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Topic:Genomics

Genomics in horses involves the study and analysis of the horse genome to understand genetic variations and their implications for equine health, performance, and breeding. This field encompasses the identification and mapping of genes associated with specific traits, diseases, and conditions in horses. Techniques such as whole-genome sequencing and genome-wide association studies (GWAS) are employed to explore genetic diversity and inheritance patterns among different horse breeds. Genomics provides insights into hereditary disorders, informs selective breeding practices, and aids in the development of personalized veterinary care. This page compiles peer-reviewed research studies and scholarly articles that explore the applications, methodologies, and findings of genomic research in equine science.
Intra-species variation in chlorpromazine metabolism.
Research communications in chemical pathology and pharmacology    May 1, 1973   Volume 5, Issue 3 741-758 
Brookes LG, Forrest IS.No abstract available
Further proof of genetic inactivation of the X chromosome in the female mule.
Nature    June 16, 1972   Volume 237, Issue 5355 393-396 doi: 10.1038/237393a0
Rattazzi MG, Cohen MM.No abstract available
G6PD expression and X chromosome late replication in fibroblast clones from a female mule.
Nature    June 16, 1972   Volume 237, Issue 5355 396-397 doi: 10.1038/237396a0
Ray M, Gee PA, Richardson BJ, Hamerton JL.No abstract available
Distribution of erythrocyte carbonic anhydrase B-type alleles in Japanese farm horses.
Biochemical genetics    June 1, 1972   Volume 6, Issue 4 255-262 doi: 10.1007/BF00486119
Deutsch HF, Taniguchi N, Funakoshi S, Hirai H.No abstract available
[Lipoproteins of various experimental animals].
Saishin igaku. Modern medicine    March 1, 1972   Volume 27, Issue 3 482-490 
Nagase S.No abstract available
Genetics of horse acidic prealbumins.
Genetics    July 1, 1970   Volume 65, Issue 3 495-503 doi: 10.1093/genetics/65.3.495
Braend M.No abstract available
Comparison of four horse herpesviruses.
Journal of virology    November 1, 1969   Volume 4, Issue 5 738-741 doi: 10.1128/JVI.4.5.738-741.1969
Plummer G, Bowling CP, Goodheart CR.Four equine herpesviruses (equine abortion virus, equine herpesvirus types 2 and 3, and equine cytomegalovirus) were compared. The equine abortion virus did not cross-neutralize with any of the other viruses, but the other three did show varying degrees of cross-neutralization among themselves. Equine abortion virus grew more quickly in tissue cultures than did the others, and attained higher titers of infectivity in the culture fluid; it also formed plaques in a wider range of tissue culture species, although the other three were not specific for one tissue culture system only, in that they w...
Lethal dominant white in horses.
The Journal of heredity    March 1, 1969   Volume 60, Issue 2 59-63 doi: 10.1093/oxfordjournals.jhered.a107933
Pulos WL, Hutt FB.No abstract available
Some properties of soluble proteins from chromaffin granules of different species.
Biochemical pharmacology    August 1, 1968   Volume 17, Issue 8 1553-1556 doi: 10.1016/0006-2952(68)90214-1
Strieder N, Ziegler E, Winkler H, Smith AD.No abstract available
The correlation of serum levels of two transaminases with tissue levels in six vertebrate species.
Comparative biochemistry and physiology    June 1, 1968   Volume 25, Issue 3 1081-1089 doi: 10.1016/0010-406x(68)90593-8
Zimmerman HJ, Dujovne CA, Levy R.No abstract available
[Biochemical polymorphism and the detection of paternity in horses].
Schweizer Archiv fur Tierheilkunde    July 1, 1967   Volume 109, Issue 7 378-385 
Baer A.No abstract available
Indole nature of enterochromaffin substance.
Nature    April 8, 1967   Volume 214, Issue 5084 196-197 doi: 10.1038/214196a0
Solcia E, Sampietro R.No abstract available
[Genetic aspect of the haptoglobins of several animal species (bovines, equines, swine)].
Archivio veterinario italiano    December 31, 1965   Volume 16, Issue 6 433-447 
Minoccheri F.No abstract available
Genetic Systems of Blood Groups in Horses.
Genetics    November 1, 1964   Volume 50, Issue 5 915-929 doi: 10.1093/genetics/50.5.915
STORMONT C, SUZUKI Y.No abstract available
New evidence on the genetics of the Palomino horse.
The Journal of heredity    March 1, 1951   Volume 42, Issue 2 60-64 
CASTLE WE, KING FL.No abstract available
The eosinophil cell; studies in horse and camel.
Lancet (London, England)    September 18, 1948   Volume 2, Issue 6525 451 
DURAN-JORDA F.This research article investigates the significance of eosinophil cells in horses and camels, focusing on the large granules found in these cells and their similarities to smaller red blood cells. […]
The Abc of Color Inheritance in Horses.
Genetics    January 1, 1948   Volume 33, Issue 1 22-35 doi: 10.1093/genetics/33.1.22
Castle WE.No abstract available
Genetics of the Palomino horse; confirmation of the Salisbury-Britton hypothesis.
The Journal of heredity    February 1, 1946   Volume 37 35-38 doi: 10.1093/oxfordjournals.jhered.a105569
CASTLE WE.No abstract available
A genetic analysis of the American quarter horse.
The Journal of heredity    November 1, 1945   Volume 36 346-352 doi: 10.1093/oxfordjournals.jhered.a105438
FLETCHER JL.No abstract available
A novel KIT variant in an Icelandic horse with white-spotted coat colour.
   March 17, 2026  
No abstract available
Genotyping in the Brazilian Criollo Horse Stud Book: resources and perspectives.
   March 17, 2026  
The goal of this research was to evaluate the ability of the genotyping information available in the Brazilian Criollo Horse Stud Book to describe the genetic variability of the breed and the exclusion probability determined in comparative tests. Altogether, two softwares were used in the analyses of the available genotypes: Cervus 3.0.3 and Genepop 4.0. Eight microsatellite markers totaled 109 alleles, with an average of 13.6 +/- 0.6 alleles per locus. Large differences between expected and observed heterozygosity were ubiquitous (0.821 +/- 0.07 and 0.470 +/- 0.17, respectively). Although the...
The genetics of equine osteochondrosis.
   March 17, 2026  
Osteochondrosis (OC) develops in growing horses due to disturbed differentiation and maturation of cartilage, particularly at the predilection sites of the fetlock, hock and stifle joints. Horses with osteochondrotic lesions are at a high risk of developing orthopaedic problems later in life. This article briefly reviews the published heritability estimates for OC and offers perspectives for selection in the horse industry. Heritabilities for OC in Warmblood and Standardbred horses have been estimated at 0.1-0.4 in animal threshold models. Whole genome scans using microsatellites have identifi...
The American Quarter Horse: population structure and relationship to the thoroughbred.
   March 17, 2026  
A breed known for its versatility, the American Quarter Horse (QH), is increasingly bred for performance in specific disciplines. The impact of selective breeding on the diversity and structure of the QH breed was evaluated using pedigree analysis and genome-wide SNP data from horses representing 6 performance groups (halter, western pleasure, reining, working cow, cutting, and racing). Genotype data (36 037 single nucleotide polymorphisms [SNPs]) from 36 Thoroughbreds were also evaluated with those from the 132 performing QHs to evaluate the Thoroughbred's influence on QH diversity. Results s...
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