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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.
Serological and genomic characterization of equine rotavirus VP4 proteins identifies three different P serotypes.
Virology    June 1, 1994   Volume 201, Issue 2 364-372 doi: 10.1006/viro.1994.1302
Isa P, Snodgrass DR.A series of viral reassortants was prepared between equine rotaviruses H1 (G5), H2 (G3), and L338 (G13) and human rotavirus ST3 (G4). All contained the VP4 cognate gene segment 4 from the equine parental virus and the VP7 cognate gene segment 9 from ST3. Using these viruses and antisera prepared to them, it was shown that each of the three equine viruses possessed a serologically distinct VP4 or P serotype with a > or = 16-fold difference in reciprocal cross-neutralization titers. H1 VP4 was closely related to that of porcine virus OSU, i.e., P7. L338 gene 4 was sequenced, and the sequence and...
Comparison of M and N gene sequences distinguishes variation amongst equine arteritis virus isolates.
The Journal of general virology    June 1, 1994   Volume 75 ( Pt 6) 1491-1497 doi: 10.1099/0022-1317-75-6-1491
Chirnside ED, Wearing CM, Binns MM, Mumford JA.cDNA copies of the M and N genes of equine arteritis virus (EAV) isolates were synthesized by reverse transcription followed by polymerase chain reaction amplification. The cDNA was subjected to a cycle sequencing strategy using Taq polymerase, and the nucleotide and derived amino acid sequences of 10 virus isolates were compared. The M and N genes of all isolates had the same initiation and termination sites as the prototype Bucyrus strain and the encoded proteins were conserved between viruses. Comparison of nucleotide sequence homologies and phylogenetic tree analysis implied the existence ...
Species specificity and interspecies relatedness in VP4 genotypes demonstrated by VP4 sequence analysis of equine, feline, and canine rotavirus strains.
Virology    May 1, 1994   Volume 200, Issue 2 390-400 doi: 10.1006/viro.1994.1203
Taniguchi K, Urasawa T, Urasawa S.We determined the nucleotide and deduced amino acid sequences of the VP4 genes of five equine, two feline, and two canine rotavirus strains. A high degree of homology (> 97.0%) was found among the VP4 amino acid sequences of the equine strains H2, FI-14, and FI23. Equine strain L338 has a distinct VP4 amino acid sequence from those of the other equine strains (78.1% or less homology), and the L338 VP4 exhibited more than 17.0% divergence at the amino acid level from those of rotavirus strains published so far. The VP4 amino acid sequence of equine strain H1, which showed low homology with t...
An equine tetranucleotide repeat: microsatellite MPZ001.
Animal genetics    April 1, 1994   Volume 25, Issue 2 123 doi: 10.1111/j.1365-2052.1994.tb00096.x
Breen M, Downs P, Irvin Z, Bell K.No abstract available
Six equine dinucleotide repeats: microsatellites MPZ002, 3, 4, 5, 6 and 7.
Animal genetics    April 1, 1994   Volume 25, Issue 2 124 doi: 10.1111/j.1365-2052.1994.tb00097.x
Breen M, Downs P, Irvin Z, Bell K.No abstract available
Detection of African horsesickness virus by reverse transcriptase polymerase chain reaction (RT-PCR) using primers for segment 5 (NS1 gene).
The Journal of veterinary medical science    April 1, 1994   Volume 56, Issue 2 347-352 doi: 10.1292/jvms.56.347
Mizukoshi N, Sakamoto K, Iwata A, Ueda S, Kamada M, Fukusho A.The reverse transcription followed by the polymerase chain reaction (RT-PCR) technique was applied to the detection of African horsesickness virus (AHSV) using primers specific for attenuated AHSV serotype 4 segment 5 (NS1 gene). Total RNA which contains both messenger RNA and genomic dsRNA was extracted by the acid guanidinium-phenol-chloroform method from the AHSV infected Vero cells and was used as templates to optimize the RT-PCR. A pair of primer (NP2-NP32) amplified the product of the expected size from all serotypes of attenuated AHSV when four pairs of primers were tested. Using this p...
A new phenogroup in the horse D system of red cell alloantigens found in the Caspian pony.
Animal genetics    February 1, 1994   Volume 25, Issue 1 49-50 
Cothran EG, Long YG.A new D blood group phenogroup consisting of the specificities adeo was observed in a stallion family of Caspian ponies from Iran. An additional six undescribed genetic variants were seen in a total of 82 Iranian horses. This result suggests extensive new genetic variation may be present in domestic horses from geographic regions that have not yet received scientific attention.
Characterization of seven new horse microsatellites: HMS1, HMS2, HMS3, HMS5, HMS6, HMS7 and HMS8.
Animal genetics    February 1, 1994   Volume 25, Issue 1 62 
Guérin G, Bertaud M, Amigues Y.No abstract available
Structure determination of the disialylated poly-(N-acetyllactosamine)-containing O-linked carbohydrate chains of equine chorionic gonadotropin.
Glycoconjugate journal    February 1, 1994   Volume 11, Issue 1 35-41 doi: 10.1007/BF00732430
Hokke CH, Roosenboom MJ, Thomas-Oates JE, Kamerling JP, Vliegenthart JF.The disialylated poly-(N-acetyllactosamine)-containing O-linked oligosaccharide alditols, released by alkaline borohydride treatment of the enzymically N-deglycosylated beta-subunit of equine chorionic gonadotropin, were purified by fast protein liquid chromatography (FPLC) on Mono Q and analysed by fast ion bombardment mass spectrometry (FAB-MS) and 1H-NMR spectroscopy. The identified oligosaccharide alditols have the following structure: [Formula: see text]
The equine herpesvirus type 1 glycoprotein homologous to herpes simplex virus type 1 glycoprotein M is a major constituent of the virus particle.
The Journal of general virology    February 1, 1994   Volume 75 ( Pt 2) 439-442 doi: 10.1099/0022-1317-75-2-439
Pilling A, Davison AJ, Telford EA, Meredith DM.Glycoprotein 45 is a major envelope glycoprotein of equine herpesvirus type 1. The gene encoding this protein is located between map units 0.615 and 0.636 on the virus genome and evidence has suggested that it is encoded by gene 52, one of four genes within this region. Using PCR we have amplified gene 52 and subsequently cloned it into a mammalian expression vector under the control of the human cytomegalovirus immediate early gene promoter. The gene was expressed in COS-7 cells and its product was detected by immunofluorescence and Western blotting. The results indicate that glycoprotein 45 ...
Parentage testing and linkage analysis in the horse using a set of highly polymorphic microsatellites.
Animal genetics    February 1, 1994   Volume 25, Issue 1 19-23 
Marklund S, Ellegren H, Eriksson S, Sandberg K, Andersson L.Ten (TG)n positive clones, isolated from an equine genomic library and sequenced, contained 12-19 uninterrupted TG repeats. Primers for polymerase chain reaction (PCR) were synthesized and nine of these (TG)n loci (HTG7-15) were successfully amplified and utilized in this study together with five previously reported equine microsatellite loci (HTG2-6). The PCR products were analysed by polyacrylamide gel electrophoresis followed by automated laser fluorescence detection or autoradiography. All microsatellites showed polymorphism and stable Mendelian inheritance. Differences in microsatellite v...
Polymorphism in the coding sequence of the horse transferrin gene.
Genome    February 1, 1994   Volume 37, Issue 1 157-165 doi: 10.1139/g94-020
Carpenter MA, Broad TE.Transferrin, the iron transport protein of the blood, is highly polymorphic in many species, including the horse. A number of sequence polymorphisms that distinguish several of the variants of horse transferrin are reported here. Previous studies indicated that exons 12 and 15 were likely to be polymorphic. Sequencing regions of exons 12 and 15 from D and R variants revealed 10 nucleotide substitutions that encoded six amino acid replacements. The F1, F2, H2, and * variants were identical to D, and the O variant was almost identical to R, in the regions studied. The data indicated that the hor...
Molecular cloning and characterization of horse DQB cDNA.
Immunogenetics    January 1, 1994   Volume 40, Issue 6 458 doi: 10.1007/BF00177831
Szalai G, Antczak DF, Gerber H, Lazary S.No abstract available
Estimation of the size of the genome of Taylorella equigenitalis by crossed-field gel electrophoresis.
Veterinary research communications    January 1, 1994   Volume 18, Issue 2 99-102 doi: 10.1007/BF01839226
Matsuda M, Asami Y, Miyazawa T, Sugawara T, Kumano M, Isayama Y, Honda M.No abstract available
Molecular cloning of an equine satellite-type DNA sequence and its chromosomal localization.
Cytogenetics and cell genetics    January 1, 1994   Volume 66, Issue 1 27-30 doi: 10.1159/000133657
Sakagami M, Hirota K, Awata T, Yasue H.We have molecularly cloned portions of equine satellite-type DNA and investigated the organization of the DNA sequence of the cloned segments. Sequence analysis and dot-blot analysis, using the cloned sequence (ES200) as a probe, indicate that the satellite-type DNA sequence consists mainly of 221-bp tandem repeats and represents 3.7-11% of the equine genome. Southern blot analysis further shows that (1) no sequences homologous to ES200 exist in the human, swine, and bovine genomes and that (2) the fragment pattern of the satellite-type DNA produced by ApaI cleavage shows a slight difference a...
Rare alleles, MHC and captive breeding.
EXS    January 1, 1994   Volume 68 187-204 doi: 10.1007/978-3-0348-8510-2_16
Hedrick PW, Miller PS.In recent years, more detailed genetic information has become available for individuals of endangered species in captive breeding programs. There have been suggestions that this information be used to identify rare alleles, particularly those at the MHC, that can be subsequently selected for captive breeding programs. First, we summarize the current information on the MHC relevant to conservation genetics, so that such a possible breeding program is seen in a proper perspective. For example, very few specific alleles at the MHC have been identified as selectively advantageous, even though ther...
Inter- and intra-strain genomic variation in equine herpesvirus type 1 isolates.
Archives of virology    January 1, 1994   Volume 134, Issue 1-2 169-178 doi: 10.1007/BF01379115
Bonass WA, Hudson WA, Elton DM, Killington RA, Halliburton IW.Restriction enzyme digests of DNA from 22 unselected isolates of EHV-1 were analysed by hybridization with cloned DNA fragments covering the genome. In addition to a small amount of inter-strain variation, heterogeneity within strains was observed, caused by loss of specific restriction endonuclease sites in the DNA of a proportion of the virus particles of any one stock. Fifteen strains demonstrated the same intra-strain variation involving loss of the BamHI L-M site which was shown to lie within coding sequence for the large subunit of ribonucleotide reductase. This particular mutation may t...
Molecular cloning and expression of equine interleukin 2.
Veterinary immunology and immunopathology    December 1, 1993   Volume 39, Issue 4 395-406 doi: 10.1016/0165-2427(93)90070-k
Vandergrifft EV, Horohov DW.We have cloned equine IL-2 cDNA in vitro using the polymerase chain reaction (PCR) and primers based on the human IL-2 sequence. The cloned product appears to contain the entire coding region for equine IL-2 based on homology with other known sequences. When expressed in COS cells, the recombinant product augmented the proliferative response of equine peripheral blood mononuclear cells to concanavalin A, however, it failed to support the continued proliferation of murine CTLL-2 cells. Specific substitutions in those regions associated with p55 and p75 binding appear to account for this species...
Rapid evolution of horse satellite DNA.
Genomics    October 1, 1993   Volume 18, Issue 1 113-117 doi: 10.1006/geno.1993.1433
Wijers ER, Zijlstra C, Lenstra JA.The major satellite of the horse genome consists of about 1 million copies of a 221-bp tandem repeat unit. By fluorescence in situ hybridization it has been localized in the centromeres of 58 of the 64 horse chromosomes. The donkey genome contains a similar but not identical satellite. Strikingly, the equine repeat did not hybridize to DNA of the Grevy zebra, despite the divergence of the horse and zebra only 3 to 5 million years ago and the ability of these species to crossbreed. The evolution of satellite DNA in the Equidae is more rapid than that in other mammalian families, which may be ex...
Synteny mapping in the horse using horse-mouse heterohybridomas.
Animal genetics    August 1, 1993   Volume 24, Issue 4 257-260 doi: 10.1111/j.1365-2052.1993.tb00308.x
Williams H, Richards CM, Konfortov BA, Miller JR, Tucker EM.In a study of 35 horse-mouse heterohybridoma cell lines, synteny in the horse was found between LDHB, PEPB and IGF1 and between NP, MPI and IDH2. A synteny between ADA and PEPC was also indicated. The loci for horse immunoglobulin light chain (IgL) genes and for LDHA were independent.
Correlation between the individual heterozygosity of parents and their offspring.
Heredity    July 1, 1993   Volume 71 ( Pt 1) 59-63 doi: 10.1038/hdy.1993.107
Mitton JB, Schuster WS, Cothran EG, De Fries JC.Specific formulations are derived for the correlation between the heterozygosity of a randomly mating parent and its offspring for a diallelic locus, and for the correlation when multiple loci are considered. The expected correlation is maximal, approaching r = 0.50, when allelic frequencies are highly asymmetric, and it is zero when the allelic frequencies are equal to 0.50. Parent-offspring correlations, up to a maximum of 0.50 for diallelic loci, indicate that levels of heterozygosity can respond to selection. Multilocus allozyme data from limber pine, Pinus flexilis, and from horses of sta...
Phylogenetic position of Taylorella equigenitalis determined by analysis of amplified 16S ribosomal DNA sequences.
International journal of systematic bacteriology    July 1, 1993   Volume 43, Issue 3 618-621 doi: 10.1099/00207713-43-3-618
Bleumink-Pluym NM, van Dijk L, van Vliet AH, van der Giessen JW, van der Zeijst BA.The 16S ribosomal DNA sequence of Taylorella equigenitalis (formerly Haemophilus equigenitalis), the causative organism of contagious equine metritis, was determined. A phylogenetic analysis of this sequence revealed a phylogenetic position of T. equigenitalis in the beta subclass of the class Proteobacteria apart from the position of Haemophilus influenzae, which belongs to the gamma subclass of Proteobacteria. A close phylogenetic relationship among T. equigenitalis, Alcaligenes xylosoxidans, and Bordetella bronchiseptica was detected; Spirillum volutans and Chromobacterium fluviatile (Iodob...
DNA sequence analysis of serologically detected ELA class II haplotypes at the equine DQ beta locus.
Animal genetics    June 1, 1993   Volume 24, Issue 3 187-190 doi: 10.1111/j.1365-2052.1993.tb00285.x
Szalai G, Bailey E, Gerber H, Lazary S.The genetic diversity at the ELA DQ beta locus was investigated using polymerase chain reaction and DNA sequencing. Based upon serological methods 16 class II homozygous animals were selected and their genomic DNA was used. A DQ beta gene from an equine cDNA library was also sequenced. Our methodology and the similarity between the genomic and the cDNA sequences suggest that the studied locus is expressed on equine lymphocytes. In the predicted amino acid sequence the most extensive variation is located at residues 56-60. The pattern of these five amino acids is strongly correlated to the sero...
The cDNA sequence of horse transferrin.
Biochimica et biophysica acta    May 28, 1993   Volume 1173, Issue 2 230-232 doi: 10.1016/0167-4781(93)90186-h
Carpenter MA, Broad TE.The cDNA sequence of horse transferrin was determined by sequencing clones isolated from a horse liver cDNA library and clones obtained by PCR. The 2305 bp horse transferrin cDNA sequence included part of the 5' untranslated region and extended to the poly(A) tail. It had 80% sequence identity with the human transferrin cDNA, and encoded a protein of 706 residues, including a signal sequence of 19 amino acids. The horse transferrin sequence had the duplicated structure and conserved iron binding and cysteine residues which are characteristic of the transferrin family.
Proto-oncogene of genomic DNA, related to the human epidermal growth factor receptor (EGFR) gene, from clinically normal domestic animals.
The Journal of veterinary medical science    April 1, 1993   Volume 55, Issue 2 319-321 doi: 10.1292/jvms.55.319
Kai K, Tateyama S, Miyoshi N, Yamaguchi R, Uchida K, Rostami M.Genomic DNAs of cattle, horses, pigs, dogs, cats and chickens were surveyed using Southern blot hybridization analysis, with a human EGFR cDNA fragment. Several bands with different numbers and molecular weights were observed under the condition of low stringency in the individual animal species. The bands showing DNA polymorphism were observed among bovine genomic PstI-digested DNAs from 4 individuals and EcoRI-digested genomic DNAs from 4 chickens. These results may provide basic data which are useful for analysis of tumorigenetic mechanisms in domestic animals.
The genome of equine herpesvirus type 2 harbors an interleukin 10 (IL10)-like gene.
Virus genes    February 1, 1993   Volume 7, Issue 1 111-116 doi: 10.1007/BF01702353
Rode HJ, Janssen W, Rösen-Wolff A, Bugert JJ, Thein P, Becker Y, Darai G.A gene was identified within the DNA sequences of the EcoRI DNA fragment N (4.3 kbp) of the genome of equine herpesvirus type 2 (EHV-2) coding for a protein (179 amino acid residues) homologous to the cytokine synthesis inhibitory factor (CSIF; interleukin 10) of the human and mouse, and to the Epstein-Barr virus (EBV) protein BCRF1. This finding is further significant evidence that the interleukin 10 (IL-10) and/or IL-10-like gene can indeed be present in the genomes of members of the herpesviral family.
Oligonucleotide probes for DNA fingerprinting in horses.
Journal of animal breeding and genetics = Zeitschrift fur Tierzuchtung und Zuchtungsbiologie    January 12, 1993   Volume 110, Issue 1-6 301-304 doi: 10.1111/j.1439-0388.1993.tb00741.x
Wilke K, Weimann M, Jung M, Geldermann H.10 different oligonucleotide probes were evaluated for DNA fingerprinting in horses. Five probes were able to detect polymorphic bands. The probes (GT)(8) , (GTG)(5) and (GGAT)(4) are most informative for individual identification and were used to analyze a population of Hannoveranian horses. The probability that two individuals have the same DNA fingerprint pattern is 1.2 × 10(-8) , 5.2 × 10(-10) and 1.5 × 10(-7) respectively. Using a combination of the three probes, paternity tests were performed with exclusion probabilities between 0.08% and 4%. ZUSAMMENFASSUNG: Oligonukleotide-Sonden fÃ...
Linkage studies between the Tcp-1, Tcp-10, and Mhc-Eqca-A loci in the horse.
Immunogenetics    January 1, 1993   Volume 38, Issue 5 359-362 doi: 10.1007/BF00210478
Langemeier JL, Bailey E, Henney PJ.No abstract available
Nucleotide sequence of horse beta 2-microglobulin cDNA.
Immunogenetics    January 1, 1993   Volume 38, Issue 5 383 doi: 10.1007/BF00210486
Ellis SA, Martin AJ.No abstract available
[DNA fingerprinting in horses].
Veterinarni medicina    January 1, 1993   Volume 38, Issue 4 223-228 
Pazdera J, Hruban V, Pichrtová J, Müller Z, Jílek F.Using a multilocus DNA probe, individual - specific hybridization patterns, the so-called DNA fingerprints (TAB) were determined in six horse families by the DNA fingerprinting method. The probe with evolutionally preserved nucleotide sequence from bacteriophage M13 determines hypervariable regions placed in genomic minisatellite DNA. The use of this probe permits an identification of an individual and execution of paternity relationships with a probability over 99.99 per cent.
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