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Topic:Alleles

Alleles in horses refer to the different versions of a gene that exist within the equine genome, contributing to the diversity of traits observed in horse populations. These genetic variations can influence a wide range of characteristics, including coat color, height, temperament, and susceptibility to certain diseases. Understanding alleles is crucial for breeding programs, as they help predict the inheritance of desirable traits and manage genetic disorders. Common examples include the alleles responsible for coat color variations, such as the Extension (E) and Agouti (A) loci. This page compiles peer-reviewed research studies and scholarly articles that explore the identification, function, and impact of alleles on equine genetics, offering insights into their role in shaping the phenotypic and health-related traits of horses.
Polymorphism of Old Kladruber horses, a surviving but endangered baroque breed.
European journal of immunogenetics : official journal of the British Society for Histocompatibility and Immunogenetics    November 7, 1998   Volume 25, Issue 5 357-363 doi: 10.1046/j.1365-2370.1998.00117.x
Horín P, Cothran EG, Trtková K, Marti E, Glasnák V, Henney P, Vyskocil M, Lazary S.Analysis of MHC class I and class II polymorphism, as well as data from other polymorphic systems (non-MHC lymphocyte alloantigen, blood groups systems, biochemical polymorphisms and microsatellite loci), was used to characterize the extent and distribution of the genic polymorphism of Kladruber horses. A breed-characteristic distribution of the MHC polymorphism was found. The repertoire of defined MHC class I specificities was restricted, especially in the grey subpopulation and in stallions, but a high frequency of blanks suggests the possible existence of undetected specificities. Despite t...
Cloning and characterization of the equine F18 gene, which has a novel exon.
Animal genetics    November 4, 1998   Volume 29, Issue 5 381-384 doi: 10.1046/j.1365-2052.1998.295356.x
Tozaki T, Hirota K, Mashima S, Tomita M, Mukoyama H.A genomic clone isolated from an equine genomic library probed with an oligonucleotide (CAG)10 showed high sequence similarity to the human F18 gene and was tentatively named equine F18 gene. Because the human F18 gene is expressed in many tissues, we examined whether this equine clone was also expressed in equine tissues. The cDNA encoding equine F18 was obtained by the reverse transcriptase-polymerase chain reaction (RT-PCR) from equine thymus. The nucleotide sequence of the equine F18 cDNA (1940 bp) was determined and contained both the ATG initiation codon and a poly(A) sequence. The cDNA ...
[Population genetic parameters of aboriginal Yakut horses as related to modern breeds of the domestic horse Equus caballus L].
Genetika    August 28, 1998   Volume 34, Issue 6 796-809 
Tikhonov VN, Cothran EG, Kniazev SP.This study was the first to analyze the polymorphic characteristics of a wide range of biochemical markers in aboriginal Yakut horses. A total of 124 alleles, including 48 alleles of seven blood-group loci and 76 alleles of ten loci for enzymes and other proteins, were studied. For these polymorphic systems, a computer analysis of the genetic distances between 85 horse breeds of different origin from all parts of the world was performed. The low level of hereditary variation in the Yakut horses confirmed that this breed is old and has long been an isolated population. Phylogenetic analysis dem...
Equine dinucleotide repeat polymorphisms at loci ASB 21, 23, 25 and 37-43.
Animal genetics    July 31, 1998   Volume 29, Issue 1 67 
Irvin Z, Giffard J, Brandon R, Breen M, Bell K.No abstract available
Polymorphism and multiple loci for the horse DQA gene.
Immunogenetics    June 20, 1998   Volume 47, Issue 6 487-490 doi: 10.1007/s002510050387
Fraser DG, Bailey E.No abstract available
A dinucleotide mutation in the endothelin-B receptor gene is associated with lethal white foal syndrome (LWFS); a horse variant of Hirschsprung disease.
Human molecular genetics    June 13, 1998   Volume 7, Issue 6 1047-1052 doi: 10.1093/hmg/7.6.1047
Yang GC, Croaker D, Zhang AL, Manglick P, Cartmill T, Cass D.Lethal white foal syndrome (LWFS) is a congenital anomaly of horses characterized by a white coat colour and aganglionosis of the bowel, which is similar to Hirschsprung disease (HSCR). We decided to investigate possible mutations of the endothelin-B receptor gene ( EDNRB ) in LWFS as recent studies in mutant rodents and some patients have demonstrated EDNRB defects. First, we identified a full-length cDNA for horse EDNRB . This cDNA fragment contained a 1329 bp open reading frame which encoded 443 amino acid residues. The predicted amino acid sequence was 89, 91 and 85% identical to human, bo...
Comparisons of three probability formulae for parentage exclusion.
Animal genetics    June 6, 1998   Volume 28, Issue 6 397-400 doi: 10.1111/j.1365-2052.1997.00186.x
Jamieson A, Taylor SC.Three general formulae calibrate the average capability of marker systems to dispute falsely reported pedigree records in uniparous species. The most familiar exclusion formula applies to paternity, although the same formula applies equally to maternity. Another formula faults the relationship of a single offspring with its putative parent; for example, where the genotype of the other parent is not available. The remaining formulae excludes both of the falsely recorded parents of a substituted offspring. Simplified forms of the three general formulae facilitate the calculation of maximal avera...
Arthroscopic removal of palmar/plantar osteochondral fragments (POF) in the metacarpo- and metatarso-phalangeal joints of standardbred trotters–outcome and possible genetic background to POF.
Acta veterinaria Scandinavica    May 21, 1998   Volume 39, Issue 1 15-24 doi: 10.1186/BF03547803
Roneus B, Arnason T, Collinder E, Rasmussen M.A clinical material of 133 Standardbred horses with palmar/plantar osteochondral fragments (POF) in the metacarpo- and metatarsophalangeal joints were studied. All horses had their fragments removed with arthroscopic surgery. 102 of the horses were 3 years old or younger when surgery was performed. Anatomical localisations of the fragments were in agreement with earlier reports. There was no statistical significant difference in month of birth in the POF--group compared to the total population. Eighty % of the horses that had raced before surgery came back to racing. The racing performance rel...
Parentage testing of Day 10 equine embryos by amplified PCR analysis of microsatellites.
Equine veterinary journal. Supplement    May 21, 1998   Issue 25 69-71 doi: 10.1111/j.2042-3306.1997.tb05104.x
Guèrand M, Mahla R, Lagneaux D, Amigues Y, Palmer E, Bézard J.Paternity analysis was performed on the DNA of 21 equine embryos collected nonsurgically 10 days after ovulation from known mares, but involving 3 possible sires. After extraction, the DNA of each embryo was typed by radioactive PCR amplification using 10 characterised microsatellites; HMS 1, 2, 5, 6, 7 and 8 (Guérin et al. 1994) and HTG 3, 4, 6 and 10 (Marklund et al. 1994). The 21 dams and 3 sires were genotyped using DNA extracted from blood and amplified by PCR. After electrophoresis and autoradiography of the PCR products of the embryo and parents, the alleles of the embryo were compared...
A single base transversion in the flanking region of an equine microsatellite locus affects amplification of one allele.
Animal genetics    May 20, 1998   Volume 28, Issue 6 438-440 doi: 10.1111/j.1365-2052.1997.00188.x
Eggleston-Stott ML, Delvalle A, Dileanis S, Wictum E, Bowling AT.The equine dinucleotide microsatellite HMS7 is part of a microsatellite panel utilized in a parentage verification programme at the Veterinary Genetics Laboratory (Davis, California, USA). Apparent non-Mendelian inheritance was noted when a Quarter Horse mare was excluded as the parent of two offspring based on analysis of the HMS7 locus. The mare's DNA type qualified her as a parent of the offspring at an additional 20 microsatellite loci. The three animals appeared homozygous for HMS7 with each possessing an allele different from that of the other two animals. Polymerase chain reaction prime...
Characterization of a microsatellite in the promoter region of the IGF1 gene in domestic horses and other equids.
Genome    April 29, 1998   Volume 41, Issue 1 70-73 
Caetano AR, Bowling AT.Insulin-like growth factor 1 (IGF1) regulates growth and metabolic functions in vertebrates. A dinucleotide repeat sequence located at the promoter region of the IGF1 gene has been reported in several vertebrate species and may affect the control of the transcriptional activity of this gene. The genotypes of animals from seven horse breeds were determined in order to study the potential association of allelic forms of this microsatellite with adult body size differences found in domestic horses. Among these breeds, five alleles were found. Breed-specific differences in adult body size could no...
Tobiano spotting pattern in horses: linkage of To with AlA and linkage disequilibrium.
The Journal of heredity    March 6, 1998   Volume 89, Issue 1 104-106 doi: 10.1093/jhered/89.1.104
Duffield DA, Goldie PL.In a study of 2,786 tobiano and non-tobiano horses involved in paint horse breeding programs throughout the United States, the inheritance of the tobiano color pattern gene was tracked in pedigrees using the tightly linked polymorphic albumin gene. The dominant tobiano allele (T(o)), which produces the tobiano spotting pattern in horses, was in coupling with both AIA and AIB alleles at the albumin locus. The frequency of the T(o):AIA linkage phase among all the homozygous tobiano horses in this study including offspring and parents (N = 127), was 0.08. The T(o):AIB linkage phase was the most f...
Evaluation of a test for identification of Arabian horses heterozygous for the severe combined immunodeficiency trait.
Journal of the American Veterinary Medical Association    November 28, 1997   Volume 211, Issue 10 1268-1270 
Shin EK, Perryman LE, Meek K.To determine whether a recently developed test would correctly identify horses heterozygous for the severe combined immunodeficiency (SCID) trait. Methods: Case series. Methods: 17 healthy Arabian horses that had previously produced foals with SCID, 1 healthy Arabian foal whose dam and sire had produced foals with SCID, 4 foals with SCID, and 1 healthy non-Arabian foal. Methods: DNA was extracted from leukocytes or fibroblasts, amplified by means of polymerase chain reaction, and hybridized with probes specific for the normal and mutant alleles of the catalytic subunit of DNA-dependent protein...
Equine dinucleotide repeat loci LEX049-LEX063.
Animal genetics    November 18, 1997   Volume 28, Issue 5 378 doi: 10.1111/j.1365-2052.1997.tb03281.x
Coogle L, Bailey E.No abstract available
Equine dinucleotide repeat loci LEX034-LEX048.
Animal genetics    August 1, 1997   Volume 28, Issue 4 309 
Coogle L, Reid R, Bailey E.No abstract available
Three newly detected alloantigens in the U blood group system of horses.
Animal genetics    August 1, 1997   Volume 28, Issue 4 313-314 
Nogaj A, Duniec MJ, Słota E, Duniec M.No abstract available
Validation of microsatellite markers for routine horse parentage testing.
Animal genetics    August 1, 1997   Volume 28, Issue 4 247-252 doi: 10.1111/j.1365-2052.1997.00123.x
Bowling AT, Eggleston-Stott ML, Byrns G, Clark RS, Dileanis S, Wictum E.A parallel testing of 4803 routine Quarter Horse parentage cases, using 15 loci of blood group and protein polymorphisms (blood typing) and 11 loci of dinucleotide repeat microsatellites (DNA typing), validated DNA markers for horse pedigree verification. For the 26 loci, taken together, the theoretical effectiveness of detecting incorrect parentage was 99.999%, making it extremely unlikely that false parentage would fail to be recognized. The tests identified incorrect parentage assignment for 95 offspring (2% of cases). Despite fewer loci, DNA typing was as effective as blood typing and, in ...
A missense mutation in the gene for melanocyte-stimulating hormone receptor (MC1R) is associated with the chestnut coat color in horses.
Mammalian genome : official journal of the International Mammalian Genome Society    December 1, 1996   Volume 7, Issue 12 895-899 doi: 10.1007/s003359900264
Marklund L, Moller MJ, Sandberg K, Andersson L.The melanocyte-stimulating hormone receptor gene (MC1R) is the major candidate gene for the chestnut coat color in horses since it is assumed to be controlled by an allele at the extension locus. MC1R sequences were PCR amplified from chestnut (e/e) and non-chestnut (E/-) horses. A single-strand conformation polymorphism was found that showed a complete association to the chestnut coat color among 144 horses representing 12 breeds. Sequence analysis revealed a single missense mutation (83Ser-->Phe) in the MC1R allele associated with the chestnut color. The substitution occurs in the second ...
Evidence for a single pedigree source of the hyperkalemic periodic paralysis susceptibility gene in quarter horses.
Animal genetics    August 1, 1996   Volume 27, Issue 4 279-281 doi: 10.1111/j.1365-2052.1996.tb00490.x
Bowling AT, Byrns G, Spier S.The pedigree origin of a base pair substitution in the horse muscle sodium channel gene that confers susceptibility to the muscle disease hyperkalemic periodic paralysis (HYPP) was investigated with a set of 978 Quarter Horses. The horses were chosen at random, based on a collection of blood samples taken between 1989 and 1991 to meet parentage testing requirements, primarily but not exclusively from breeding stallions. The frequency of Quarter Horses positive for the base pair substitution, all heterozygotes, was 4.4%, which corresponds to an allelic frequency of 0.02. All horses positive for...
Equine dinucleotide repeat loci LEX015-LEX024.
Animal genetics    June 1, 1996   Volume 27, Issue 3 217-218 
Coogle L, Reid R, Bailey E.No abstract available
Three new polymorphic equine microsatellites: HLM2, HLM3, HLM5.
Animal genetics    June 1, 1996   Volume 27, Issue 3 215 doi: 10.1111/j.1365-2052.1996.tb00961.x
Vega-Pla JL, Garrido JJ, Dorado G, de Andrés-Cara DF.No abstract available
Equine dinucleotide repeat polymorphisms at loci LEX002, -003, -004, -005, -007, -008, -009, -010, -011, -013 and -014.
Animal genetics    April 1, 1996   Volume 27, Issue 2 126-127 
Coogle L, Bailey E, Reid R, Russ M.No abstract available
Characterization of two polymorphic horse microsatellites: HMS15 and HMS20.
Animal genetics    April 1, 1996   Volume 27, Issue 2 123 
Guérin G, Bertaud M.No abstract available
Four equine dinucleotide repeats at microsatellite loci UCDEQ5, UCDEQ14, UCDEQ46 and UCDEQ62.
Animal genetics    April 1, 1996   Volume 27, Issue 2 129 
Eggleston-Stott ML, DelValle A, Bowling AT, Bautista M, Zahorchak R, Malyj W.No abstract available
Anomalous inheritance of a paternally derived trophoblast antigen.
American journal of reproductive immunology (New York, N.Y. : 1989)    March 1, 1996   Volume 35, Issue 3 245-251 doi: 10.1111/j.1600-0897.1996.tb00038.x
Rezai A, Underwood JL, Jalali GR, Mathias S, Allen WR, Mowbray JF.Recurrent spontaneous abortion occurs in 1 in 500 random matings and usually results in abortion of all pregnancies. If absence of antibody to a paternally derived antigen caused abortion, the woman would be expected to make antibody to the other paternal antigen and abort only half her pregnancies. Methods: Microvesicles were prepared from equine placentae. Acid-eluted IgG antibody was eluted from the polymorphic R80K antigen and used to type the residual R80K antigen on vesicles or on peripheral blood leucocytes. Results: In several equine sibships all the half-sibs had the same paternal R80...
Polymorphism of DRA among equids.
Immunogenetics    January 1, 1996   Volume 43, Issue 5 315-317 
Albright-Fraser DG, Reid R, Gerber V, Bailey E.No abstract available
Demonstration of three DRB loci in a domestic horse family.
Immunogenetics    January 1, 1996   Volume 44, Issue 6 441-445 doi: 10.1007/BF02602805
Fraser DG, Bailey E.Single-strand conformational polymorphism (SSCP) gel electrophoresis and DNA sequencing were used to characterize the second exon of the horse DRB homologue as well as to identify eight new DRB alleles. The SSCP gels presented a complex pattern, with phenotypes exhibiting between 4 and 13 bands. The DRB SSCP patterns were studied for two families (6 to 13 bands per pattern). For both families, the patterns showed simple Mendelian inheritance. The polymerase chain reaction products from two individuals possessing homozygous major histocompatibility complex (MHC) alleles by descent were cloned a...
Mutations in the equine plasma transferrin and esterase systems.
Animal genetics    December 1, 1995   Volume 26, Issue 6 407-411 doi: 10.1111/j.1365-2052.1995.tb02692.x
Bell K, Arthur H, Breen M.Eleven apparent mutations of the equine plasma transferrin and esterase gene (10 in TF and one in ES) were found in an analysis of approximately 240,000 thoroughbred horses. Eight of the transferrin mutations produced variants not previously recognized in horses. In the two remaining transferrin mutations and the esterase mutation, reduced plasma concentrations of the proteins were demonstrated by immunological techniques and together with the family data indicated the existence of 'null' alleles.
An equine microsatellite repeat at the VIAS-H64 locus.
Animal genetics    August 1, 1995   Volume 26, Issue 4 282 doi: 10.1111/j.1365-2052.1995.tb03263.x
Ewen KR, Matthews ME.No abstract available
Sodium channel inactivation is impaired in equine hyperkalemic periodic paralysis.
Journal of neurophysiology    May 1, 1995   Volume 73, Issue 5 1892-1899 doi: 10.1152/jn.1995.73.5.1892
Cannon SC, Hayward LJ, Beech J, Brown RH.1. Equine hyperkalemic periodic paralysis (E-HPP) is a dominantly inherited disorder of muscle that causes recurrent episodes of stiffness (myotonia) and weakness in association with elevated serum K+. Affected horses carry a mutant allele of the skeletal muscle isoform of the Na channel alpha-subunit. To understand how this mutation may cause the disease phenotype, the functional defect in Na channel behavior was defined physiologically by recording unitary currents from cell-attached patches on normal and affected equine myotubes. 2. The presence of the mutation was confirmed in our cell lin...
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