Analyze Diet

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.
Use of repetitive sequence-based polymerase chain reaction for molecular epidemiologic analysis of Streptococcus equi subspecies equi.
American journal of veterinary research    June 13, 2000   Volume 61, Issue 6 699-705 doi: 10.2460/ajvr.2000.61.699
Al-Ghamdi GM, Kapur V, Ames TR, Timoney JF, Love DN, Mellencamp MA.To determine whether repetitive sequence-based polymerase chain reaction (rep-PCR) could be used to differentiate Streptococcus equi isolates, to examine S equi isolates from throughout the world, and to determine whether a horse had > 1 subtype of S equi during an outbreak of disease. Methods: An initial group of 32 S equi isolates, 63 S equi isolates from various geographic areas, and 17 S equi isolates obtained during outbreaks of disease. Methods: An aliquot of S equi genomic DNA was amplified, using enterobacterial repetitive intergenic consensus primers. Gel electrophoresis was perfor...
Detection and quantitation of Ehrlichia risticii genomic DNA in infected horses and snails by real-time PCR.
Veterinary parasitology    June 1, 2000   Volume 90, Issue 1-2 129-135 doi: 10.1016/s0304-4017(00)00227-2
Pusterla N, Leutenegger CM, Sigrist B, Chae JS, Lutz H, Madigan JE.A real-time quantitative PCR using the TaqMan fluorogenic detection system (TaqMan PCR) was established for identification of Ehrlichia risticii, the agent of Potomac horse fever (PHF). The TaqMan PCR identified an 85 base pair section of the 16S rRNA gene by use of a specific fluorogenic probe and two primers. This technique was specific for eight tested E. risticii strains. The TaqMan system identified 10 copies of a cloned section of the 16S rRNA gene of E. risticii. The sensitivity and specificity of the TaqMan PCR were similar to those of conventional nested PCR. The TaqMan PCR was evalua...
Identification and phylogenetic comparison of Salem virus, a novel paramyxovirus of horses.
Virology    May 4, 2000   Volume 270, Issue 2 417-429 doi: 10.1006/viro.2000.0305
Renshaw RW, Glaser AL, Van Campen H, Weiland F, Dubovi EJ.A virus that could not be identified as a previously known equine virus was isolated from the mononuclear cells of a horse. Electron microscopy revealed enveloped virions with nucleocapsid structures characteristic of viruses in the Paramyxoviridae family. The virus failed to hemabsorb chicken or guinea pig red blood cells and lacked neuraminidase activity. Two viral genes were isolated from a cDNA expression library. Multiple sequence alignments of one gene indicated an average identity of 45% as compared to Morbillivirus N protein sequences. A weaker relationship was found with Tupaia paramy...
Sequence analysis of trinucleotide repeat microsatellites from an enrichment library of the equine genome.
Genome    May 3, 2000   Volume 43, Issue 2 354-365 
Tozaki T, Inoue S, Mashima S, Ohta M, Miura N, Tomita M.Microsatellites are useful tools for the construction of a linkage map and parentage testing of equines, but only a limited number of equine microsatellites have been elucidated. Thus, we constructed the equine genomic library enriched for DNA fragments containing (CAG)n repeats. The enriched method includes hybridization-capture of repeat regions using biotin-conjugated oligonucleotides, nucleotide substrate-biased polymerase reaction with the oligonucleotides and subsequent PCR amplification, because these procedures are useful for the cloning of less abundant trinucleotide microsatellites. ...
Differentiation and genomic and antigenic variation among fetal, respiratory, and neurological isolates from EHV1 and EHV4 infections in The Netherlands.
The veterinary quarterly    May 2, 2000   Volume 22, Issue 2 88-93 doi: 10.1080/01652176.2000.9695031
van Maanen C, Vreeswijk J, Moonen P, Brinkhof J, de Boer-Luijtze E, Terpstra C.Ten monoclonal antibodies (MAbs) were produced against equine herpes virus type 1 (EHV1). Two appeared type-specific, while the other eight were directed against epitopes common to both EHV1 and EHV4. Two MAbs directed against the glycoprotein gp2 recognized linear epitopes, as demonstrated by Western blotting. With pools of type-specific MAbs, 282 field isolates were typed in an immunoperoxidase monolayer assay (IPMA). From a total of 254 fetal or neonatal isolates, 244 (96%) were typed as EHV1, whereas 14 out of 15 (93%) respiratory tract isolates were typed as EHV4. Surprisingly, 3 out of 1...
Ten equine dinucleotide microsatellite repeats HTG18-19, HTG22-24, HTG26-27, HGT29-30 and HTG32.
Animal genetics    April 27, 2000   Volume 31, Issue 2 145-146 doi: 10.1046/j.1365-2052.2000.00585.x
Lindgren G.No abstract available
Twenty-one new equine dinucleotide repeat microsatellites.
Animal genetics    April 27, 2000   Volume 31, Issue 2 141 doi: 10.1046/j.1365-2052.2000.00574.x
Roberts MC, Murtaugh J, Valberg SJ, Mickelson JR, Alexander LJ.No abstract available
The isolation and characterization of 18 equine microsatellite loci, TKY272-TKY289.
Animal genetics    April 27, 2000   Volume 31, Issue 2 149-150 doi: 10.1046/j.1365-2052.2000.00596.x
Tozaki T, Kakoi H, Mashima S, Hirota K, Hasegawa T, Ishida N, Miura N, Tomita M.No abstract available
Genetic manipulation of equine arteritis virus using full-length cDNA clones: separation of overlapping genes and expression of a foreign epitope.
Virology    April 25, 2000   Volume 270, Issue 1 84-97 doi: 10.1006/viro.2000.0245
de Vries AA, Glaser AL, Raamsman MJ, de Haan CA, Sarnataro S, Godeke GJ, Rottier PJ.Equine arteritis virus (EAV) is an enveloped, positive-stranded RNA virus belonging to the family Arteriviridae of the order Nidovirales. The unsegmented, infectious genome of EAV is 12,704 nt in length [exclusive of the poly(A) tail] and contains eight overlapping genes that are expressed from a 3'-coterminal nested set of seven leader-containing mRNAs. To investigate the importance of the overlapping gene arrangement in the viral life-cycle and to facilitate the genetic manipulation of the viral genome, a series of mutant full-length cDNA clones was constructed in which either EAV open readi...
Metabolic and mitogenic activities of insulin-like growth factor-1 in interleukin-1-conditioned equine cartilage.
American journal of veterinary research    April 20, 2000   Volume 61, Issue 4 436-441 doi: 10.2460/ajvr.2000.61.436
Frisbie DD, Sandler EA, Trotter GW, McIlwraith CW.To determine response of interleukin-1alpha (IL-1alpha)-conditioned equine articular cartilage explants to insulin-like growth factor-1 (IGF-1). Sample Population-Cartilage from the trochlea and condyles of the femur of a clinically normal 4-year-old horse. Methods: Effects of IGF-1 (0 to 500 ng/ml) after addition of IL-1alpha were evaluated by assessing matrix responses, using a sulfated glycosaminoglycan (GAG) assay, matrix 35SO4 GAG incorporation, and release of GAG. Mitogenic response was assessed by 3H-thymidine incorporation into DNA and fluorometric assay of total DNA concentration. Res...
Synteny and regional marker order assignment of 26 type I and microsatellite markers to the horse X- and Y-chromosomes. Shiue Y-L , Millon LV, Skow LC, Honeycutt D, Murray JD, Bowling AT.The hypothesis that the conservation of sex-chromosome-linked genes among placental mammals could be extended to the horse genome was tested using the UCDavis horse-mouse somatic cell hybrid (SCH) panel. By exploiting the fluorescence in-situ hybridization (FISH) technique to localize an anchor locus, X-inactivation-specific transcript (XIST) on the horse X chromosome, together with the fragmentation and translocation of the X- and Y-chromosome fragments in a somatic cell hybrid panel, we regionally assigned 13 type I and 13 type II (microsatellite) markers to the horse X- and Y-chromosomes. T...
Molecular cloning and sequencing of the low-affinity IgE receptor (CD23) for horse and cattle.
Veterinary immunology and immunopathology    March 14, 2000   Volume 73, Issue 3-4 323-329 doi: 10.1016/s0165-2427(00)00151-3
Watson JL, Jackson KA, King DP, Stott JL.Expression of the low-affinity IgE receptor (CD23) on the surface of mononuclear cells is a critical event in the development of IgE-mediated immunologic responses. Using PCR and cDNA library screening, a 2.7kb cDNA encoding equine CD23 and a 627bp PCR fragment of cattle CD23 were sequenced and characterized. The equine CD23 sequence encodes a complete and continuous open reading frame of 327 amino acids, while the shorter cattle fragment encodes 209 amino acids corresponding to nucleotides 325-1098 of the equine CD23 transcript. In addition to high identities in their nucleotides and translat...
Ten equine microsatellite loci: TKY25, TKY26, TKY27, TKY28, TKY29, TKY267, TKY268, TKY269, TKY270 and TKY271.
Animal genetics    February 26, 2000   Volume 31, Issue 1 68-69 doi: 10.1111/j.1365-2052.2000.579-1.x
Kakoi H, Tozaki T, Hirota K, Mashima S, Kurosawa M, Miura N.No abstract available
Characterization of ten equine dinucleotide microsatellite loci: NVHEQ21, NVHEQ54, NVHEQ67, NVHEQ70, NVHEQ75, NVHEQ77, NVHEQ79, NVHEQ81, NVHEQ82 and NVHEQ83.
Animal genetics    February 26, 2000   Volume 31, Issue 1 78-79 doi: 10.1111/j.1365-2052.2000.579-13.x
Bjørnstad G, Midthjell L, Røed KH.No abstract available
The genetic structure of Spanish Celtic horse breeds inferred from microsatellite data.
Animal genetics    February 26, 2000   Volume 31, Issue 1 39-48 doi: 10.1046/j.1365-2052.2000.00591.x
Cañon J, Checa ML, Carleos C, Vega-Pla JL, Vallejo M, Dunner S.Partition of the genetic variability, genetic structure and relationships among seven Spanish Celtic horse breeds were studied using PCR amplification of 13 microsatellites on 481 random individuals. In addition, 60 thoroughbred horses were included. The average observed heterozygosity and the mean number of alleles were higher for the Atlantic horse breeds than for the Balearic Islands breeds. Only eight percentage of the total genetic variability could be attributed to differences among breeds (mean FST approximately 0.08; P < 0.01). Atlantic breeds clearly form a separate cluster from th...
A molecular systematic framework for equine strongyles based on ribosomal DNA sequence data.
International journal for parasitology    February 17, 2000   Volume 30, Issue 1 95-103 doi: 10.1016/s0020-7519(99)00166-6
Hung GC, Chilton NB, Beveridge I, Gasser RB.In this study, molecular data sets were used to address the controversies relating to the systematics of strongyloid nematodes of equids utilising morphological data sets. DNA sequences of the first and second internal transcribed spacers (ITS-1 and ITS-2) of ribosomal DNA were determined for 30 species of equine strongyles and the systematic relationships reconstructed using phenetic and phylogenetic tree-building methods. The molecular data provided support for the hypothesis that the genera with large subglobular buccal capsules are ancestral to those with small cylindrical buccal capsules,...
Expression of CRISP proteins in the male equine genital tract.
Journal of reproduction and fertility. Supplement    January 25, 2000   Volume 53 67-72 
Schambony A, Hess O, Gentzel M, Töpfer-Petersen E.Cysteine rich secretory proteins (CRISPs) have been detected immunochemically in the equine male genital tract. CRISPs are secretory products of the epididymis, the ampulla and the seminal vesicle. A particular feature of the horse is the abundance of CRISPs in seminal plasma. CRISPs can also be detected in extracts of testicular, epididymal and ejaculated spermatozoa in increasing amounts. Unlike other seminal plasma proteins, they cannot be removed completely from spermatozoa by high salt treatment. The remaining CRISP antigens are localized on the midpiece, and the postacrosomal and equator...
Complete genomic RNA sequence of western equine encephalitis virus and expression of the structural genes.
The Journal of general virology    January 21, 2000   Volume 81, Issue Pt 1 151-159 doi: 10.1099/0022-1317-81-1-151
Netolitzky DJ, Schmaltz FL, Parker MD, Rayner GA, Fisher GR, Trent DW, Bader DE, Nagata LP.The complete nucleotide sequence of the 71V-1658 strain of western equine encephalitis virus (WEE) was determined (minus 25 nucleotides from the 5' end). A 5' RACE reaction was used to sequence the 5' terminus from WEE strain CBA87. The deduced WEE genome was 11508 nucleotides in length, excluding the 5' cap nucleotide and 3' poly(A) tail. The nucleotide composition was 28% A, 25% C, 25% G and 22% U. Comparison with partial WEE sequences of strain 5614 (nsP2-nsP3 of the nonstructural region) and strain BFS1703 (26S structural region) revealed comparatively little variation; a total of 149 nucl...
A comparative gene map of the horse (Equus caballus).
Genome research    December 30, 1999   Volume 9, Issue 12 1239-1249 doi: 10.1101/gr.9.12.1239
Caetano AR, Shiue YL, Lyons LA, O'Brien SJ, Laughlin TF, Bowling AT, Murray JD.A comparative gene map of the horse genome composed of 127 loci was assembled based on the new assignment of 68 equine type I loci and on data published previously. PCR primers based on consensus gene sequences conserved across mammalian species were used to amplify markers for assigning 68 equine type I loci to 27 horse synteny groups established previously with a horse-mouse somatic cell hybrid panel (SCHP, UC Davis). This increased the number of coding genes mapped to the horse genome by over 2-fold and allowed refinements of the comparative mapping data available for this species. In conju...
Equine dinucleotide repeat loci COR061-COR080.
Animal genetics    December 28, 1999   Volume 30, Issue 6 462-463 doi: 10.1046/j.1365-2052.1999.00498-9.x
Tallmadge RL, Hopman TJ, Schug MD, Aquadro CF, Bowling AT, Murray JD, Caetano AR, Antczak DF.No abstract available
Mitochondrial D-loop sequence variation among the 16 maternal lines of the Lipizzan horse breed.
Animal genetics    December 28, 1999   Volume 30, Issue 6 423-430 doi: 10.1046/j.1365-2052.1999.00557.x
Kavar T, Habe F, Brem G, Dovc P.Mitochondrial DNA from 49 Lipizzan horses representing 16 maternal lines from the original stud at Lipica was used for SSCP analysis and DNA sequencing. The SSCP analysis of the 444 bp long fragment of the D-loop region extending from the tRNA(Pro) gene to the central conserved sequence block revealed three distinct groups of SSCP patterns. Both ends of the D-loop region (378 bp and 310 bp), which are considered as the most variable regions within the mammalian mitochondrial DNA, were sequenced. According to 49 polymorphic sites identified within the both parts of the D-loop region, the 16 mat...
Report of the International Equine Gene Mapping Workshop: male linkage map.
Animal genetics    December 3, 1999   Volume 30, Issue 5 341-354 doi: 10.1046/j.1365-2052.1999.00510.x
Guérin G, Bailey E, Bernoco D, Anderson I, Antczak DF, Bell K, Binns MM, Bowling AT, Brandon R, Cholewinski G, Cothran EG, Ellegren H, Förster M....The goal of the First International Equine Gene Mapping Workshop, held in 1995, was the construction of a low density, male linkage map for the horse. For this purpose, the International Horse Reference Family Panel (IHRFP) was established, consisting of 12 paternal half-sib families with 448 half-sib offspring provided by 10 laboratories. Blood samples were collected and DNA extracted in each laboratory and sent to the Lexington laboratory (KY, USA) for dispatch in aliquots to 14 typing laboratories. In total, 161 markers (144 microsatellites, seven blood groups and 10 proteins) were tested f...
Equine synteny mapping of comparative anchor tagged sequences (CATS) from human Chromosome 5.
Mammalian genome : official journal of the International Mammalian Genome Society    November 11, 1999   Volume 10, Issue 11 1082-1084 doi: 10.1007/s003359901165
Caetano AR, Lyons LA, Laughlin TF, O'Brien SJ, Murray JD, Bowling AT.Comparative anchor tagged sequences (CATS) from human Chromosome 5 (HSA5) were used as PCR primers to produce molecular markers for synteny mapping in the horse. Primer sets for 21 genes yielded eight horse-specific markers, which were mapped with the UC Davis horse-mouse somatic cell hybrid panel into two synteny groups: UCD14 and UCD21. These data, in conjunction with earlier human chromosome painting studies of the horse karyotype and synteny mapping of horse microsatellite markers physically mapped by FISH, confirm the assignment of UCD21 to ECA21 and suggest that UCD14 is located on ECA14...
The molecular genetics of red and green color vision in mammals.
Genetics    October 8, 1999   Volume 153, Issue 2 919-932 doi: 10.1093/genetics/153.2.919
Yokoyama S, Radlwimmer FB.To elucidate the molecular mechanisms of red-green color vision in mammals, we have cloned and sequenced the red and green opsin cDNAs of cat (Felis catus), horse (Equus caballus), gray squirrel (Sciurus carolinensis), white-tailed deer (Odocoileus virginianus), and guinea pig (Cavia porcellus). These opsins were expressed in COS1 cells and reconstituted with 11-cis-retinal. The purified visual pigments of the cat, horse, squirrel, deer, and guinea pig have lambdamax values at 553, 545, 532, 531, and 516 nm, respectively, which are precise to within +/-1 nm. We also regenerated the "true" red ...
[Cowpox viruses in Germany: an analysis of 5 cases in 1998].
Berliner und Munchener tierarztliche Wochenschrift    October 3, 1999   Volume 112, Issue 9 334-338 
Pfeffer M, Burck G, Meyer H.Five case reports on cowpox virus infections in cats, humans, and for the first time in a horse are presented. It becomes obvious that in most cases the diagnosis cowpox is suspected rather late, although fast and reliable diagnostic tools such as pathohistological examination and polymerase chain reaction are available. The threat of a zoonotic transmission mainly through cats is gaining importance. Although wild rodents have been claimed to be the reservoir and source for cowpox viruses in cats, very little is known about the epidemiology of cowpox virus. Based on the different genome organi...
Evolutionary history of MHC class I genes in the mammalian order Perissodactyla.
Journal of molecular evolution    September 4, 1999   Volume 49, Issue 3 316-324 doi: 10.1007/pl00006554
Holmes EC, Ellis SA.We carried out an analysis of partial sequences from expressed major histocompatibility complex (MHC) class I genes isolated from a range of equid species and more distantly related members of the mammalian order Perissodactyla. Phylogenetic analysis revealed a minimum of six groups, five of which contained genes and alleles that are found in equid species and one group specific to the rhinoceros. Four of the groups contained only one, or very few sequences, indicating the presence of relatively nonpolymorphic loci, while another group contained the majority of the equid sequences identified. ...
Equine dinucleotide repeat loci COR041-COR060.
Animal genetics    September 1, 1999   Volume 30, Issue 4 320-321 doi: 10.1046/j.1365-2052.1999.00445-4.x
Ruth LS, Hopman TJ, Schug MD, Aquadro CF, Bowling AT, Murray JD, Caetano AR, Antczak DF.No abstract available
Detection of new DNA polymerase genes of known and potentially novel herpesviruses by PCR with degenerate and deoxyinosine-substituted primers.
Virus genes    August 24, 1999   Volume 18, Issue 3 211-220 doi: 10.1023/a:1008064118057
Ehlers B, Borchers K, Grund C, Frölich K, Ludwig H, Buhk HJ.A consensus primer PCR approach was used to (i) investigate the presence of herpesviruses in wild and zoo equids (zebra, wild ass, tapir) and to (ii) study the genetic relationship of the herpesvirus of pigeons (columbid herpesvirus 1) to other herpesvirus species. The PCR assay, based on degenerate primers targeting highly conserved regions of the DNA polymerase gene of herpesviruses, was modified by using a mixture of degenerate and deoxyinosine-substituted primers. The applicability of the modification was validated by amplification of published DNA polymerase genes of 16 herpesvirus specie...
Equine dinucleotide repeat loci COR021-COR040.
Animal genetics    August 12, 1999   Volume 30, Issue 3 235-237 doi: 10.1046/j.1365-2052.1999.00404-16.x
Murphie AM, Hopman TJ, Schug MD, Aquadro CF, Bowling AT, Murray JD, Caetano AR, Antczak DF.No abstract available
Physical mapping of ten equine dinucleotide repeat microsatellites.
Animal genetics    August 12, 1999   Volume 30, Issue 3 235 doi: 10.1046/j.1365-2052.1999.00404-15.x
Lear TL, Brandon R, Bell K.No abstract available
1 64 65 66 67 68 77