ1-5A117
[ Show Nearby Loci ]
QTL with Locus Marker
QYld.saq-5A
Map Data
Wheat, Chinese Spring x SQ1
Associated Gene
Vrn1 (Triticum)
Gene Class
Response to vernalization



Gene Associated with Locus
Vrn1 (Triticum)
Synonym
SynonymAP1 (Triticum)
Gene Class
Response to vernalization
Allele
Vrn1 (Triticum)
vrn1 (Triticum)
Locus
vrn-A1-5A
Vrn1
Candidate Locus
AP1
Reference
ReferenceYan L et al. (2003) Positional cloning of wheat vernalization gene VRN1. Proceedings of the National Academy of Science, USA 100:6263-6268.
ReferenceHart GE et al. (1993) Linkage maps of Triticum aestivum (hexaploid wheat, 2n = 42, genomes A, B, and D) and T. tauschii (2n = 14, genome D). Genetic maps : locus maps of complex genomes..
ReferenceKuspira J et al. (1986) Genetic and cytogenetic analysis of the A genome of Triticum monococcum II. The mode of inheritance of spring versus winter growth habit. Canadian Journal of Genetics and Cytology 28:88-95.
ReferencePugsley AT (1972) Additional genes inhibiting winter habit in wheat. Euphytica 21:547-552.
Gene Product
MADS box transcription factor
Chromosome
5A
ReferenceLaw CN et al. (1975) The genetic control of ear emergence time by chromosomes 5A and 5D of wheat. Heredity 36:49-58.
 
ReferencePBA-46-745 Plant Breeding Abstracts 46:745.
Chromosome Arm
5AL
ReferenceLaw CN et al. (1975) The genetic control of ear emergence time by chromosomes 5A and 5D of wheat. Heredity 36:49-58.
 
ReferencePBA-46-745 Plant Breeding Abstracts 46:745.
Germplasm
[ Hide all but 1 of 34 ]
Hexaploid stockBorsum
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 Cadet
ReferenceRoberts DWA and Larson RI (1985) Vernalisation and photoperiod responses of selected chromosome substitution lines derived from 'Rescue', 'Cadet' and 'Cypress' wheats. Canadian Journal of Genetics and Cytology 27:586-591.
 CONLEY
ReferencePugsley AT (1971) A genetic analysis of the spring-winter habit of growth in wheat. Australian Journal of Agricultural Research 22:21-31.
 DALA
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 Diamant 1
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 Diamant II
ReferenceMaistrenko OI (1980) Cytogenetic study of the growth habit and ear-emergence time in wheat (Triticum aestivum L.). Well-being of Mankind and Genetics: Proceedings of the 14th International Congress of Genetics 267-282.
 FALCON
ReferencePugsley AT (1972) Additional genes inhibiting winter habit in wheat. Euphytica 21:547-552.
 Halland
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 Haruhikari
ReferenceGotoh T (1979) Genetic studies on growth habit of some important spring wheat cultivars in Japan, with special reference to the identification of the spring genes involved. Japanese Journal of Breeding 29:133-145.
 HOPE
ReferenceStelmakh AF (1987) Growth habit in common wheat (Triticum aestivum L. em Thell.). Euphytica 36:513-519.
 KOGA II
ReferenceXin ZY et al. (1988) Studies of the effects of the vernalization responsive genes on the chromosomes of homoeologous group 5 of wheat. Proceedings of the 7th International Wheat Genetics Symposium 675-680.
 Kolben
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 Kolben
ReferencePugsley AT (1972) Additional genes inhibiting winter habit in wheat. Euphytica 21:547-552.
 Kolben
ReferencePBA-20-65 Plant Breeding Abstracts 20:65.
 Kolben
ReferencePugsley AT (1971) A genetic analysis of the spring-winter habit of growth in wheat. Australian Journal of Agricultural Research 22:21-31.
 KONOSU 25
ReferenceGotoh T (1979) Genetic studies on growth habit of some important spring wheat cultivars in Japan, with special reference to the identification of the spring genes involved. Japanese Journal of Breeding 29:133-145.
 MARQUIS
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 REWARD
ReferencePugsley AT (1971) A genetic analysis of the spring-winter habit of growth in wheat. Australian Journal of Agricultural Research 22:21-31.
 Rubin
ReferencePBA-14-42 Plant Breeding Abstracts 14:42.
 Saitama 27
ReferenceGotoh T (1979) Genetic studies on growth habit of some important spring wheat cultivars in Japan, with special reference to the identification of the spring genes involved. Japanese Journal of Breeding 29:133-145.
 Saratov 29
ReferencePBA-46-745 Plant Breeding Abstracts 46:745.
 Saratovskaya 210
ReferencePBA-46-745 Plant Breeding Abstracts 46:745.
 Saratovskaya 29
ReferenceMaistrenko OI (1980) Cytogenetic study of the growth habit and ear-emergence time in wheat (Triticum aestivum L.). Well-being of Mankind and Genetics: Proceedings of the 14th International Congress of Genetics 267-282.
 Shabati Sonora
ReferenceMaistrenko OI (1980) Cytogenetic study of the growth habit and ear-emergence time in wheat (Triticum aestivum L.). Well-being of Mankind and Genetics: Proceedings of the 14th International Congress of Genetics 267-282.
 Shortandinka
ReferenceMaistrenko OI (1980) Cytogenetic study of the growth habit and ear-emergence time in wheat (Triticum aestivum L.). Well-being of Mankind and Genetics: Proceedings of the 14th International Congress of Genetics 267-282.
 TAKARI
ReferenceFletcher RJ (1983) Takari. Journal of the Australian Institute of Agricultural Science 49:46.
 THATCHER
ReferencePugsley AT (1971) A genetic analysis of the spring-winter habit of growth in wheat. Australian Journal of Agricultural Research 22:21-31.
 TRIPLE DIRK
ReferencePugsley AT (1971) A genetic analysis of the spring-winter habit of growth in wheat. Australian Journal of Agricultural Research 22:21-31.
 WW15
ReferencePugsley AT (1972) Additional genes inhibiting winter habit in wheat. Euphytica 21:547-552.
Homologous chromosome substitution lineKharkov 22MC*/Rescue 5A
ReferenceFick GN and Qualset CO (1973) Inheritance and distribution of grass-dwarfing genes in short-statured wheats. Crop Science 13:31-33.
 Rescue*/Cadet 5A
ReferenceRoberts DWA and Larson RI (1985) Vernalisation and photoperiod responses of selected chromosome substitution lines derived from 'Rescue', 'Cadet' and 'Cypress' wheats. Canadian Journal of Genetics and Cytology 27:586-591.
 Winalta*8/Rescue 5A
ReferenceMacDonald MD (1987) Registration of two winter wheat disomic whole chromosome substitution germplasm lines. Crop Science 27:1097.
Near isogenic stockTriple Dirk D
ReferencePugsley AT (1972) Additional genes inhibiting winter habit in wheat. Euphytica 21:547-552.
 Triple Dirk D
ReferencePugsley AT (1971) A genetic analysis of the spring-winter habit of growth in wheat. Australian Journal of Agricultural Research 22:21-31.
Comment
Kuspira et al. (531) attributed single gene variation in T. monococcum to the Vrn1/vrn1 locus. Multiple recessive alleles were suggested.
Clone
AY244508/9
Sequence
AY244508
AY244509
2 Point Data
Vrn1/AP1
Vrn1/Xbcd450
Wheat Gene Catalog Reference
531
ReferenceKuspira J et al. (1986) Genetic and cytogenetic analysis of the A genome of Triticum monococcum II. The mode of inheritance of spring versus winter growth habit. Canadian Journal of Genetics and Cytology 28:88-95.
Data Source
Dubcovsky, Jorge2003.04
Info Source
ReferenceMcIntosh RA et al. (1995) Catalogue of gene symbols for wheat. Proceedings of the 8th International Wheat Genetics Symposium 1333-1500.
Data Curator
Hart, Gary E.96.03.24

GrainGenes is a product of the Agricultural Research Service of the US Department of Agriculture.